Selective attention and multisensory integration: multiple phases of effects on the evoked brain activity.
- Authors
- Talsma, Durk; Woldorff, Marty G
- Year
- 2005
- Journal
- Journal of cognitive neuroscience
- PMID
- 16102239
- DOI
- 10.1162/0898929054475172
We used event-related potentials (ERPs) to evaluate the role of attention in the integration of visual and auditory features of multisensory objects. This was done by contrasting the ERPs to multisensory stimuli (AV) to the sum of the ERPs to the corresponding auditory-only (A) and visual-only (V) stimuli [i.e., AV vs. (A + V)]. V, A, and VA stimuli were presented in random order to the left and right hemispaces. Subjects attended to a designated side to detect infrequent target stimuli in either modality there. The focus of this report is on the ERPs to the standard (i.e., nontarget) stimuli. We used rapid variable stimulus onset asynchronies (350-650 msec) to mitigate anticipatory activity and included "no-stim" trials to estimate and remove ERP overlap from residual anticipatory processes and from adjacent stimuli in the sequence. Spatial attention effects on the processing of the unisensory stimuli consisted of a modulation of visual P1 and N1 components (at 90-130 msec and 160-200 msec, respectively) and of the auditory N1 and processing negativity (100-200 msec). Attended versus unattended multisensory ERPs elicited a combination of these effects. Multisensory integration effects consisted of an initial frontal positivity around 100 msec that was larger for attended stimuli. This was followed by three phases of centro-medially distributed effects of integration and/or attention beginning at around 160 msec, and peaking at 190 (scalp positivity), 250 (negativity), and 300-500 msec (positivity) after stimulus onset. These integration effects were larger in amplitude for attended than for unattended stimuli, providing neural evidence that attention can modulate multisensory-integration processes at multiple stages.
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 |
|---|---|---|---|---|
| Echoes of the mind's eye: Reciprocal crossmodal interaction between auditory and visual processing. | Tang X et al. | β | 2026 | β |
| Presenting Features Audiovisually Improves Working Memory for Bindings. | Turoman N et al. | β | 2026 | β |
| Temporally congruent auditory stream modulates visual processing both independently of and interactively with selective attention in a competing scenario. | Chen J et al. | β | 2026 | β |
| Audiovisual decision making and sensory evidence weighting is not affected by impulsivity or impulsivity related behaviours in young adults. | Tuip RRM et al. | β | 2025 | β |
| Audiovisual integration facilitates age-related perceptual decision making. | Yang X et al. | β | 2025 | β |
| Audiovisual integration of speech: evidence for increased accuracy in "talk" versus "listen" condition. | Zografos LT et al. | β | 2025 | β |
| Body ownership alterations in stroke emerge from reduced proprioceptive precision and damage to the frontoparietal network. | Mastria G et al. | β | 2025 | β |
| Context influence on speech perception: evidence for acoustic-level mechanism across the voice onset time continuum. | Liu S et al. | β | 2025 | β |
| Effect of visually cued spatial and temporal attention on audiovisual stimuli processing: an event-related potentials study. | Feng Y et al. | β | 2025 | β |
| ERPs evidence of multisensory integration deficits in spinal cord injury. | Vastano R et al. | β | 2025 | β |
| Four Trials Is Not Enough: The Amount of Prior Audio-Visual Exposure Determines the Strength of Audio-Tactile Crossmodal Correspondence Early in Development. | Cao S et al. | β | 2025 | β |
| From Sound to Sight: The Cross-Modal Spread of Location-Based Inhibition of Return. | Tang X et al. | β | 2025 | β |
| Semantic-based audiovisual integration enhances active storage in visual working memory. | Zhao S et al. | β | 2025 | β |
| Time-frequency feature calculation of multi-stage audiovisual neural processing via electroencephalogram microstates. | Xi Y et al. | β | 2025 | β |
| Touch Helps Hearing: Evidence From Continuous Audio-Tactile Stimulation. | Fu X et al. | β | 2025 | β |
| Tracking neural representations of attended and unattended features in multisensory working memory over time. | Arslan C et al. | β | 2025 | β |
| Visual experience affects neural correlates of audio-haptic integration: A case study of non-sighted individuals. | Scheller M et al. | β | 2025 | β |
| Amplitude Modulation Perception and Cortical Evoked Potentials in Children With Listening Difficulties and Their Typically Developing Peers. | Petley L et al. | β | 2024 | β |
| Attentional demands in the visual field modulate audiovisual interactions in the temporal domain. | Yilmaz SK et al. | β | 2024 | β |
| Cue modality modulates interaction between exogenous spatial attention and audiovisual integration. | Wang A et al. | β | 2024 | β |
| Effect of anticipatory multisensory integration on sensory-motor performance. | Lucia S et al. | β | 2024 | β |
| Electrophysiological responses of audiovisual integration from infancy to adulthood. | Vannasing P et al. | β | 2024 | β |
| Interaction of spatial attention and the associated reward value of audiovisual objects. | Vakhrushev R et al. | β | 2024 | β |
| Modality-specific impacts of distractors on visual and auditory categorical decision-making: an evidence accumulation perspective. | Li J et al. | β | 2024 | β |
| Multisensory integration of speech and gestures in a naturalistic paradigm. | Matyjek M et al. | β | 2024 | β |
| Non-spatial inhibition of return attenuates audiovisual integration owing to modality disparities. | Wang X et al. | β | 2024 | β |
| Pitch Improvement in Attentional Blink: A Study across Audiovisual Asymmetries. | Yang H et al. | β | 2024 | β |
| Prior visual experience increases children's use of effective haptic exploration strategies in audio-tactile sound-shape correspondences. | Cao S et al. | β | 2024 | β |
| Spatial attention modulates multisensory integration: The dissociation between exogenous and endogenous orienting. | Wu Y et al. | β | 2024 | β |
| The Differential Effects of Multisensory Attentional Cues on Task Performance in VR Depending on the Level of Cognitive Load and Cognitive Capacity. | Jeong S et al. | β | 2024 | β |
| The Impact of Selective Spatial Attention on Auditory-Tactile Integration: An Event-Related Potential Study. | An W et al. | β | 2024 | β |
| Unveiling neurodevelopmental changes in multisensory integration while controlling attention. | Zhao S et al. | β | 2024 | β |
| Aging effect of cross-modal interactions during audiovisual detection and discrimination by behavior and ERPs. | Ren Y et al. | β | 2023 | β |
| Brain mechanisms of mental processing: from evoked and spontaneous brain activities to enactive brain activity. | Zhang C et al. | β | 2023 | β |
| Cross-modal enhancement of spatially unpredictable visual target discrimination during the attentional blink. | Zhao S et al. | β | 2023 | β |
| Deficient Audiovisual Speech Perception in Schizophrenia: An ERP Study. | Ghaneirad E et al. | β | 2023 | β |
| Differential effects of intra-modal and cross-modal reward value on perception: ERP evidence. | Vakhrushev R et al. | β | 2023 | β |
| Dissociable Neural Correlates of Multisensory Coherence and Selective Attention. | Peng F et al. | β | 2023 | β |
| Effect of Target Semantic Consistency in Different Sequence Positions and Processing Modes on T2 Recognition: Integration and Suppression Based on Cross-Modal Processing. | Yang H et al. | β | 2023 | β |
| Enteroendocrine cells and gut hormones as potential targets in the crossroad of the gut-kidney axis communication. | Nery Neto JAO et al. | β | 2023 | β |
| Magnetoencephalography recordings reveal the neural mechanisms of auditory contributions to improved visual detection. | PΓ©rez-Bellido A et al. | β | 2023 | β |
| Multisensory representations of space and time in sensory cortices. | Gori M et al. | β | 2023 | β |
| Neural Correlates of Voice Learning with Distinctive and Non-Distinctive Faces. | ZΓ€ske R et al. | β | 2023 | β |
| Sustained visual attentional load modulates audiovisual integration in older and younger adults. | Ren Y et al. | β | 2023 | β |
| Task-dependent spatial processing in the visual cortex. | Bertonati G et al. | β | 2023 | β |
| The dissociation of semantically congruent and incongruent cross-modal effects on the visual attentional blink. | Zhao S et al. | β | 2023 | β |
| The effects of attention in auditory-visual integration revealed by time-varying networks. | Jiang Y et al. | β | 2023 | β |
| The integration of continuous audio and visual speech in a cocktail-party environment depends on attention. | Ahmed F et al. | β | 2023 | β |
| Visuospatial attention revamps cortical processing of sound amid audiovisual uncertainty. | Cervantes Constantino F et al. | β | 2023 | β |
| Working memory load modulates the processing of audiovisual distractors: A behavioral and event-related potentials study. | Yuan Y et al. | β | 2023 | β |
| Audiovisual Emotional Congruency Modulates the Stimulus-Driven Cross-Modal Spread of Attention. | Chen M et al. | β | 2022 | β |
| Audiovisual Integration for Saccade and Vergence Eye Movements Increases with Presbycusis and Loss of Selective Attention on the Stroop Test. | Chavant M et al. | β | 2022 | β |
| Auditory attentional load attenuates age-related audiovisual integration: An EEG study. | Ren Y et al. | β | 2022 | β |
| Auditory attentional load modulates the temporal dynamics of audiovisual integration in older adults: An ERPs study. | Yang W et al. | β | 2022 | β |
| Deepening the desire for disability: A commentary on Saetta etΒ al. (2022). | Capodici A et al. | β | 2022 | β |
| Early beta oscillations in multisensory association areas underlie crossmodal performance enhancement. | Michail G et al. | β | 2022 | β |
| Exploring the effectiveness of auditory, visual, and audio-visual sensory cues in a multiple object tracking environment. | FΓΆcker J et al. | β | 2022 | β |
| Increases in sensory noise predict attentional disruptions to audiovisual speech perception. | Fisher VL et al. | β | 2022 | β |
| Longitudinal changes in cortical responses to letter-speech sound stimuli in 8-11 year-old children. | Romanovska L et al. | β | 2022 | β |
| Maladaptive reorganization following SCI: The role of body representation and multisensory integration. | Vastano R et al. | β | 2022 | β |
| Modal-based attention modulates attentional blink. | Wang A et al. | β | 2022 | β |
| Multisensory integration attenuates visually induced oculomotor inhibition of return. | Tang X et al. | β | 2022 | β |
| Multisensory integration of anticipated cardiac signals with visual targets affects their detection among multiple visual stimuli. | Ren Q et al. | β | 2022 | β |
| Neurofeedback Modulation of the Sound-induced Flash Illusion Using Parietal Cortex Alpha Oscillations Reveals Dependency on Prior Multisensory Congruency. | Kvamme TL et al. | β | 2022 | β |
| The interplay between audiovisual temporal synchrony and semantic congruency in the cross-modal boost of the visual target discrimination during the attentional blink. | Zhao S et al. | β | 2022 | β |
| The P300 Auditory Event-Related Potential May Predict Segregation of Competing Speech by Bimodal Cochlear Implant Listeners. | Tao DD et al. | β | 2022 | β |
| The relationship between multisensory associative learning and multisensory integration. | Lauzon SA et al. | β | 2022 | β |
| The Rubber Hand Illusion: Top-down attention modulates embodiment. | ThΓ©riault R et al. | β | 2022 | β |
| When eyes beat lips: speaker gaze affects audiovisual integration in the McGurk illusion. | Wahn B et al. | β | 2022 | β |
| Audiovisual processing and selective attention in adult dyslexic readers: An event-related potential study. | Menashe S | β | 2021 | β |
| Auditory Attentional Load Modulates Audiovisual Integration During Auditory/Visual Discrimination. | Ren Y et al. | β | 2021 | β |
| EEG Correlates of Sustained Attention Variability during Discrete Multi-finger Force Control Tasks. | Peng C et al. | β | 2021 | β |
| Electrophysiological evidence of different neural processing between visual and audiovisual inhibition of return. | Tang X et al. | β | 2021 | β |
| Endogenous Spatial Attention Modulates the Magnitude of the Colavita Visual Dominance Effect. | Wang A et al. | β | 2021 | β |
| Inhibition of Return Decreases Early Audiovisual Integration: An Event-Related Potential Study. | Peng X et al. | β | 2021 | β |
| Multisensory Input Modulates P200 and L2 Sentence Comprehension: A One-Week Consolidation Phase. | Boustani N et al. | β | 2021 | β |
| Multisensory signals inhibit pupillary light reflex: Evidence from pupil oscillation. | Yuan X et al. | β | 2021 | β |
| Neural Basis of Anticipatory Multisensory Integration. | Fiorini L et al. | β | 2021 | β |
| Spatial alignment between faces and voices improves selective attention to audio-visual speech. | Fleming JT et al. | β | 2021 | β |
| Sustained Auditory Attentional Load Decreases Audiovisual Integration in Older and Younger Adults. | Ren Y et al. | β | 2021 | β |
| The additive nature of the human multisensory evoked pupil response. | Van der Stoep N et al. | β | 2021 | β |
| The Effect of Simultaneously Presented Words and Auditory Tones on Visuomotor Performance. | MendonΓ§a R et al. | β | 2021 | β |
| The Effects of Bilateral and Ipsilateral Auditory Stimuli on the Subcomponents of Visual Attention. | Fu J et al. | β | 2021 | β |
| Towards understanding how we pay attention in naturalistic visual search settings. | Turoman N et al. | β | 2021 | β |
| Age-related functional brain connectivity during audio-visual hand-held tool recognition. | Ren Y et al. | β | 2020 | β |
| Age-Related Shifts in Theta Oscillatory Activity During Audio-Visual Integration Regardless of Visual Attentional Load. | Ren Y et al. | β | 2020 | β |
| Auditory information enhances post-sensory visual evidence during rapid multisensory decision-making. | Franzen L et al. | β | 2020 | β |
| Considerations in Audio-Visual Interaction Models: An ERP Study of Music Perception by Musicians and Non-musicians. | Sorati M et al. | β | 2020 | β |
| Cue-target onset asynchrony modulates interaction between exogenous attention and audiovisual integration. | Xu Z et al. | β | 2020 | β |
| Individual differences in multiple object tracking, attentional cueing, and age account for variability in the capacity of audiovisual integration. | Wilbiks JMP et al. | β | 2020 | β |
| Multiple phases of cross-sensory interactions associated with the audiovisual bounce-inducing effect. | Zhao S et al. | β | 2020 | β |
| Revealing the body in the brain: An ERP method to examine sensorimotor activity during visual perception of body-related information. | Galvez-Pol A et al. | β | 2020 | β |
| Stereotactic electroencephalography in humans reveals multisensory signal in early visual and auditory cortices. | Ferraro S et al. | β | 2020 | β |
| Stimulus Specific to Age-Related Audio-Visual Integration in Discrimination Tasks. | Ren Y et al. | β | 2020 | β |
| The Intricate Interplay of Spatial Attention and Expectation: a Multisensory Perspective. | Zuanazzi A et al. | β | 2020 | β |
| The neural mechanisms of audiotactile binding depend on asynchrony. | Zumer JM et al. | β | 2020 | β |
| Time-varying networks of ERPs in P300-speller paradigms based on spatially and semantically congruent audiovisual bimodality. | Lu Z et al. | β | 2020 | β |
| A Novel Audiovisual P300-Speller Paradigm Based on Cross-Modal Spatial and Semantic Congruence. | Lu Z et al. | β | 2019 | β |
| Bimodal-divided attention attenuates visually induced inhibition of return with audiovisual targets. | Tang X et al. | β | 2019 | β |
| Characteristic Sounds Facilitate Object Search in Real-Life Scenes. | Kvasova D et al. | β | 2019 | β |
| Cortical network underlying audiovisual semantic integration and modulation of attention: An fMRI and graph-based study. | Xi Y et al. | β | 2019 | β |
| Look at me when I'm talking to you: Selective attention at a multisensory cocktail party can be decoded using stimulus reconstruction and alpha power modulations. | O'Sullivan AE et al. | β | 2019 | β |
| Multimodal Integration and Phenomenal Spatiotemporal Binding: A Perspective From the Default Space Theory. | Jerath R et al. | β | 2019 | β |
| Multimodal Language Processing in Human Communication. | Holler J et al. | β | 2019 | β |
| Multisensory enhancement of attention depends on whether you are already paying attention. | Lunn J et al. | β | 2019 | β |
| Multisensory processing in event-based prospective memory. | Barutchu A et al. | β | 2019 | β |
| Reading-Induced Shifts in Speech Perception in Dyslexic and Typically Reading Children. | Romanovska L et al. | β | 2019 | β |
| Stereotactic electroencephalography in humans reveals multisensory signal in early visual and auditory cortices | Ferraro S et al. | β | 2019 | β |
| Target detection increases pupil diameter and enhances memory for background scenes during multi-tasking. | Swallow KM et al. | β | 2019 | β |
| A gaze-independent audiovisual brain-computer Interface for detecting awareness of patients with disorders of consciousness. | Xie Q et al. | β | 2018 | β |
| Attenuated audiovisual integration in middle-aged adults in a discrimination task. | Yang W et al. | β | 2018 | β |
| Audio-Visual Spatiotemporal Perceptual Training Enhances the P300 Component in Healthy Older Adults. | Yang W et al. | β | 2018 | β |
| Comparison for younger and older adults: Stimulus temporal asynchrony modulates audiovisual integration. | Ren Y et al. | β | 2018 | β |
| Early cross-modal interactions underlie the audiovisual bounce-inducing effect. | Zhao S et al. | β | 2018 | β |
| High cognitive load enhances the susceptibility to non-speech audiovisual illusions. | Michail G et al. | β | 2018 | β |
| Influence of Audiovisual Training on Horizontal Sound Localization and Its Related ERP Response. | Cai Y et al. | β | 2018 | β |
| Modulation of motor cortex activity in a visual working memory task of hand images. | Galvez-Pol A et al. | β | 2018 | β |
| Reliability-Weighted Integration of Audiovisual Signals Can Be Modulated by Top-down Attention. | Rohe T et al. | β | 2018 | β |
| Ripe for solution: Delayed development of multisensory processing in autism and its remediation. | Beker S et al. | β | 2018 | β |
| Aging Effect on Audiovisual Integrative Processing in Spatial Discrimination Task. | Zou Z et al. | β | 2017 | β |
| Audiovisual Integration Delayed by Stimulus Onset Asynchrony Between Auditory and Visual Stimuli in Older Adults. | Ren Y et al. | β | 2017 | β |
| Auditory and audio-visual processing in patients with cochlear, auditory brainstem, and auditory midbrain implants: An EEG study. | Schierholz I et al. | β | 2017 | β |
| Beta-Band Functional Connectivity Influences Audiovisual Integration in Older Age: An EEG Study. | Wang L et al. | β | 2017 | β |
| Estimation of overlapped Eye Fixation Related Potentials: The General Linear Model, a more flexible framework than the ADJAR algorithm. | Kristensen E et al. | β | 2017 | β |
| Selective attention and the "Asynchrony Theory" in native Hebrew-speaking adult dyslexics: Behavioral and ERPs measures. | Menashe S | β | 2017 | β |
| Spatio-temporal patterns of event-related potentials related to audiovisual synchrony judgments in older adults. | Chan YM et al. | β | 2017 | β |
| Structural and Functional Integrity of the Intraparietal Sulcus in Moderate and Severe Traumatic Brain Injury. | Sours C et al. | β | 2017 | β |
| Two different mechanisms support selective attention at different phases of training. | Itthipuripat S et al. | β | 2017 | β |
| Attentional Resource Allocation in Visuotactile Processing Depends on the Task, But Optimal Visuotactile Integration Does Not Depend on Attentional Resources. | Wahn B et al. | β | 2016 | β |
| Contextual factors multiplex to control multisensory processes. | Sarmiento BR et al. | β | 2016 | β |
| The COGs (context, object, and goals) in multisensory processing. | ten Oever S et al. | β | 2016 | β |
| The Influence of Selective and Divided Attention on Audiovisual Integration in Children. | Yang W et al. | β | 2016 | β |
| The interactions of multisensory integration with endogenous and exogenous attention. | Tang X et al. | β | 2016 | β |
| The spatial reliability of task-irrelevant sounds modulates bimodal audiovisual integration: An event-related potential study. | Li Q et al. | β | 2016 | β |
| Advances in Electrophysiological Research. | Kamarajan C et al. | β | 2015 | β |
| A multisensory perspective of working memory. | Quak M et al. | β | 2015 | β |
| A Novel Audiovisual Brain-Computer Interface and Its Application in Awareness Detection. | Wang F et al. | β | 2015 | β |
| Audition and vision share spatial attentional resources, yet attentional load does not disrupt audiovisual integration. | Wahn B et al. | β | 2015 | β |
| Cross-modal cueing in audiovisual spatial attention. | Blurton SP et al. | β | 2015 | β |
| Enhanced audio-visual interactions in the auditory cortex of elderly cochlear-implant users. | Schierholz I et al. | β | 2015 | β |
| ERP evidence for spatial attention being directed away from disgusting locations. | Zimmer U et al. | β | 2015 | β |
| Exogenous spatial attention decreases audiovisual integration. | Van der Stoep N et al. | β | 2015 | β |
| Interactions between multisensory inputs with voluntary spatial attention: an fMRI study. | Yan T et al. | β | 2015 | β |
| Multisensory interactions in the depth plane in front and rear space: a review. | Van der Stoep N et al. | β | 2015 | β |
| Neuro-oscillatory phase alignment drives speeded multisensory response times: an electro-corticographic investigation. | Mercier MR et al. | β | 2015 | β |
| Possible anatomical pathways for short-latency multisensory integration processes in primary sensory cortices. | Henschke JU et al. | β | 2015 | β |
| Predictive coding and multisensory integration: an attentional account of the multisensory mind. | Talsma D | β | 2015 | β |
| Selective attention modulates early human evoked potentials during emotional face-voice processing. | Ho HT et al. | β | 2015 | β |
| Spatio-temporal distribution of brain activity associated with audio-visually congruent and incongruent speech and the McGurk Effect. | Pratt H et al. | β | 2015 | β |
| Spatiotemporal Relationships among Audiovisual Stimuli Modulate Auditory Facilitation of Visual Target Discrimination. | Li Q et al. | β | 2015 | β |
| The beneficial effects of sounds on attentional blink performance: An ERP study. | Kranczioch C et al. | β | 2015 | β |
| The effects of attention on the temporal integration of multisensory stimuli. | Donohue SE et al. | β | 2015 | β |
| The P300 component wave reveals differences in subclinical anxious-depressive states during bimodal oddball tasks: An effect of stimulus congruence. | Delle-Vigne D et al. | β | 2015 | β |
| The temporal reliability of sound modulates visual detection: an event-related potential study. | Li Q et al. | β | 2015 | β |
| Top-down attention regulates the neural expression of audiovisual integration. | MorΓs FernΓ‘ndez L et al. | β | 2015 | β |
| Top-down control and early multisensory processes: chicken vs. egg. | De Meo R et al. | β | 2015 | β |
| Towards the assessment of listening effort in real life situations: Mobile EEG recordings in a multimodal driving situation. | Damian A et al. | β | 2015 | β |
| Unconscious attention modulates the silencing effect of top-down predictions. | Chen X et al. | β | 2015 | β |
| Asynchronous presentation of global and local information reveals effects of attention on brain electrical activity specific to each level. | Iglesias-Fuster J et al. | β | 2014 | β |
| Becoming a Lunari or Taiyo expert: learned attention to parts drives holistic processing of faces. | Chua KW et al. | β | 2014 | β |
| Being watched: the effect of social self-focus on interoceptive and exteroceptive somatosensory perception. | Durlik C et al. | β | 2014 | β |
| Color selectivity of the spatial congruency effect: evidence from the focused attention paradigm. | Makovac E et al. | β | 2014 | β |
| Divided multimodal attention sensory trace and context coding strategies in spatially congruent auditory and visual presentation. | KristjΓ‘nsson T et al. | β | 2014 | β |
| Effect of attentional load on audiovisual speech perception: evidence from ERPs. | Alsius A et al. | β | 2014 | β |
| Effects of ipsilateral and bilateral auditory stimuli on audiovisual integration: a behavioral and event-related potential study. | Gao Y et al. | β | 2014 | β |
| Electrophysiological evidence for speech-specific audiovisual integration. | Baart M et al. | β | 2014 | β |
| Elevated audiovisual temporal interaction in patients with migraine without aura. | Yang W et al. | β | 2014 | β |
| Gaze-independent ERP-BCIs: augmenting performance through location-congruent bimodal stimuli. | Thurlings ME et al. | β | 2014 | β |
| Identifying and quantifying multisensory integration: a tutorial review. | Stevenson RA et al. | β | 2014 | β |
| Intracranial cortical responses during visual-tactile integration in humans. | Quinn BT et al. | β | 2014 | β |
| N1 enhancement in synesthesia during visual and audio-visual perception in semantic cross-modal conflict situations: an ERP study. | Sinke C et al. | β | 2014 | β |
| Natural stimuli from three coherent modalities enhance behavioral responses and electrophysiological cortical activity in humans. | Sella I et al. | β | 2014 | β |
| Sensory gain outperforms efficient readout mechanisms in predicting attention-related improvements in behavior. | Itthipuripat S et al. | β | 2014 | β |
| Taking a call is facilitated by the multisensory processing of smartphone vibrations, sounds, and flashes. | Pomper U et al. | β | 2014 | β |
| The role of the parietal cortex in multisensory and response integration: evidence from transcranial direct current stimulation (tDCS). | Zmigrod S | β | 2014 | β |
| The sound-induced flash illusion reveals dissociable age-related effects in multisensory integration. | McGovern DP et al. | β | 2014 | β |
| Visuo-tactile interactions in the congenitally deaf: a behavioral and event-related potential study. | Hauthal N et al. | β | 2014 | β |
| Correlation between audio-visual enhancement of speech in different noise environments and SNR: a combined behavioral and electrophysiological study. | Liu B et al. | β | 2013 | β |
| Crossmodal bias of visual input on pain perception and pain-induced beta activity. | Pomper U et al. | β | 2013 | β |
| Dissociating task difficulty from incongruence in face-voice emotion integration. | Watson R et al. | β | 2013 | β |
| Effects of auditory stimuli in the horizontal plane on audiovisual integration: an event-related potential study. | Yang W et al. | β | 2013 | β |
| Evidence for enhanced multisensory facilitation with stimulus relevance: an electrophysiological investigation. | Barutchu A et al. | β | 2013 | β |
| Modulation of auditory stimulus processing by visual spatial or temporal cue: an event-related potentials study. | Tang X et al. | β | 2013 | β |
| Multisensory perception and action in 3-ball cascade juggling. | SΓ‘nchez GarcΓa R et al. | β | 2013 | β |
| Noise alters beta-band activity in superior temporal cortex during audiovisual speech processing. | Schepers IM et al. | β | 2013 | β |
| Recalibration of the multisensory temporal window of integration results from changing task demands. | MΓ©gevand P et al. | β | 2013 | β |
| The contributions of sensory dominance and attentional bias to cross-modal enhancement of visual cortex excitability. | Romei V et al. | β | 2013 | β |
| The interaction between attention and motor prediction. An ERP study. | Jones A et al. | β | 2013 | β |
| When Intuition Fails to Align with Data: A Reply to. | Richler JJ et al. | β | 2013 | β |
| Age-related multisensory integration elicited by peripherally presented audiovisual stimuli. | Wu J et al. | β | 2012 | β |
| Does bimodal stimulus presentation increase ERP components usable in BCIs? | Thurlings ME et al. | β | 2012 | β |
| Electrophysiological correlates of predictive coding of auditory location in the perception of natural audiovisual events. | Stekelenburg JJ et al. | β | 2012 | β |
| Steady-state responses in MEG demonstrate information integration within but not across the auditory and visual senses. | Giani AS et al. | β | 2012 | β |
| The effect of multisensory cues on attention in aging. | Mahoney JR et al. | β | 2012 | β |
| Audiovisual asynchrony detection and speech intelligibility in noise with moderate to severe sensorineural hearing impairment. | BaΕkent D et al. | β | 2011 | β |
| Early attention modulates perceptual interpretation of multisensory stimuli. | Zvyagintsev M et al. | β | 2011 | β |
| Electrophysiological evidence for biased competition in V1 for fear expressions. | West GL et al. | β | 2011 | β |
| In the blink of an eye: neural responses elicited to viewing the eye blinks of another individual. | Brefczynski-Lewis JA et al. | β | 2011 | β |
| Multisensory integration and attention in autism spectrum disorder: evidence from event-related potentials. | MagnΓ©e MJ et al. | β | 2011 | β |
| Multisensory interactions in early evoked brain activity follow the principle of inverse effectiveness. | Senkowski D et al. | β | 2011 | β |
| Neural mechanisms for the effect of prior knowledge on audiovisual integration. | Liu Q et al. | β | 2011 | β |
| Neurobehavioral correlates of the rapid formation of the symbolic control of visuospatial attention. | Trujillo LT et al. | β | 2011 | β |
| Perceptual load influences auditory space perception in the ventriloquist aftereffect. | Eramudugolla R et al. | β | 2011 | β |
| Spatially uninformative sounds increase sensitivity for visual motion change. | Staufenbiel SM et al. | β | 2011 | β |
| The development of audiovisual multisensory integration across childhood and early adolescence: a high-density electrical mapping study. | Brandwein AB et al. | β | 2011 | β |
| The influence of temporal asynchrony on multisensory integration in the processing of asynchronous audio-visual stimuli of real-world events: an event-related potential study. | Liu B et al. | β | 2011 | β |
| An exploratory event-related potential study of multisensory integration in sensory over-responsive children. | Brett-Green BA et al. | β | 2010 | β |
| Attention and the multiple stages of multisensory integration: A review of audiovisual studies. | Koelewijn T et al. | β | 2010 | β |
| Audiovisual interaction enhances auditory detection in late stage: an event-related potential study. | Li Q et al. | β | 2010 | β |
| Cortical activity preceding vertical saccades: a MEG study. | Tzelepi A et al. | β | 2010 | β |
| Dynamic crossmodal links revealed by steady-state responses in auditory-visual divided attention. | de Jong R et al. | β | 2010 | β |
| Effect of attention on early cortical processes associated with the sound-induced extra flash illusion. | Mishra J et al. | β | 2010 | β |
| Multisensory processing in children with autism: high-density electrical mapping of auditory-somatosensory integration. | Russo N et al. | β | 2010 | β |
| Onset timing of cross-sensory activations and multisensory interactions in auditory and visual sensory cortices. | Raij T et al. | β | 2010 | β |
| Orienting of spatial attention and the interplay between the senses. | Macaluso E | β | 2010 | β |
| Temporal dynamics of unimodal and multimodal feature binding. | Zmigrod S et al. | β | 2010 | β |
| The behavioral relevance of multisensory neural response interactions. | Sperdin HF et al. | β | 2010 | β |
| The electrophysiological time course of the interaction of stimulus conflict and the multisensory spread of attention. | Zimmer U et al. | β | 2010 | β |
| The multifaceted interplay between attention and multisensory integration. | Talsma D et al. | β | 2010 | β |
| Top-down and bottom-up modulation in processing bimodal face/voice stimuli. | Latinus M et al. | β | 2010 | β |
| Visual anticipatory information modulates multisensory interactions of artificial audiovisual stimuli. | Vroomen J et al. | β | 2010 | β |
| An ERP investigation on visuotactile interactions in peripersonal and extrapersonal space: evidence for the spatial rule. | Sambo CF et al. | β | 2009 | β |
| Auditory spatio-temporal brain dynamics and their consequences for multisensory interactions in humans. | Murray MM et al. | β | 2009 | β |
| Capturing spatial attention with multisensory cues: a review. | Spence C et al. | β | 2009 | β |
| Early, low-level auditory-somatosensory multisensory interactions impact reaction time speed. | Sperdin HF et al. | β | 2009 | β |
| Electrophysiological (EEG, sEEG, MEG) evidence for multiple audiovisual interactions in the human auditory cortex. | Besle J et al. | β | 2009 | β |
| ERPs to infrequent auditory stimuli in two- and three-stimulus versions of the inter-modal oddball task. | Brown CR et al. | β | 2009 | β |
| Interactions between voluntary and stimulus-driven spatial attention mechanisms across sensory modalities. | Santangelo V et al. | β | 2009 | β |
| Intermodal attention affects the processing of the temporal alignment of audiovisual stimuli. | Talsma D et al. | β | 2009 | β |
| Multisensory interactions elicited by audiovisual stimuli presented peripherally in a visual attention task: a behavioral and event-related potential study in humans. | Wu J et al. | β | 2009 | β |
| Perspectives on sensory processing disorder: a call for translational research. | Miller LJ et al. | β | 2009 | β |
| Preservation of crossmodal selective attention in healthy aging. | Hugenschmidt CE et al. | β | 2009 | β |
| Spatial attention can modulate audiovisual integration at multiple cortical and subcortical sites. | Fairhall SL et al. | β | 2009 | β |
| Suppression of multisensory integration by modality-specific attention in aging. | Hugenschmidt CE et al. | β | 2009 | β |
| The role of attention on the integration of visual and inertial cues. | Berger DR et al. | β | 2009 | β |
| A transition from unimodal to multimodal activations in four sensory modalities in humans: an electrophysiological study. | Tanaka E et al. | β | 2008 | β |
| Auto-adaptive averaging: detecting artifacts in event-related potential data using a fully automated procedure. | Talsma D | β | 2008 | β |
| Capturing spatial attention with multisensory cues. | Santangelo V et al. | β | 2008 | β |
| Cortical processes underlying sound-induced flash fusion. | Mishra J et al. | β | 2008 | β |
| Information Processing Bias in Post-traumatic Stress Disorder. | Weber DL | β | 2008 | β |
| Is the exogenous orienting of spatial attention truly automatic? Evidence from unimodal and multisensory studies. | Santangelo V et al. | β | 2008 | β |
| Look who's talking: the deployment of visuo-spatial attention during multisensory speech processing under noisy environmental conditions. | Senkowski D et al. | β | 2008 | β |
| Modality-specific selective attention attenuates multisensory integration. | Mozolic JL et al. | β | 2008 | β |
| Multisensory integration affects ERP components elicited by exogenous cues. | Santangelo V et al. | β | 2008 | β |
| Multisensory integration in children: a preliminary ERP study. | Brett-Green BA et al. | β | 2008 | β |
| Multisensory interplay reveals crossmodal influences on 'sensory-specific' brain regions, neural responses, and judgments. | Driver J et al. | β | 2008 | β |
| Temporally selective attention modulates early perceptual processing: event-related potential evidence. | Sanders LD et al. | β | 2008 | β |
| The effect of attention on the illusory capture of motion in bimodal stimuli. | Oruc I et al. | β | 2008 | β |
| The role of the posterior superior temporal sulcus in audiovisual processing. | Hocking J et al. | β | 2008 | β |
| Age-related multisensory enhancement in a simple audiovisual detection task. | Peiffer AM et al. | β | 2007 | β |
| Attention to touch weakens audiovisual speech integration. | Alsius A et al. | β | 2007 | β |
| Conscious access to the unisensory components of a cross-modal illusion. | Soto-Faraco S et al. | β | 2007 | β |
| Disentangling gaze shifts from preparatory ERP effects during spatial attention. | Kennett S et al. | β | 2007 | β |
| Early cross-modal interactions in auditory and visual cortex underlie a sound-induced visual illusion. | Mishra J et al. | β | 2007 | β |
| Faster, more intense! The relation between electrophysiological reflections of attentional orienting, sensory gain control, and speed of responding. | Talsma D et al. | β | 2007 | β |
| Good times for multisensory integration: Effects of the precision of temporal synchrony as revealed by gamma-band oscillations. | Senkowski D et al. | β | 2007 | β |
| Human brain activity associated with audiovisual perception and attention. | Degerman A et al. | β | 2007 | β |
| Improvement of visual contrast detection by a simultaneous sound. | Lippert M et al. | β | 2007 | β |
| Modality shift effects mimic multisensory interactions: an event-related potential study. | Gondan M et al. | β | 2007 | β |
| Multimodal access to verbal name codes. | Berryhill M et al. | β | 2007 | β |
| Multisensory processing and oscillatory activity: analyzing non-linear electrophysiological measures in humans and simians. | Senkowski D et al. | β | 2007 | β |
| Multisensory processing of naturalistic objects in motion: a high-density electrical mapping and source estimation study. | Senkowski D et al. | β | 2007 | β |
| Neural basis of the ventriloquist illusion. | Bonath B et al. | β | 2007 | β |
| Processing of multisensory spatial congruency can be dissociated from working memory and visuo-spatial attention. | Zimmer U et al. | β | 2007 | β |
| The relation of brain oscillations to attentional networks. | Fan J et al. | β | 2007 | β |
| What you see is not (always) what you hear: induced gamma band responses reflect cross-modal interactions in familiar object recognition. | Yuval-Greenberg S et al. | β | 2007 | β |
| Attentional capacity for processing concurrent stimuli is larger across sensory modalities than within a modality. | Talsma D et al. | β | 2006 | β |
| Crossmodal attention effects on brain responses to different stimulus classes. | Nager W et al. | β | 2006 | β |
| Inter-modal attention: ERPs to auditory targets in an inter-modal oddball task. | Brown CR et al. | β | 2006 | β |
| Neural mass model of human multisensory integration. | Moran RJ et al. | β | 2006 | β |
| The spatial constraint in intersensory pairing: no role in temporal ventriloquism. | Vroomen J et al. | β | 2006 | β |
| Multisensory processing and oscillatory gamma responses: effects of spatial selective attention. | Senkowski D et al. | β | 2005 | β |