Deep brain stimulation.
- Authors
- Perlmutter, Joel S; Mink, Jonathan W
- Year
- 2006
- Journal
- Annual review of neuroscience
- PMID
- 16776585
- DOI
- 10.1146/annurev.neuro.29.051605.112824
- PMCID
- PMC4518728
Deep brain stimulation (DBS) has provided remarkable benefits for people with a variety of neurologic conditions. Stimulation of the ventral intermediate nucleus of the thalamus can dramatically relieve tremor associated with essential tremor or Parkinson disease (PD). Similarly, stimulation of the subthalamic nucleus or the internal segment of the globus pallidus can substantially reduce bradykinesia, rigidity, tremor, and gait difficulties in people with PD. Multiple groups are attempting to extend this mode of treatment to other conditions. Yet, the precise mechanism of action of DBS remains uncertain. Such studies have importance that extends beyond clinical therapeutics. Investigations of the mechanisms of action of DBS have the potential to clarify fundamental issues such as the functional anatomy of selected brain circuits and the relationship between activity in those circuits and behavior. Although we review relevant clinical issues, we emphasize the importance of current and future investigations on these topics.
No figures extracted from this document.
No chunks β full text not yet ingested.
No entities extracted from this document yet.
No uploaded files.
No citations found.
In this knowledge base
| Title | Year | PMID |
|---|---|---|
| Advances in Electrophysiological Research. | 2015 | 26259089 |
External
| Title | Authors | Journal | Year | Link |
|---|---|---|---|---|
| A cortico-subthalamic circuit rapidly engages and releases inhibition of specific movements depending on the environmental context. | Soh C et al. | β | 2026 | β |
| Computational modelling of Parkinson's disease: A multiscale approach with deep brain stimulation and stochastic noise. | Herrera A et al. | β | 2026 | β |
| Magnetic Implantable Devices and Materials for the Brain. | Chen X et al. | β | 2026 | β |
| Neuroethicists' Perspectives on Ethical Issues in Neurotechnology Industry-Academia Partnerships. | Solomon ED et al. | β | 2026 | β |
| NIR-Triggered Upconversion-Perovskite Heterostructures for Non-Genetic, Implant-Free Optoelectronic Neuromodulation. | Jiang L et al. | β | 2026 | β |
| Ultrasonic Neuromodulation for Network Treatments of Psychiatric and Neurological Disorders. | Kubanek J | β | 2026 | β |
| Atypical Applications of Neuromodulation for Non-Painful Conditions. | Brown A et al. | β | 2025 | β |
| Battery-Free Dual-Channel Wireless Neurostimulator Using Passive Circuitry for Neuropathic Pain Modulation. | Moon J et al. | β | 2025 | β |
| Combined Study of Behavior and Spike Discharges Associated with Negative Emotions in Mice. | Xin J et al. | β | 2025 | β |
| Computational models advance deep brain stimulation for Parkinson's disease. | Wu Y et al. | β | 2025 | β |
| Deep brain stimulation (DBS) in movement disorders management: exploring therapeutic efficacy, neurobiological mechanisms, and clinical implications. | Hussein AFA et al. | β | 2025 | β |
| Deep brain stimulation for obsessive compulsive disorder leads to symptom changes of comorbid irritable bowel syndrome. | Abdelnaim MA et al. | β | 2025 | β |
| Deep Brain Stimulation: Psychological and Neuroethical Perspectives. | Sremic S et al. | β | 2025 | β |
| Disentangling acute motor deficits and adaptive responses evoked by the loss of cerebellar output. | Sinha N et al. | β | 2025 | β |
| Dysfunction of subthalamic dopaminergic circuitry contributes to anxiety- and depression-like behaviors in 6-OHDA lesion-induced hemiparkinsonian mice. | Zhang JQ et al. | β | 2025 | β |
| Electrical Stimulation of Cells: Drivers, Technology, and Effects. | Kadan-Jamal K et al. | β | 2025 | β |
| Electrophysiological approaches to informing therapeutic interventions with deep brain stimulation. | Asadi A et al. | β | 2025 | β |
| Electrophysiological signatures predict the therapeutic window of deep brain stimulation electrode contacts. | Rassoulou F et al. | β | 2025 | β |
| Endocisternal interfaces for minimally invasive neural stimulation and recording of the brain and spinal cord. | Chen JC et al. | β | 2025 | β |
| Expansion of stereotactic work envelope using transformation matrices and geometric algebra for neurosurgery. | Sharaf B et al. | β | 2025 | β |
| Fabrication and Dose-Response Simulation of Soft Dual-Sided Deep Brain Stimulation Electrode. | Zhang J et al. | β | 2025 | β |
| Genetics-Based Targeting Strategies for Precise Neuromodulation. | He Y et al. | β | 2025 | β |
| Gerstmann Syndrome: What is the Possible Role of Deep Brain Stimulation? | Alare K et al. | β | 2025 | β |
| Harnessing Neuroplasticity: The Role of Priming in Enhancing Post Stroke Motor Function. | Madhavan S | β | 2025 | β |
| High-Precision, Low-Threshold Neuromodulation With Ultraflexible Electrode Arrays for Brain-to-Brain Interfaces. | Ye Y et al. | β | 2025 | β |
| Implantable Soft Neural Electrodes of Liquid Metals for Deep Brain Stimulation. | Kwon YW et al. | β | 2025 | β |
| Inkjet-printed transparent electrodes: Design, characterization, and initial in vivo evaluation for brain stimulation. | Matta R et al. | β | 2025 | β |
| Invasive Neurostimulation During Pregnancy for Treatment of Epilepsy and Tourette Syndrome: Maternal and Fetal Outcomes. | Vu A et al. | β | 2025 | β |
| Knowledge and practice of deep brain stimulation among pediatric neurology residents in Saudi Arabia. | Algethami HJ et al. | β | 2025 | β |
| Multifunctional Neural Probes Enable Bidirectional Electrical, Optical, and Chemical Recording and Stimulation In Vivo. | Driscoll N et al. | β | 2025 | β |
| Neuromodulation techniques in traumatic brain injury: a narrative review of the current state. | Kundu M et al. | β | 2025 | β |
| Neuroprotective Efficacy and Complementary Treatment with Medicinal Herbs: A Comprehensive Review of Recent Therapeutic Approaches in Epilepsy Management. | Anand A et al. | β | 2025 | β |
| Non-pharmacologic interventions in disorders of consciousness. | Vitello MM et al. | β | 2025 | β |
| Pallidothalamic Circuit-Selective Manipulation Ameliorates Motor Symptoms in a Rat Model of Parkinsonian. | Jackson J et al. | β | 2025 | β |
| Precisely-timed outpatient recordings of subcortical local field potentials from wireless streaming-capable deep-brain stimulators: a method and toolbox. | Soh C et al. | β | 2025 | β |
| Soft Bioelectronic Interfaces for Continuous Peripheral Neural Signal Recording and Robust Cross-Subject Decoding. | Chen L et al. | β | 2025 | β |
| Thalamic and Visual Network Dysfunction Relates to Tremor Response in Thalamic Deep Brain Stimulation. | Morris AE et al. | β | 2025 | β |
| The intersection of near-death experiences (NDEs) and traumatic brain injury (TBI): neurobiological, phenomenological, and creative implications. | Iacono D et al. | β | 2025 | β |
| 3D spatiotemporally scalable in vivo neural probes based on fluorinated elastomers. | Le Floch P et al. | β | 2024 | β |
| An MRI-guided stereotactic neurosurgical robotic system for semi-enclosed head coils. | Li J et al. | β | 2024 | β |
| A systematic review and meta-analysis of neuromodulation therapies for substance use disorders. | Mehta DD et al. | β | 2024 | β |
| Circuit-Specific Deep Brain Stimulation Provides Insights into Movement Control. | Gittis AH et al. | β | 2024 | β |
| Clinical neuromodulatory effects of deep brain stimulation in disorder of consciousness: A literature review. | Cao T et al. | β | 2024 | β |
| Combined Pimavanserin and Maintenance Electroconvulsive Therapy: A Novel Approach to Parkinson's Disease Psychosis. | Imlay RK et al. | β | 2024 | β |
| Computational study of associations between the synaptic conductance of STN and GPe and the development of Parkinson's disease. | Zhu X et al. | β | 2024 | β |
| Deep brain stimulation for Parkinson's disease: systematic review with meta-analysis and trial sequential analysis. | Petersen JJ et al. | β | 2024 | β |
| E-Suture: Mixed-Conducting Suture for Medical Devices. | Rauhala OJ et al. | β | 2024 | β |
| Fabrication and validation of flexible neural electrodes based on polyimide tape and gold sheet. | Jeong H et al. | β | 2024 | β |
| Functional brain controllability in Parkinson's disease and its association with motor outcomes after deep brain stimulation. | Li Z et al. | β | 2024 | β |
| Human brain tissue identification using coherent anti-Stokes Raman scattering spectroscopy and diffuse reflectance spectroscopy for deep brain stimulation surgery. | Jerczynski S et al. | β | 2024 | β |
| Janus microparticles-based targeted and spatially-controlled piezoelectric neural stimulation via low-intensity focused ultrasound. | Han M et al. | β | 2024 | β |
| NAc-DBS corrects depression-like behaviors in CUMS mouse model via disinhibition of DA neurons in the VTA. | Song N et al. | β | 2024 | β |
| Neural stimulation and modulation with sub-cellular precision by optomechanical bio-dart. | Zhu G et al. | β | 2024 | β |
| Neuromodulation techniques in poststroke motor impairment recovery: Efficacy, challenges, and future directions. | Huang XL et al. | β | 2024 | β |
| Noninvasive modulation of essential tremor with focused ultrasonic waves. | Riis TS et al. | β | 2024 | β |
| Overlapping stimulation of subthalamic nucleus and dentato-rubro-thalamic tract in Parkinson's disease after deep brain stimulation. | WiΕniewski K et al. | β | 2024 | β |
| Patterned electrical brain stimulation by a wireless network of implantable microdevices. | Lee AH et al. | β | 2024 | β |
| Remotely induced electrical modulation of deep brain circuits in non-human primates. | Lybbert C et al. | β | 2024 | β |
| Temporal interference stimulation disrupts spike timing in the primate brain. | Vieira PG et al. | β | 2024 | β |
| Thalamo-cortical evoked potentials during stimulation of the dentato-rubro-thalamic tract demonstrate synaptic filtering. | Conner CR et al. | β | 2024 | β |
| Aberrant neurophysiological signaling associated with speech impairments in Parkinson's disease. | Wiesman AI et al. | β | 2023 | β |
| A computational study on the optimization of transcranial temporal interfering stimulation with high-definition electrodes using unsupervised neural networks. | Bahn S et al. | β | 2023 | β |
| Acute deep brain stimulation of the paraventricular nucleus of the hypothalamus increases brown adipose tissue thermogenesis in rats. | Mota CMD et al. | β | 2023 | β |
| A Deep Dive in the Involvement of the Cerebellum in Epilepsy: A Neuroanatomical and Cellular Approach. | Rubio C et al. | β | 2023 | β |
| Advances in Deep Brain Stimulation: From Mechanisms to Applications. | Sandoval-Pistorius SS et al. | β | 2023 | β |
| A least square generative network based on invariant contrastive feature pair learning for multimodal MR image synthesis. | Touati R et al. | β | 2023 | β |
| Anticipatory Postural Adjustments and Compensatory Postural Responses to Multidirectional Perturbations-Effects of Medication and Subthalamic Nucleus Deep Brain Stimulation in Parkinson's Disease. | HeΓ T et al. | β | 2023 | β |
| Automated calibration of somatosensory stimulation using reinforcement learning. | Borda L et al. | β | 2023 | β |
| Computational analysis of multichannel magnetothermal neural stimulation using magnetic resonator array. | Sung K et al. | β | 2023 | β |
| Day one postoperative MRI findings following electrode placement for deep brain stimulation: analysis of a large case series. | Succop BS et al. | β | 2023 | β |
| Deep brain stimulation for treatment resistant obsessive compulsive disorder; an observational study with ten patients under real-life conditions. | Abdelnaim MA et al. | β | 2023 | β |
| Desynchronizing oscillators coupled in multi-cluster networks through adaptively controlling partial networks. | Wang K et al. | β | 2023 | β |
| Differential remodeling of subthalamic projections to basal ganglia output nuclei and locomotor deficits in 6-OHDA-induced hemiparkinsonian mice. | Ji YW et al. | β | 2023 | β |
| Does Impaired Plantar Cutaneous Vibration Perception Contribute to Axial Motor Symptoms in Parkinson's Disease? Effects of Medication and Subthalamic Nucleus Deep Brain Stimulation. | HeΓ T et al. | β | 2023 | β |
| Electrochemical and electrophysiological considerations for clinical high channel count neural interfaces. | Vatsyayan R et al. | β | 2023 | β |
| Forniceal deep brain stimulation in a mouse model of Rett syndrome increases neurogenesis and hippocampal memory beyond the treatment period. | Wang Q et al. | β | 2023 | β |
| Gut microbiome and Parkinson's disease: Perspective on pathogenesis and treatment. | Salim S et al. | β | 2023 | β |
| Hydrogel Magnetomechanical Actuator Nanoparticles for Wireless Remote Control of Mechanosignaling <i>In Vivo</i>. | Jeong S et al. | β | 2023 | β |
| Hypothalamic Supramammillary Control of Cognition and Motivation. | Kesner AJ et al. | β | 2023 | β |
| Influencing Human Behavior with Noninvasive Brain Stimulation: Direct Human Brain Manipulation Revisited. | Fecteau S | β | 2023 | β |
| Interfacing neural cells with typical microelectronics materials for future manufacturing. | Pesantez Torres F et al. | β | 2023 | β |
| Investigating Deep Brain Stimulation of the Habenula: A Review of Clinical Studies. | Abraham ME et al. | β | 2023 | β |
| Mitigating Mismatch Compression in Differential Local Field Potentials. | Tiruvadi V et al. | β | 2023 | β |
| Neuronal and synaptic adaptations underlyingΒ the benefits of deep brain stimulation for Parkinson's disease. | Xu W et al. | β | 2023 | β |
| [Pain Management in Palliative Care]. | Volberg C et al. | β | 2023 | β |
| PEDOT:PSS-coated platinum electrodes for neural stimulation. | Dijk G et al. | β | 2023 | β |
| Piezoelectric Nanomaterials Activated by Ultrasound in Disease Treatment. | Yang S et al. | β | 2023 | β |
| Protection of high-frequency low-intensity pulsed electric fields and brain-derived neurotrophic factor for SH-SY5Y cells against hydrogen peroxide-induced cell damage. | Lin GB et al. | β | 2023 | β |
| Subthalamic neurons interact with nigral dopaminergic neurons to regulate movement in mice. | Fan JP et al. | β | 2023 | β |
| Temporal interference current stimulation in peripheral nerves is not driven by envelope extraction. | Budde RB et al. | β | 2023 | β |
| Thalamo-cortical and cerebello-cortical functional connectivity in development. | Badke D'Andrea C et al. | β | 2023 | β |
| The evolution of Big Data in neuroscience and neurology. | Dipietro L et al. | β | 2023 | β |
| 2D MXene interfaces preserve the basal electrophysiology of targeted neural circuits. | Xiao M et al. | β | 2022 | β |
| A Brief Insight on Magnetic Resonance Conditional Neurosurgery Robots. | Bibi Farouk ZI et al. | β | 2022 | β |
| Alteration of Neural Pathways and Its Implications in Alzheimer's Disease. | Kim S et al. | β | 2022 | β |
| A taxonomy of the brain's white matter: twenty-one major tracts for the 21st century. | Bullock DN et al. | β | 2022 | β |
| Bio-hybrid electronic and photonic devices. | Sharfstein ST | β | 2022 | β |
| Biophysical and Architectural Mechanisms of Subthalamic Theta under Response Conflict. | Moolchand P et al. | β | 2022 | β |
| Deep-layer motif method for estimating information flow between EEG signals. | Fan D et al. | β | 2022 | β |
| Designing and Pilot Testing a Novel Transcranial Temporal Interference Stimulation Device for Neuromodulation. | Zhang Z et al. | β | 2022 | β |
| Developing control-theoretic objectives for large-scale brain dynamics and cognitive enhancement. | Singh MF et al. | β | 2022 | β |
| Direct targeting of the ventral intermediate nucleus of the thalamus in deep brain stimulation for essential tremor: a prospective study with comparison to a historical cohort. | Wakim AA et al. | β | 2022 | β |
| Distributed interfacing by nanoscale photodiodes enables single-neuron light activation and sensory enhancement in 3D spinal explants. | Thalhammer A et al. | β | 2022 | β |
| Effect of electrical stimulation of central nucleus of the amygdala on morphine conditioned place preference in male rats. | Jokara Z et al. | β | 2022 | β |
| Ethical Considerations in the Implantation of Neuromodulatory Devices. | Shlobin NA et al. | β | 2022 | β |
| Globus Pallidus Interna and Ventral Intermediate Nucleus of the Thalamus Deep Brain Stimulation for Adductor Laryngeal Dystonia: a Case Report of Blinded Analyses of Objective Voice Outcomes in 2 Patients. | Patel RR et al. | β | 2022 | β |
| High-precision neural stimulation through optoacoustic emitters. | Shi L et al. | β | 2022 | β |
| Lateralization in Hemiparkinsonian Rats Is Affected by either Deep Brain Stimulation or Glutamatergic Neurotransmission in the Inferior Colliculus. | Melo-Thomas L et al. | β | 2022 | β |
| Local and distant cortical responses to single pulse intracranial stimulation in the human brain are differentially modulated by specific stimulation parameters. | Paulk AC et al. | β | 2022 | β |
| Looking beyond the opioid receptor: A desperate need for new treatments for opioid use disorder. | Lee YK et al. | β | 2022 | β |
| Magnetic-field-synchronized wireless modulation of neural activity by magnetoelectric nanoparticles. | Zhang E et al. | β | 2022 | β |
| Medical deep learning-A systematic meta-review. | Egger J et al. | β | 2022 | β |
| Modulating cell signalling in vivo with magnetic nanotransducers. | Romero G et al. | β | 2022 | β |
| Neural tissue-microelectrode interaction: Brain micromotion, electrical impedance, and flexible microelectrode insertion. | Sharafkhani N et al. | β | 2022 | β |
| Neuromodulation of cognition in Parkinson's disease. | Cole RC et al. | β | 2022 | β |
| Optoelectronic Neural Interfaces Based on Quantum Dots. | Han M et al. | β | 2022 | β |
| Organic Neuroelectronics: From Neural Interfaces to Neuroprosthetics. | Go GT et al. | β | 2022 | β |
| Parkinson's disease rodent models: Are they suitable for DBS research? | Merino Ruiz MC et al. | β | 2022 | β |
| Phase-adaptive brain stimulation of striatal D1 medium spiny neurons in dopamine-depleted mice. | Kim Y et al. | β | 2022 | β |
| Progresses of animal robots: A historical review and perspectiveness. | Zhou Z et al. | β | 2022 | β |
| Rapid treatments for depression: Endocannabinoid system as a therapeutic target. | Sharafi A et al. | β | 2022 | β |
| Reducing Behavioral Detection Thresholds per Electrode <i>via</i> Synchronous, Spatially-Dependent Intracortical Microstimulation. | Kunigk NG et al. | β | 2022 | β |
| Remote neural regulation mediated by nanomaterials. | Zou L et al. | β | 2022 | β |
| Review of Active Extracorporeal Medical Devices to Counteract Freezing of Gait in Patients with Parkinson Disease. | Huerta M et al. | β | 2022 | β |
| Robotic external ventricular drain placement for acute neurosurgical care in low-resource settings: feasibility considerations and a prototype design. | Smith AD et al. | β | 2022 | β |
| Role of coupling distances in a coupled thalamocortical network in the treatment of epilepsy. | Pan Y et al. | β | 2022 | β |
| Statistical Emulation of Neural Simulators: Application to Neocortical L2/3 Large Basket Cells. | Shapira G et al. | β | 2022 | β |
| Stimulation-induced changes at the electrode-tissue interface and their influence on deep brain stimulation. | Evers J et al. | β | 2022 | β |
| Thalamic deep brain stimulation paradigm to reduce consciousness: Cortico-striatal dynamics implicated in mechanisms of consciousness. | Redinbaugh MJ et al. | β | 2022 | β |
| The Instrumental Activities of Daily Living in Parkinson's Disease Patients Treated by Subthalamic Deep Brain Stimulation. | Bezdicek O et al. | β | 2022 | β |
| Things you wanted to know (but might have been afraid to ask) about how and why to explore and modulate brain plasticity with non-invasive neurostimulation technologies. | Stengel C et al. | β | 2022 | β |
| Transcranial Neuromodulation Array With Imaging Aperture for Simultaneous Multifocus Stimulation in Nonhuman Primates. | Jones RM et al. | β | 2022 | β |
| Coordinated increase of reliable cortical and striatal ensemble activations during recovery after stroke. | Guo L et al. | β | 2021 | β |
| Cortical hemodynamic mapping of subthalamic nucleus deep brain stimulation in Parkinsonian patients, using high-density functional near-infrared spectroscopy. | Mahmoudzadeh M et al. | β | 2021 | β |
| Deep Brain Stimulation of the dorsal raphe abolishes serotonin 1A facilitation of AMPA receptor-mediated synaptic currents in the ventral hippocampus. | Viana MB et al. | β | 2021 | β |
| Large Animal Studies to Reduce the Foreign Body Reaction in Brain-Computer Interfaces: A Systematic Review. | Mian SY et al. | β | 2021 | β |
| Neural substrate and underlying mechanisms of working memory: insights from brain stimulation studies. | Haque ZZ et al. | β | 2021 | β |
| New Avenues for Parkinson's Disease Therapeutics: Disease-Modifying Strategies Based on the Gut Microbiota. | Lorente-PicΓ³n M et al. | β | 2021 | β |
| Nonlinear control of networked dynamical systems. | Morrison M et al. | β | 2021 | β |
| Outcomes of deep brain stimulation surgery for substance use disorder: a systematic review. | Hassan O et al. | β | 2021 | β |
| Participant Experiences of Transcranial Direct Current Stimulation (tDCS) as a Treatment for Antipsychotic Medication Induced Weight Gain. | Grycuk L et al. | β | 2021 | β |
| Piezoelectric Nanomaterials Activated by Ultrasound: The Pathway from Discovery to Future Clinical Adoption. | Cafarelli A et al. | β | 2021 | β |
| Precision Functional Mapping of the Subcortex and Cerebellum. | Marek S et al. | β | 2021 | β |
| Quantified assessment of deep brain stimulation on Parkinson's patients with task fNIRS measurements and functional connectivity analysis: a pilot study. | Yu N et al. | β | 2021 | β |
| Quantum dot and electron acceptor nano-heterojunction for photo-induced capacitive charge-transfer. | Karatum O et al. | β | 2021 | β |
| Stretchable gold nanowire-based cuff electrodes for low-voltage peripheral nerve stimulation. | Lienemann S et al. | β | 2021 | β |
| The Effects of Deep Brain Stimulation of the Subthalamic Nucleus on Vascular Endothelial Growth Factor, Brain-Derived Neurotrophic Factor, and Glial Cell Line-Derived Neurotrophic Factor in a Rat Model of Parkinson's Disease. | Faust K et al. | β | 2021 | β |
| Transcranial focused ultrasound stimulation with high spatial resolution. | Kim S et al. | β | 2021 | β |
| What is new in computer vision and artificial intelligence in medical image analysis applications. | Olveres J et al. | β | 2021 | β |
| A 512-Channel Multi-Layer Polymer-Based Neural Probe Array. | Scholten K et al. | β | 2020 | β |
| A Review and Perspective for the Development of Triboelectric Nanogenerator (TENG)-Based Self-Powered Neuroprosthetics. | Wang H et al. | β | 2020 | β |
| A Trimodal Wireless Implantable Neural Interface System-on-Chip. | Jia Y et al. | β | 2020 | β |
| Bioinspired flexible electronics for seamless neural interfacing and chronic recording. | Li H et al. | β | 2020 | β |
| Deep Brain Stimulation Improves Motor Function in Rats with Spinal Cord Injury by Increasing Synaptic Plasticity. | Wang M et al. | β | 2020 | β |
| Development and testing of implanted carbon electrodes for electromagnetic field mapping during neuromodulation. | Ashok Kumar N et al. | β | 2020 | β |
| Epitranscriptome of the ventral tegmental area in a deep brain-stimulated chronic unpredictable mild stress mouse model. | Song N et al. | β | 2020 | β |
| Evaluation of Frequency-Dependent Effects of Deep Brain Stimulation in a Cortex-Basal Ganglia-Thalamus Network Model of Parkinson's Disease<sup>.</sup> | Romano MR et al. | β | 2020 | β |
| Full-field swept-source optical coherence tomography and neural tissue classification for deep brain imaging. | Almog IF et al. | β | 2020 | β |
| Functional Outcome of Bilateral Subthalamic Nucleus-Deep Brain Stimulation in Advanced Parkinson's Disease Patients: A Prospective Study. | Tandra S et al. | β | 2020 | β |
| Integrative and Network-Specific Connectivity of the Basal Ganglia and Thalamus Defined in Individuals. | Greene DJ et al. | β | 2020 | β |
| Low frequency deep brain stimulation in the inferior colliculus ameliorates haloperidol-induced catalepsy and reduces anxiety in rats. | Ihme H et al. | β | 2020 | β |
| Memory and neuromodulation: A perspective of DNA methylation. | Poon CH et al. | β | 2020 | β |
| Micro- and nanotechnology for neural electrode-tissue interfaces. | Liu S et al. | β | 2020 | β |
| Optimal open-loop desynchronization of neural oscillator populations. | Wilson D | β | 2020 | β |
| Proliferation and Cluster Analysis of Neurons and Glial Cell Organization on Nanocolumnar TiN Sub-Strates. | Abend A et al. | β | 2020 | β |
| Rapid Precision Functional Mapping of Individuals Using Multi-Echo fMRI. | Lynch CJ et al. | β | 2020 | β |
| Rebound effect in deep brain stimulation for essential tremor and symptom severity estimation from neural data. | Cooper SS et al. | β | 2020 | β |
| Recent Advances in Electrical Neural Interface Engineering: Minimal Invasiveness, Longevity, and Scalability. | Luan L et al. | β | 2020 | β |
| Retinal Prosthetic Approaches to Enhance Visual Perception for Blind Patients. | Shim S et al. | β | 2020 | β |
| Reversal of hyperactive subthalamic circuits differentially mitigates pain hypersensitivity phenotypes in parkinsonian mice. | Luan Y et al. | β | 2020 | β |
| Robotically Steered Needles: A Survey of Neurosurgical Applications and Technical Innovations. | Audette MA et al. | β | 2020 | β |
| Safety Study of Combination Treatment: Deep Brain Stimulation and Transcranial Magnetic Stimulation. | Magsood H et al. | β | 2020 | β |
| Surgical Tone Reduction in Cerebral Palsy. | Thomas SP et al. | β | 2020 | β |
| Tactics: an open-source platform for planning, simulating and validating stereotactic surgery. | Adair DSP et al. | β | 2020 | β |
| Task-dependent effects of intracranial hippocampal stimulation on human memory and hippocampal theta power. | Jun S et al. | β | 2020 | β |
| The Utility of Diffusion Tensor Imaging in Neuromodulation: Moving Beyond Conventional Magnetic Resonance Imaging. | Tohyama S et al. | β | 2020 | β |
| Transparent carbon nanotubes promote the outgrowth of enthorino-dentate projections in lesioned organ slice cultures. | Pampaloni NP et al. | β | 2020 | β |
| Tremor analysis with wearable sensors correlates with outcome after thalamic deep brain stimulation. | RΓΌegge D et al. | β | 2020 | β |
| Ultraflexible Neural Electrodes for Long-Lasting Intracortical Recording. | He F et al. | β | 2020 | β |
| A multichannel magnetic stimulation system using submillimeter-sized coils: system development and experimental application to rodent brain in vivo. | Minusa S et al. | β | 2019 | β |
| Application of a Novel Measurement Setup for Characterization of Graphene Microelectrodes and a Comparative Study of Variables Influencing Charge Injection Limits of Implantable Microelectrodes. | Cisnal A et al. | β | 2019 | β |
| Automatic Sleep Stage Classification Based on Subthalamic Local Field Potentials. | Chen Y et al. | β | 2019 | β |
| Cellular, molecular, and clinical mechanisms of action of deep brain stimulation-a systematic review on established indications and outlook on future developments. | Jakobs M et al. | β | 2019 | β |
| Consistent linear and non-linear responses to invasive electrical brain stimulation across individuals and primate species with implanted electrodes. | Basu I et al. | β | 2019 | β |
| Cortico-basal white matter alterations occurring in Parkinson's disease. | Isaacs BR et al. | β | 2019 | β |
| Deep brain stimulation has state-dependent effects on motor connectivity in Parkinson's disease. | Kahan J et al. | β | 2019 | β |
| Developing Next-generation Brain Sensing Technologies - A Review. | Robinson JT et al. | β | 2019 | β |
| Enhancing the effects of transcranial magnetic stimulation with intravenously injected magnetic nanoparticles. | Li R et al. | β | 2019 | β |
| Flexible and Implantable Microelectrodes for Chronically Stable Neural Interfaces. | Shi J et al. | β | 2019 | β |
| Flexible Micropillar Electrode Arrays for In Vivo Neural Activity Recordings. | Du M et al. | β | 2019 | β |
| Human Brain/Cloud Interface. | Martins NRB et al. | β | 2019 | β |
| Interfacing with the nervous system: a review of current bioelectric technologies. | Sahyouni R et al. | β | 2019 | β |
| <i>Post mortem</i> examination of Parkinson's disease brains suggests decline in mitochondrial biomass, reversed by deep brain stimulation of subthalamic nucleus. | Mallach A et al. | β | 2019 | β |
| Modulation of brain function by targeted delivery of GABA through the disrupted blood-brain barrier. | Todd N et al. | β | 2019 | β |
| Modulation of inhibitory plasticity in basal ganglia output nuclei of patients with Parkinson's disease. | Milosevic L et al. | β | 2019 | β |
| Nongenetic optical neuromodulation with silicon-based materials. | Jiang Y et al. | β | 2019 | β |
| Optimization of the KNN Supervised Classification Algorithm as a Support Tool for the Implantation of Deep Brain Stimulators in Patients with Parkinson's Disease. | Bellino GM et al. | β | 2019 | β |
| Parallel, minimally-invasive implantation of ultra-flexible neural electrode arrays. | Zhao Z et al. | β | 2019 | β |
| Photosensitizing materials and platforms for light-triggered modulation of Alzheimer's Ξ²-amyloid self-assembly. | Lee BI et al. | β | 2019 | β |
| Quantitatively validating the efficacy of artifact suppression techniques to study the cortical consequences of deep brain stimulation with magnetoencephalography. | Boring MJ et al. | β | 2019 | β |
| Single-Cell Electrical Stimulation Using CMOS-Based High-Density Microelectrode Arrays. | Ronchi S et al. | β | 2019 | β |
| Size and shape matter: The impact of voxel geometry on the identification of small nuclei. | Mulder MJ et al. | β | 2019 | β |
| Stereotactic Systems for MRI-Guided Neurosurgeries: A State-of-the-Art Review. | Chen Y et al. | β | 2019 | β |
| Stimulation of the Posterior Cingulate Cortex Impairs Episodic Memory Encoding. | Natu VS et al. | β | 2019 | β |
| The Ethical and Responsible Development and Application of Advanced Brain Machine Interfaces. | Maynard AD et al. | β | 2019 | β |
| Theoretical Analysis for Wireless Magnetothermal Deep Brain Stimulation Using Commercial Nanoparticles. | Le TA et al. | β | 2019 | β |
| The Scientific Case for Brain Simulations. | Einevoll GT et al. | β | 2019 | β |
| The use of chemogenetic approaches in alcohol use disorder research and treatment. | Cheng Y et al. | β | 2019 | β |
| Transcranial alternating current stimulation entrains single-neuron activity in the primate brain. | Krause MR et al. | β | 2019 | β |
| Transcranial Magneto-Acoustic Stimulation Improves Neuroplasticity in Hippocampus of Parkinson's Disease Model Mice. | Wang Y et al. | β | 2019 | β |
| Ultrasound Neuromodulation: A Review of Results, Mechanisms and Safety. | Blackmore J et al. | β | 2019 | β |
| Validation of diffusion tensor imaging tractography to visualize the dentatorubrothalamic tract for surgical planning. | Nowacki A et al. | β | 2019 | β |
| White Matter Network Architecture Guides Direct Electrical Stimulation through Optimal State Transitions. | Stiso J et al. | β | 2019 | β |
| A Measurement Setup and Automated Calculation Method to Determine the Charge Injection Capacity of Implantable Microelectrodes. | Cisnal A et al. | β | 2018 | β |
| An animal model of deep brain stimulation for treating tinnitus: A proof of concept study. | Ahsan SF et al. | β | 2018 | β |
| An Invasive Method for the Activation of the Mouse Dentate Gyrus by High-frequency Stimulation. | Zhao Z et al. | β | 2018 | β |
| Anodic versus cathodic neurostimulation of the subthalamic nucleus: A randomized-controlled study of acute clinical effects. | Kirsch AD et al. | β | 2018 | β |
| Case Studies in Neuroscience: Evidence of motor thalamus reorganization following bilateral forearm amputations. | Whatley BP et al. | β | 2018 | β |
| Deep Brain Stimulation and L-DOPA Therapy: Concepts of Action and Clinical Applications in Parkinson's Disease. | Muthuraman M et al. | β | 2018 | β |
| Deep brain stimulation for stroke: Current uses and future directions. | Elias GJB et al. | β | 2018 | β |
| Deep Brain Stimulation of the Memory Circuit: Improving Cognition in Alzheimer's Disease. | Posporelis S et al. | β | 2018 | β |
| Electrical Stimulation Modulates High Ξ³ Activity and Human Memory Performance. | Kucewicz MT et al. | β | 2018 | β |
| Electroencephalographic read-outs of the modulation of cortical network activity by deep brain stimulation. | Kibleur A et al. | β | 2018 | β |
| Ethical considerations on novel neuronal interfaces. | Keskinbora KH et al. | β | 2018 | β |
| Evidence for verbal memory enhancement with electrical brain stimulation in the lateral temporal cortex. | Kucewicz MT et al. | β | 2018 | β |
| Forniceal deep brain stimulation induces gene expression and splicing changes that promote neurogenesis and plasticity. | Pohodich AE et al. | β | 2018 | β |
| Global and multi-focal changes in cerebral blood flow during subthalamic nucleus stimulation in Parkinson's disease. | Mubeen AM et al. | β | 2018 | β |
| Imaging-Guided Dual-Target Neuromodulation of the Mouse Brain Using Array Ultrasound. | Li G et al. | β | 2018 | β |
| Improved Target Specificity of Transcranial Focused Ultrasound Stimulation (TFUS) using Double-Crossed Ultrasound Transducers. | Kim S et al. | β | 2018 | β |
| Interfacing Graphene-Based Materials With Neural Cells. | Bramini M et al. | β | 2018 | β |
| Longitudinal Follow-up of Impedance Drift in Deep Brain Stimulation Cases. | Wong J et al. | β | 2018 | β |
| Mapping movement, mood, motivation and mentation in the subthalamic nucleus. | Gourisankar A et al. | β | 2018 | β |
| Miniaturized neural system for chronic, local intracerebral drug delivery. | Dagdeviren C et al. | β | 2018 | β |
| Neuromodulation with transcranial focused ultrasound. | Kubanek J | β | 2018 | β |
| Neuronal inhibition and synaptic plasticity of basal ganglia neurons in Parkinson's disease. | Milosevic L et al. | β | 2018 | β |
| Neuron dynamics variability and anomalous phase synchronization of neural networks. | Boaretto BRR et al. | β | 2018 | β |
| Nongenetic Optical Methods for Measuring and Modulating Neuronal Response. | Zimmerman JF et al. | β | 2018 | β |
| Pallidal deep brain stimulation and intraoperative neurophysiology for treatment of poststroke hemiballism. | Ramirez-Zamora A et al. | β | 2018 | β |
| Pallidal deep brain stimulation modulates cortical excitability and plasticity. | Ni Z et al. | β | 2018 | β |
| Recent Advances in Materials, Devices, and Systems for Neural Interfaces. | Won SM et al. | β | 2018 | β |
| Reply to "Corticopallidal connectivity: Lessons from patients with dystonia". | Ni Z et al. | β | 2018 | β |
| Systems approaches to optimizing deep brain stimulation therapies in Parkinson's disease. | Santaniello S et al. | β | 2018 | β |
| The Future of Technology in Positive Psychology: Methodological Advances in the Science of Well-Being. | Yaden DB et al. | β | 2018 | β |
| The SyBil-AA real-time fMRI neurofeedback study: protocol of a single-blind randomized controlled trial in alcohol use disorder. | Gerchen MF et al. | β | 2018 | β |
| Ultrasound Produces Extensive Brain Activation via a Cochlear Pathway. | Guo H et al. | β | 2018 | β |
| Advances in nanowire bioelectronics. | Zhou W et al. | β | 2017 | β |
| Advances in Neuroimaging for Neurodegenerative Disease. | Veldsman M et al. | β | 2017 | β |
| A microfluidic model of the blood-brain barrier to study permeabilization by pulsed electric fields. | Bonakdar M et al. | β | 2017 | β |
| Bone marrow-derived mesenchymal stem cells ameliorate sodium nitrite-induced hypoxic brain injury in a rat model. | Ali EHA et al. | β | 2017 | β |
| Chronic electrocorticography for sensing movement intention and closed-loop deep brain stimulation with wearable sensors in an essential tremor patient. | Herron JA et al. | β | 2017 | β |
| Clinical neurophysiology of prolonged disorders of consciousness: From diagnostic stimulation to therapeutic neuromodulation. | Ragazzoni A et al. | β | 2017 | β |
| Comparative Performance of Linear Multielectrode Probes and Single-Tip Electrodes for Intracortical Microstimulation and Single-Neuron Recording in Macaque Monkey. | Ferroni CG et al. | β | 2017 | β |
| Deep brain stimulation of the dorsal raphe inhibits avoidance and escape reactions and activates forebrain regions related to the modulation of anxiety/panic. | Wscieklica T et al. | β | 2017 | β |
| Design and manufacturing challenges of optogenetic neural interfaces: a review. | Goncalves SB et al. | β | 2017 | β |
| Electrical stimulation of the dorsal columns of the spinal cord for Parkinson's disease. | Yadav AP et al. | β | 2017 | β |
| Frameless Stereotactic Robot-Assisted Subthalamic Nucleus Deep Brain Stimulation: Case Report. | Vadera S et al. | β | 2017 | β |
| Fundamental Limits of Forced Asynchronous Spiking with Integrate and Fire Dynamics. | Nandi A et al. | β | 2017 | β |
| Graphene in the Design and Engineering of Next-Generation Neural Interfaces. | Kostarelos K et al. | β | 2017 | β |
| Intraparenchymal Cysts Following Deep Brain Stimulation: Variable Presentations and Clinical Courses. | Katlowitz K et al. | β | 2017 | β |
| Low-beta cortico-pallidal coherence decreases during movement and correlates with overall reaction time. | van Wijk BCM et al. | β | 2017 | β |
| Mechanisms and use of neural transplants for brain repair. | Dunnett SB et al. | β | 2017 | β |
| Monitoring cerebral hemodynamic change during transcranial ultrasound stimulation using optical intrinsic signal imaging. | Kim E et al. | β | 2017 | β |
| Multidisciplinary Care in Parkinson's Disease. | Qamar MA et al. | β | 2017 | β |
| Neural decoding of attentional selection in multi-speaker environments without access to clean sources. | O'Sullivan J et al. | β | 2017 | β |
| Neural Recording and Modulation Technologies. | Chen R et al. | β | 2017 | β |
| Neuroprosthetics in amputee and brain injury rehabilitation. | Eapen BC et al. | β | 2017 | β |
| Overview of quantitative susceptibility mapping. | Deistung A et al. | β | 2017 | β |
| Parkinsonian rest tremor can be detected accurately based on neuronal oscillations recorded from the subthalamic nucleus. | Hirschmann J et al. | β | 2017 | β |
| Subcortical Effects on Voice and Fluency in Dysarthria: Observations from Subthalamic Nucleus Stimulation. | Sidtis D et al. | β | 2017 | β |
| Survey of electrically evoked responses in the retina - stimulus preferences and oscillation among neurons. | Tsai D et al. | β | 2017 | β |
| Thinking Small: Progress on Microscale Neurostimulation Technology. | Pancrazio JJ et al. | β | 2017 | β |
| Ultrasound Produces Extensive Brain Activation via a Cochlear Pathway | Guo H et al. | β | 2017 | β |
| What Have We Learned About Movement Disorders from Functional Neurosurgery? | Lozano AM et al. | β | 2017 | β |
| A Novel <i>In Vitro</i> System for Comparative Analyses of Bone Cells and Bacteria under Electrical Stimulation. | Dauben TJ et al. | β | 2016 | β |
| A Novel Lead Design for Modulation and Sensing of Deep Brain Structures. | Connolly AT et al. | β | 2016 | β |
| A novel portable, low-cost kinect-based system for motion analysis in neurological diseases. | Silva Cunha JP et al. | β | 2016 | β |
| A Remote and Wireless Deep Brain Stimulation Programming System. | Zhang C et al. | β | 2016 | β |
| Deep brain stimulation-associated brain tissue imprints: a new in vivo approach to biological research in human Parkinson's disease. | Zaccaria A et al. | β | 2016 | β |
| Depiction of dentatorubrothalamic tract fibers in patients with Parkinson's disease and multiple sclerosis in deep brain stimulation. | Hana A et al. | β | 2016 | β |
| Direct Electrical Stimulation of the Human Entorhinal Region and Hippocampus Impairs Memory. | Jacobs J et al. | β | 2016 | β |
| Dynamic Control of Synchronous Activity in Networks of Spiking Neurons. | Hutt A et al. | β | 2016 | β |
| Electro-triggering and electrochemical monitoring of dopamine exocytosis from a single cell by using ultrathin electrodes based on Au nanowires. | Kang M et al. | β | 2016 | β |
| Enhanced Flexible Tubular Microelectrode with Conducting Polymer for Multi-Functional Implantable Tissue-Machine Interface. | Tian HC et al. | β | 2016 | β |
| Foxa1 is essential for development and functional integrity of the subthalamic nucleus. | Gasser E et al. | β | 2016 | β |
| Induction of Calcium Influx in Cortical Neural Networks by Nanomagnetic Forces. | Tay A et al. | β | 2016 | β |
| Mechanism of Deep Brain Stimulation: Inhibition, Excitation, or Disruption? | Chiken S et al. | β | 2016 | β |
| Proceedings of the Third Annual Deep Brain Stimulation Think Tank: A Review of Emerging Issues and Technologies. | Rossi PJ et al. | β | 2016 | β |
| Rostral Intralaminar Thalamic Deep Brain Stimulation Triggered Cortical and Hippocampal Structural Plasticity and Enhanced Spatial Memory. | Tsai ST et al. | β | 2016 | β |
| Subthalamic Stimulation Reduces Vowel Space at the Initiation of Sustained Production: Implications for Articulatory Motor Control in Parkinson's Disease. | Sidtis JJ et al. | β | 2016 | β |
| Temporally Coordinated Deep Brain Stimulation in the Dorsal and Ventral Striatum Synergistically Enhances Associative Learning. | Katnani HA et al. | β | 2016 | β |
| The heart side of brain neuromodulation. | Rossi S et al. | β | 2016 | β |
| Therapies for Parkinson's diseases: alternatives to current pharmacological interventions. | Li S et al. | β | 2016 | β |
| The Retinal Response to Sinusoidal Electrical Stimulation. | Twyford P et al. | β | 2016 | β |
| Tractography Study of Deep Brain Stimulation of the Anterior Cingulate Cortex in Chronic Pain: Key to Improve the Targeting. | Boccard SG et al. | β | 2016 | β |
| Adaptive control of Parkinson's state based on a nonlinear computational model with unknown parameters. | Su F et al. | β | 2015 | β |
| Advances in Electrophysiological Research. | Kamarajan C et al. | β | 2015 | β |
| A Fuzzy Inference System for Closed-Loop Deep Brain Stimulation in Parkinson's Disease. | Camara C et al. | β | 2015 | β |
| Analysis of gene expression changes in the rat hippocampus after deep brain stimulation of the anterior thalamic nucleus. | Selvakumar T et al. | β | 2015 | β |
| A network analysis of ΒΉβ΅O-HβO PET reveals deep brain stimulation effects on brain network of Parkinson's disease. | Park HJ et al. | β | 2015 | β |
| Cellular mechanisms of deep brain stimulation: activity-dependent focal circuit reprogramming? | Veerakumar A et al. | β | 2015 | β |
| Cortical neuroprosthetics from a clinical perspective. | Tsu AP et al. | β | 2015 | β |
| Deep brain stimulation of the inferior colliculus: a possible animal model to study paradoxical kinesia observed in some parkinsonian patients? | Melo-Thomas L et al. | β | 2015 | β |
| Deep brain stimulation of the nucleus accumbens and bed nucleus of stria terminalis for obsessive-compulsive disorder: a case series. | Islam L et al. | β | 2015 | β |
| Disruption in proprioception from long-term thalamic deep brain stimulation: a pilot study. | Semrau JA et al. | β | 2015 | β |
| Effect of electrical vs. chemical deep brain stimulation at midbrain sites on micturition in anaesthetized rats. | Stone E et al. | β | 2015 | β |
| Flexible piezoelectric thin-film energy harvesters and nanosensors for biomedical applications. | Hwang GT et al. | β | 2015 | β |
| Investigating irregularly patterned deep brain stimulation signal design using biophysical models. | Summerson SR et al. | β | 2015 | β |
| Lasting modulation of in vitro oscillatory activity with weak direct current stimulation. | Reato D et al. | β | 2015 | β |
| Neuroimaging and neuromodulation approaches to study eating behavior and prevent and treat eating disorders and obesity. | Val-Laillet D et al. | β | 2015 | β |
| Nicotinic receptor subtype-selective circuit patterns in the subthalamic nucleus. | Xiao C et al. | β | 2015 | β |
| Optical and electrochemical methods for determining the effective area and charge density of conducting polymer modified electrodes for neural stimulation. | Harris AR et al. | β | 2015 | β |
| Pallidal stimulation suppresses pathological dysrhythmia in the parkinsonian motor cortex. | McCairn KW et al. | β | 2015 | β |
| Piezoelectric Nanoparticle-Assisted Wireless Neuronal Stimulation. | Marino A et al. | β | 2015 | β |
| Postmortem diffusion MRI of the human brainstem and thalamus for deep brain stimulator electrode localization. | Calabrese E et al. | β | 2015 | β |
| Review of Robotic Technology for Stereotactic Neurosurgery. | Faria C et al. | β | 2015 | β |
| Stem cell-based approach for the treatment of Parkinson's disease. | Goodarzi P et al. | β | 2015 | β |
| Subthalamic Nucleus Deep Brain Stimulation Modulate Catecholamine Levels with Significant Relations to Clinical Outcome after Surgery in Patients with Parkinson's Disease. | Yamamoto T et al. | β | 2015 | β |
| The epileptic thalamocortical network is a macroscopic self-sustained oscillator: evidence from frequency-locking experiments in rat brains. | Velazquez JL et al. | β | 2015 | β |
| The neuromodulation of neuropathic pain by measuring pain response rate and pain response duration in animal. | Kim J et al. | β | 2015 | β |
| The temporary and accumulated effects of transcranial direct current stimulation for the treatment of advanced Parkinson's disease monkeys. | Li H et al. | β | 2015 | β |
| Three-dimensional macroporous nanoelectronic networks as minimally invasive brain probes. | Xie C et al. | β | 2015 | β |
| Visualization of the medial forebrain bundle using diffusion tensor imaging. | Hana A et al. | β | 2015 | β |
| Wireless magnetothermal deep brain stimulation. | Chen R et al. | β | 2015 | β |
| 1.5T versus 3T MRI for targeting subthalamic nucleus for deep brain stimulation. | Cheng CH et al. | β | 2014 | β |
| A computational model for bipolar deep brain stimulation of the subthalamic nucleus. | Iacono MI et al. | β | 2014 | β |
| Action potentials in retinal ganglion cells are initiated at the site of maximal curvature of the extracellular potential. | Eickenscheidt M et al. | β | 2014 | β |
| A direct brain-to-brain interface in humans. | Rao RP et al. | β | 2014 | β |
| Advanced Materials for Neural Surface Electrodes. | Schendel AA et al. | β | 2014 | β |
| Advanced neuroimaging techniques for central neuromodulation. | Downes A et al. | β | 2014 | β |
| A historical perspective: stereotactic lesions for the treatment of epilepsy. | Leiphart JW et al. | β | 2014 | β |
| A method for systematic electrochemical and electrophysiological evaluation of neural recording electrodes. | Harris AR et al. | β | 2014 | β |
| A novel Microchannel Electrode Array: towards bioelectronic medical interfacing of small peripheral nerves. | Kim YT et al. | β | 2014 | β |
| A wireless power transmission system for implantable devices in freely moving rodents. | Eom K et al. | β | 2014 | β |
| Deep brain stimulation and autonomic control. | Lovick T | β | 2014 | β |
| Deep brain stimulation for obsessive-compulsive disorder: a systematic review and meta-analysis. | Kisely S et al. | β | 2014 | β |
| Deep brain stimulation macroelectrodes compared to multiple microelectrodes in rat hippocampus. | Arcot Desai S et al. | β | 2014 | β |
| Functional anatomy of essential tremor: lessons from neuroimaging. | Klaming R et al. | β | 2014 | β |
| Graphene oxide doped conducting polymer nanocomposite film for electrode-tissue interface. | Tian HC et al. | β | 2014 | β |
| Immunologic and tissue biocompatibility of flexible/stretchable electronics and optoelectronics. | Park G et al. | β | 2014 | β |
| In vitro and in vivo neuronal electrotaxis: a potential mechanism for restoration? | Jahanshahi A et al. | β | 2014 | β |
| Mechanisms underlying the antidepressant response and treatment resistance. | Levinstein MR et al. | β | 2014 | β |
| Multiple changes of functional connectivity between sensorimotor areas in focal hand dystonia. | Dresel C et al. | β | 2014 | β |
| Neural oscillations during non-rapid eye movement sleep as biomarkers of circuit dysfunction in schizophrenia. | Gardner RJ et al. | β | 2014 | β |
| Neuronal Entropy Depends on the Level of Alertness in the Parkinsonian Globus Pallidus in vivo. | Andres DS et al. | β | 2014 | β |
| Organic electrode coatings for next-generation neural interfaces. | Aregueta-Robles UA et al. | β | 2014 | β |
| Repeated BOLD-fMRI imaging of deep brain stimulation responses in rats. | Chao TH et al. | β | 2014 | β |
| Resting state functional MRI in Parkinson's disease: the impact of deep brain stimulation on 'effective' connectivity. | Kahan J et al. | β | 2014 | β |
| Resting-state networks link invasive and noninvasive brain stimulation across diverse psychiatric and neurological diseases. | Fox MD et al. | β | 2014 | β |
| Serotonin regulation of subthalamic neurons. | Ding S et al. | β | 2014 | β |
| Subthalamic deep brain stimulation in ParkinsonΧ³s disease has no significant effect on perceptual timing in the hundreds of milliseconds range. | Cope TE et al. | β | 2014 | β |
| The subthalamic activity and striatal monoamine are modulated by subthalamic stimulation. | Yamamoto T et al. | β | 2014 | β |
| Unleashing the future potential of functional near-infrared spectroscopy in brain sciences. | Cutini S et al. | β | 2014 | β |
| Activity-dependent neural plasticity from bench to bedside. | Ganguly K et al. | β | 2013 | β |
| A neuroprosthesis for tremor management through the control of muscle co-contraction. | Gallego JΓ et al. | β | 2013 | β |
| A slow axon antidromic blockade hypothesis for tremor reduction via deep brain stimulation. | GarcΓa MR et al. | β | 2013 | β |
| Deep brain stimulation as a tool for improving cognitive functioning in Alzheimer's dementia: a systematic review. | Hardenacke K et al. | β | 2013 | β |
| Deep brain stimulation entrains local neuronal firing in human globus pallidus internus. | Cleary DR et al. | β | 2013 | β |
| Deep brain stimulation for essential tremor. | Nazzaro JM et al. | β | 2013 | β |
| Deep brain stimulation: how does it work? | Agnesi F et al. | β | 2013 | β |
| Deep brain stimulation of the subthalamic nucleus reverses oral tremor in pharmacological models of parkinsonism: interaction with the effects of adenosine A2A antagonism. | Collins-Praino LE et al. | β | 2013 | β |
| Effects of caudate microstimulation on spontaneous and purposive saccades. | Watanabe M et al. | β | 2013 | β |
| Electroencephalographic changes following direct current deep brain stimulation of auditory cortex: a new model for investigating neuromodulation. | De Rojas JO et al. | β | 2013 | β |
| Epidural direct current stimulation over the left medial prefrontal cortex facilitates spatial working memory performance in rats. | de Souza CustΓ³dio JC et al. | β | 2013 | β |
| Feature extraction using first and second derivative extrema (FSDE) for real-time and hardware-efficient spike sorting. | Paraskevopoulou SE et al. | β | 2013 | β |
| Feedback control of electrode offset voltage during functional electrical stimulation. | Chu JU et al. | β | 2013 | β |
| Geometry-based optimization of radio-frequency coils for powering neuroprosthetic implants. | Kim J et al. | β | 2013 | β |
| Inferring evoked brain connectivity through adaptive perturbation. | Lepage KQ et al. | β | 2013 | β |
| Medication and subthalamic nucleus deep brain stimulation similarly improve balance and complex gait in Parkinson disease. | McNeely ME et al. | β | 2013 | β |
| Parkinson disease and exercise. | Earhart GM et al. | β | 2013 | β |
| Presynaptic serotonergic gating of the subthalamonigral glutamatergic projection. | Ding S et al. | β | 2013 | β |
| Subthalamic nucleus deep brain stimulation does not improve visuo-motor impairment in Parkinson's disease. | Israeli-Korn SD et al. | β | 2013 | β |
| The focal dystonias: current views and challenges for future research. | Jinnah HA et al. | β | 2013 | β |
| Toward in vivo histology: a comparison of quantitative susceptibility mapping (QSM) with magnitude-, phase-, and R2*-imaging at ultra-high magnetic field strength. | Deistung A et al. | β | 2013 | β |
| Ultra-high 7T MRI of structural age-related changes of the subthalamic nucleus. | Keuken MC et al. | β | 2013 | β |
| Ventral posterolateral deep brain stimulation treatment for neuropathic pain shortens pain response after cold stimuli. | Kim J et al. | β | 2013 | β |
| What is the role of the neurosurgeon in neuroethical discourse? | Lipsman N | β | 2013 | β |
| Analyzing neuronal activation with macroelectrode vs. microelectrode array stimulation. | Desai SA et al. | β | 2012 | β |
| An energy-efficient, adiabatic electrode stimulator with inductive energy recycling and feedback current regulation. | Arfin SK et al. | β | 2012 | β |
| Anti-cholinergics for axial symptoms in Parkinson's disease after subthalamic stimulation. | Baba Y et al. | β | 2012 | β |
| A Point Process Model-based Framework Reveals Reinforcement Mechanisms in Striatum during High Frequency STN DBS. | Santaniello S et al. | β | 2012 | β |
| Biomechanical loading as an alternative treatment for tremor: a review of two approaches. | Rocon E et al. | β | 2012 | β |
| Bottom-up SiO2 embedded carbon nanotube electrodes with superior performance for integration in implantable neural microsystems. | Musa S et al. | β | 2012 | β |
| Ceftriaxone ameliorates motor deficits and protects dopaminergic neurons in 6-hydroxydopamine-lesioned rats. | Leung TC et al. | β | 2012 | β |
| Closed-loop control of epilepsy by transcranial electrical stimulation. | BerΓ©nyi A et al. | β | 2012 | β |
| Deep brain stimulation for treatment-resistant depression: efficacy, safety and mechanisms of action. | Anderson RJ et al. | β | 2012 | β |
| Deep brain stimulation of subthalamic nuclei affects arm response inhibition in Parkinson's patients. | Mirabella G et al. | β | 2012 | β |
| Effect of deep brain stimulation on speech performance in Parkinson's disease. | Skodda S | β | 2012 | β |
| Effects of deep brain stimulation in the subthalamic nucleus or globus pallidus internus on step initiation in Parkinson disease: laboratory investigation. | Rocchi L et al. | β | 2012 | β |
| Explaining clinical effects of deep brain stimulation through simplified target-specific modeling of the volume of activated tissue. | MΓ€dler B et al. | β | 2012 | β |
| Flexible and stretchable electronics for biointegrated devices. | Kim DH et al. | β | 2012 | β |
| Frequency-dependent effects of electrical stimulation in the globus pallidus of dystonia patients. | Liu LD et al. | β | 2012 | β |
| Glutamatergic mechanisms in the dyskinesias induced by pharmacological dopamine replacement and deep brain stimulation for the treatment of Parkinson's disease. | Sgambato-Faure V et al. | β | 2012 | β |
| In vivo Large-Scale Cortical Mapping Using Channelrhodopsin-2 Stimulation in Transgenic Mice Reveals Asymmetric and Reciprocal Relationships between Cortical Areas. | Lim DH et al. | β | 2012 | β |
| MEG can map short and long-term changes in brain activity following deep brain stimulation for chronic pain. | Mohseni HR et al. | β | 2012 | β |
| Mood-stabilizing drugs: mechanisms of action. | Schloesser RJ et al. | β | 2012 | β |
| Network effects of subthalamic deep brain stimulation drive a unique mixture of responses in basal ganglia output. | Humphries MD et al. | β | 2012 | β |
| Neurophysiology of deep brain stimulation. | Rosa M et al. | β | 2012 | β |
| Optimal entrainment of neural oscillator ensembles. | Zlotnik A et al. | β | 2012 | β |
| Reinforcement mechanisms in putamen during high frequency STN DBS: A point process study. | Santaniello S et al. | β | 2012 | β |
| The relative impact of microstimulation parameters on movement generation. | Katnani HA et al. | β | 2012 | β |
| Upper threshold of extracellular neural stimulation. | Boinagrov D et al. | β | 2012 | β |
| Active deformation fields: dense deformation field estimation for atlas-based segmentation using the active contour framework. | Gorthi S et al. | β | 2011 | β |
| A dual-shank neural probe integrated with double waveguides on each shank for optogenetic applications. | Im M et al. | β | 2011 | β |
| A high-light sensitivity optical neural silencer: development and application to optogenetic control of non-human primate cortex. | Han X et al. | β | 2011 | β |
| An evaluation of neuroplasticity and behavior after deep brain stimulation of the nucleus accumbens in an animal model of depression. | Falowski SM et al. | β | 2011 | β |
| A simple miniature device for wireless stimulation of neural circuits in small behaving animals. | Zhang Y et al. | β | 2011 | β |
| Balancing the brain: resting state networks and deep brain stimulation. | Kringelbach ML et al. | β | 2011 | β |
| Cognitive activation by central thalamic stimulation: the yerkes-dodson law revisited. | Mair RG et al. | β | 2011 | β |
| Conducting polymers with immobilised fibrillar collagen for enhanced neural interfacing. | Liu X et al. | β | 2011 | β |
| Deep brain stimulation effects in dystonia: time course of electrophysiological changes in early treatment. | Ruge D et al. | β | 2011 | β |
| Differential response of speed, amplitude, and rhythm to dopaminergic medications in Parkinson's disease. | Espay AJ et al. | β | 2011 | β |
| Effects of DBS on auditory and somatosensory processing in Parkinson's disease. | Airaksinen K et al. | β | 2011 | β |
| Effects of deep brain stimulation of dorsal versus ventral subthalamic nucleus regions on gait and balance in Parkinson's disease. | McNeely ME et al. | β | 2011 | β |
| Ethical issues in the development of a vestibular prosthesis. | Poppendieck W et al. | β | 2011 | β |
| High frequency stimulation of the subthalamic nucleus acutely rescues motor deficits and neocortical movement representations following 6-hydroxydopamine administration in rats. | Brown AR et al. | β | 2011 | β |
| High frequency stimulation of the subthalamic nucleus impacts adult neurogenesis in a rat model of Parkinson's disease. | Khaindrava V et al. | β | 2011 | β |
| Highly deformable nanostructured elastomeric electrodes with improving conductivity upon cyclical stretching. | Corbelli G et al. | β | 2011 | β |
| Neuroethical principles of deep-brain stimulation. | Kringelbach ML et al. | β | 2011 | β |
| Probing basal ganglia functions by saccade eye movements. | Watanabe M et al. | β | 2011 | β |
| Real-time CARS imaging reveals a calpain-dependent pathway for paranodal myelin retraction during high-frequency stimulation. | Huff TB et al. | β | 2011 | β |
| Selective GABA release as a mechanistic basis of high-frequency stimulation used for the treatment of neuropsychiatric diseases. | Feuerstein TJ et al. | β | 2011 | β |
| Single input optimal control for globally coupled neuron networks. | Nabi A et al. | β | 2011 | β |
| (+)-(S)-trujillon, (+)-(S)-4-(2,2-diphenyl-1,3,2-oxazabolidin-5-oxo)propionic acid, a novel glutamatergic analog, modifies the activity of globus pallidus neurons by selective NMDA receptor activation. | Araujo-Alvarez JM et al. | β | 2011 | β |
| The application of vagus nerve stimulation and deep brain stimulation in depression. | Mohr P et al. | β | 2011 | β |
| The functional neuroanatomy of dystonia. | Neychev VK et al. | β | 2011 | β |
| Activation of the NMDA receptor involved in the alleviating after-effect of repeated stimulation of the subthalamic nucleus on motor deficits in hemiparkinsonian rats. | Akita H et al. | β | 2010 | β |
| Behavioral time course of microstimulation in cortical area MT. | Masse NY et al. | β | 2010 | β |
| Conflicts of interest in deep brain stimulation research and the ethics of transparency. | Fins JJ et al. | β | 2010 | β |
| Current-controlled deep brain stimulation reduces in vivo voltage fluctuations observed during voltage-controlled stimulation. | Lempka SF et al. | β | 2010 | β |
| Deep brain stimulation for movement disorders. | Collins KL et al. | β | 2010 | β |
| Deep brain stimulation for psychiatric disorders. | Kuhn J et al. | β | 2010 | β |
| Deep brain stimulation mechanisms: beyond the concept of local functional inhibition. | Deniau JM et al. | β | 2010 | β |
| Deep brain stimulation of the pedunculopontine tegmentum and subthalamic nucleus: effects on gait in Parkinson's disease. | Peppe A et al. | β | 2010 | β |
| Effect of pulsing in low-level light therapy. | Hashmi JT et al. | β | 2010 | β |
| Effects of thalamic high-frequency electrical stimulation on whisker-evoked cortical adaptation. | Middleton JW et al. | β | 2010 | β |
| Forelimb dyskinesia mediated by high-frequency stimulation of the subthalamic nucleus is linked to rapid activation of the NR2B subunit of N-methyl-D-aspartate receptors. | Quintana A et al. | β | 2010 | β |
| Gene therapy for Parkinson's disease: where are we now and where are we going? | Forsayeth J et al. | β | 2010 | β |
| Irregular behavior in an excitatory-inhibitory neuronal network. | Park C et al. | β | 2010 | β |
| Network perspectives on the mechanisms of deep brain stimulation. | McIntyre CC et al. | β | 2010 | β |
| [Neural prostheses and neuromodulation : Research and clinical practice in therapy and rehabilitation]. | Stieglitz T | β | 2010 | β |
| Point process models show temporal dependencies of basal ganglia nuclei under deep brain stimulation. | Saxena S et al. | β | 2010 | β |
| Restoration of locomotive function in Parkinson's disease by spinal cord stimulation: mechanistic approach. | Fuentes R et al. | β | 2010 | β |
| Sing the mind electric - principles of deep brain stimulation. | Kringelbach ML et al. | β | 2010 | β |
| The effect of deep brain stimulation surgery on repetitive behavior in Parkinson patients: A case series. | Wood MF et al. | β | 2010 | β |
| Will deep-brain stimulation be as successful in major depression as it has been in Parkinson's disease? | Kuhn J et al. | β | 2010 | β |
| A Bayesian statistical analysis of behavioral facilitation associated with deep brain stimulation. | Smith AC et al. | β | 2009 | β |
| A computational modelling approach to investigate different targets in deep brain stimulation for Parkinson's disease. | Pirini M et al. | β | 2009 | β |
| Changes in regional blood flow induced by unilateral subthalamic nucleus stimulation in patients with Parkinson's disease. | Tanei T et al. | β | 2009 | β |
| Deep brain stimulation as a new therapeutic approach in therapy-resistant mental disorders: ethical aspects of investigational treatment. | Kuhn J et al. | β | 2009 | β |
| Deep brain stimulation in neurological diseases and experimental models: from molecule to complex behavior. | Gubellini P et al. | β | 2009 | β |
| Deep brain stimulation of the globus pallidus internus in the parkinsonian primate: local entrainment and suppression of low-frequency oscillations. | McCairn KW et al. | β | 2009 | β |
| Deep brain stimulation, vagal nerve stimulation and transcranial stimulation: An overview of stimulation parameters and neurotransmitter release. | Albert GC et al. | β | 2009 | β |
| Different functional basal ganglia subcircuits associated with anti-akinetic and dyskinesiogenic effects of antiparkinsonian therapies. | Lacombe E et al. | β | 2009 | β |
| Effects of stimulation of the centromedian nucleus of the thalamus on the activity of striatal cells in awake rhesus monkeys. | Nanda B et al. | β | 2009 | β |
| Evolution of Deep Brain Stimulation: Human Electrometer and Smart Devices Supporting the Next Generation of Therapy. | Lee KH et al. | β | 2009 | β |
| Experimental and theoretical characterization of the voltage distribution generated by deep brain stimulation. | Miocinovic S et al. | β | 2009 | β |
| GABA(A) autoreceptors enhance GABA release from human neocortex: towards a mechanism for high-frequency stimulation (HFS) in brain? | Mantovani M et al. | β | 2009 | β |
| High-frequency stimulation of the nucleus accumbens core and shell reduces quinpirole-induced compulsive checking in rats. | Mundt A et al. | β | 2009 | β |
| Integrated device for optical stimulation and spatiotemporal electrical recording of neural activity in light-sensitized brain tissue. | Zhang J et al. | β | 2009 | β |
| Levodopa enhances synaptic plasticity in the substantia nigra pars reticulata of Parkinson's disease patients. | Prescott IA et al. | β | 2009 | β |
| Low and High Gamma Oscillations in Rat Ventral Striatum have Distinct Relationships to Behavior, Reward, and Spiking Activity on a Learned Spatial Decision Task. | van der Meer MA et al. | β | 2009 | β |
| PET measurement of changes in D2/D3 dopamine receptor binding in a nonhuman primate during chronic deep brain stimulation of the bed nucleus of the stria terminalis. | Vandehey NT et al. | β | 2009 | β |
| Proprioception and motor control in Parkinson's disease. | Konczak J et al. | β | 2009 | β |
| Simple molecular networks that respond optimally to time-periodic stimulation. | Cournac A et al. | β | 2009 | β |
| Spinal cord stimulation restores locomotion in animal models of Parkinson's disease. | Fuentes R et al. | β | 2009 | β |
| Thalamic stimulation in multiple sclerosis: evidence for a 'demyelinative thalamotomy'. | Moore GR et al. | β | 2009 | β |
| Transplantation of autonomous rhythm neurons as new approach of deep brain stimulation. | Yuan TF | β | 2009 | β |
| Washout filter aided mean field feedback desynchronization in an ensemble of globally coupled neural oscillators. | Luo M et al. | β | 2009 | β |
| 3T MRI evaluation of the accuracy of atlas-based subthalamic nucleus identification. | Stancanello J et al. | β | 2008 | β |
| Adenosine is crucial for deep brain stimulation-mediated attenuation of tremor. | Bekar L et al. | β | 2008 | β |
| An active contour-based atlas registration model applied to automatic subthalamic nucleus targeting on MRI: method and validation. | Duay V et al. | β | 2008 | β |
| Attenuation of counterregulatory responses to recurrent hypoglycemia by active thalamic inhibition: a mechanism for hypoglycemia-associated autonomic failure. | Arbelaez AM et al. | β | 2008 | β |
| Brain stimulation-basic, translational, and clinical research in neuromodulation: Why a new journal? | Sackeim HA et al. | β | 2008 | β |
| Continuous high-frequency stimulation in freely moving rats: development of an implantable microstimulation system. | Harnack D et al. | β | 2008 | β |
| Deep brain stimulation of the nucleus accumbens shell attenuates cocaine priming-induced reinstatement of drug seeking in rats. | Vassoler FM et al. | β | 2008 | β |
| Enhanced Ih depresses rat entopeduncular nucleus neuronal activity from high-frequency stimulation or raised Ke+. | Shin DS et al. | β | 2008 | β |
| High frequency stimulation and temporary inactivation of the subthalamic nucleus reduce quinpirole-induced compulsive checking behavior in rats. | Winter C et al. | β | 2008 | β |
| High-frequency stimulation of the dorsolateral periaqueductal gray and ventromedial hypothalamus fails to inhibit panic-like behaviour. | Lim LW et al. | β | 2008 | β |
| Mechanisms and targets of deep brain stimulation in movement disorders. | Johnson MD et al. | β | 2008 | β |
| Memory enhancement with event-related stimulation of the rostral intralaminar thalamic nuclei. | Mair RG et al. | β | 2008 | β |
| Neural correlates of STN DBS-induced cognitive variability in Parkinson disease. | Campbell MC et al. | β | 2008 | β |
| Neural stimulation and recording electrodes. | Cogan SF | β | 2008 | β |
| Neurostimulatory therapeutics in management of treatment-resistant depression with focus on deep brain stimulation. | Dumitriu D et al. | β | 2008 | β |
| Over-expression of the potassium channel Kir2.3 using the dopamine-1 receptor promoter selectively inhibits striatal neurons. | Falk T et al. | β | 2008 | β |
| Spatio-temporal electrical stimuli shape behavior of an embodied cortical network in a goal-directed learning task. | Bakkum DJ et al. | β | 2008 | β |
| Stimulating personality: ethical criteria for deep brain stimulation in psychiatric patients and for enhancement purposes. | Synofzik M et al. | β | 2008 | β |
| Subcortical processes of motor response inhibition during a stop signal task. | Li CS et al. | β | 2008 | β |
| Subthalamic local field potential oscillations during ongoing deep brain stimulation in Parkinson's disease. | Rossi L et al. | β | 2008 | β |
| Subthalamic nucleus stimulation-induced regional blood flow responses correlate with improvement of motor signs in Parkinson disease. | Karimi M et al. | β | 2008 | β |
| An optical neural interface: in vivo control of rodent motor cortex with integrated fiberoptic and optogenetic technology. | Aravanis AM et al. | β | 2007 | β |
| Axonal and somatic filtering of antidromically evoked cortical excitation by simulated deep brain stimulation in rat brain. | Chomiak T et al. | β | 2007 | β |
| Brain stimulation: feeling the buzz. | Reppas JB et al. | β | 2007 | β |
| Computational analysis of deep brain stimulation. | McIntyre CC et al. | β | 2007 | β |
| Context-dependent effects of substantia nigra stimulation on eye movements. | Basso MA et al. | β | 2007 | β |
| Controlling seizures is not controlling epilepsy: a parametric study of deep brain stimulation for epilepsy. | Feddersen B et al. | β | 2007 | β |
| Deep brain stimulation and cognition: moving from animal to patient. | Schiff ND et al. | β | 2007 | β |
| Electrical control of epileptic seizures. | Li Y et al. | β | 2007 | β |
| Evaluation of a wearable orthosis and an associated algorithm for tremor suppression. | Manto M et al. | β | 2007 | β |
| High-frequency deep brain stimulation of the nucleus accumbens region suppresses neuronal activity and selectively modulates afferent drive in rat orbitofrontal cortex in vivo. | McCracken CB et al. | β | 2007 | β |
| High-frequency stimulation of the subthalamic nucleus potentiates L-DOPA-induced neurochemical changes in the striatum in a rat model of Parkinson's disease. | Oueslati A et al. | β | 2007 | β |
| High frequency stimulation or elevated K+ depresses neuronal activity in the rat entopeduncular nucleus. | Shin DS et al. | β | 2007 | β |
| Introduction: The use of animal research in developing treatments for human motor disorders: brain-computer interfaces and the regeneration of damaged brain circuits. | Kaas JH | β | 2007 | β |
| Mechanical suppression of essential tremor. | Rocon E et al. | β | 2007 | β |
| Nicotine reduces levodopa-induced dyskinesias in lesioned monkeys. | Quik M et al. | β | 2007 | β |
| Task-related differential dynamics of EEG alpha- and beta-band synchronization in cortico-basal motor structures. | Klostermann F et al. | β | 2007 | β |
| Temporal patterning of saccadic eye movement signals. | Kimmel DL et al. | β | 2007 | β |
| Translational principles of deep brain stimulation. | Kringelbach ML et al. | β | 2007 | β |
| Deep brain stimulation for treatment-resistant depression: a psychiatric perspective. | Giacobbe P et al. | β | 2006 | β |
| Delivery of neurturin by AAV2 (CERE-120)-mediated gene transfer provides structural and functional neuroprotection and neurorestoration in MPTP-treated monkeys. | Kordower JH et al. | β | 2006 | β |