Cortical Abnormalities Associated With Pediatric and Adult Obsessive-Compulsive Disorder: Findings From the ENIGMA Obsessive-Compulsive Disorder Working Group.
- Authors
- Boedhoe, Premika S W; Schmaal, Lianne; Abe, Yoshinari; Alonso, Pino; Ameis, Stephanie H; Anticevic, Alan; Arnold, Paul D; Batistuzzo, Marcelo C; Benedetti, Francesco; Beucke, Jan C; Bollettini, Irene; Bose, Anushree; Brem, Silvia; Calvo, Anna; Calvo, Rosa; Cheng, Yuqi; Cho, Kang Ik K; Ciullo, Valentina; Dallaspezia, Sara; Denys, Damiaan; Feusner, Jamie D; Fitzgerald, Kate D; Fouche, Jean-Paul; Fridgeirsson, Egill A; Gruner, Patricia; Hanna, Gregory L; Hibar, Derrek P; Hoexter, Marcelo Q; Hu, Hao; Huyser, Chaim; Jahanshad, Neda; James, Anthony; Kathmann, Norbert; Kaufmann, Christian; Koch, Kathrin; Kwon, Jun Soo; Lazaro, Luisa; Lochner, Christine; Marsh, Rachel; MartΓnez-ZalacaΓn, Ignacio; Mataix-Cols, David; MenchΓ³n, JosΓ© M; Minuzzi, Luciano; Morer, Astrid; Nakamae, Takashi; Nakao, Tomohiro; Narayanaswamy, Janardhanan C; Nishida, Seiji; Nurmi, Erika; O'Neill, Joseph; Piacentini, John; Piras, Fabrizio; Piras, Federica; Reddy, Y C Janardhan; Reess, Tim J; Sakai, Yuki; Sato, Joao R; Simpson, H Blair; Soreni, Noam; Soriano-Mas, Carles; Spalletta, Gianfranco; Stevens, Michael C; Szeszko, Philip R; Tolin, David F; van Wingen, Guido A; Venkatasubramanian, Ganesan; Walitza, Susanne; Wang, Zhen; Yun, Je-Yeon; ENIGMA-OCD Working Group; Thompson, Paul M; Stein, Dan J; van den Heuvel, Odile A; ENIGMA OCD Working Group
- Year
- 2018
- Journal
- The American journal of psychiatry
- PMID
- 29377733
- DOI
- 10.1176/appi.ajp.2017.17050485
- PMCID
- PMC7106947
OBJECTIVE: Brain imaging studies of structural abnormalities in OCD have yielded inconsistent results, partly because of limited statistical power, clinical heterogeneity, and methodological differences. The authors conducted meta- and mega-analyses comprising the largest study of cortical morphometry in OCD ever undertaken. METHOD: T-weighted MRI scans of 1,905 OCD patients and 1,760 healthy controls from 27 sites worldwide were processed locally using FreeSurfer to assess cortical thickness and surface area. Effect sizes for differences between patients and controls, and associations with clinical characteristics, were calculated using linear regression models controlling for age, sex, site, and intracranial volume. RESULTS: In adult OCD patients versus controls, we found a significantly lower surface area for the transverse temporal cortex and a thinner inferior parietal cortex. Medicated adult OCD patients also showed thinner cortices throughout the brain. In pediatric OCD patients compared with controls, we found significantly thinner inferior and superior parietal cortices, but none of the regions analyzed showed significant differences in surface area. However, medicated pediatric OCD patients had lower surface area in frontal regions. Cohen's d effect sizes varied from -0.10 to -0.33. CONCLUSIONS: The parietal cortex was consistently implicated in both adults and children with OCD. More widespread cortical thickness abnormalities were found in medicated adult OCD patients, and more pronounced surface area deficits (mainly in frontal regions) were found in medicated pediatric OCD patients. These cortical measures represent distinct morphological features and may be differentially affected during different stages of development and illness, and possibly moderated by disease profile and medication.
Mega-analysis effect sizes for regions that showed a significant (q<0.05) difference in cortical thickness between adult OCD patients and healthy controls. Negative effect sizes d (red) indicate cortical thinning in OCD compared to controls
LLM interpretation
This figure consists of four brain surface maps showing regional cortical thickness differences between adult OCD patients and healthy controls for the left and right hemispheres. Red-shaded regions indicate negative effect sizes ($d$), representing significant cortical thinning in OCD patients compared to controls. A color scale on the right maps the effect size $d$, ranging from -0.15 (red) to 0.15 (blue).
Mega-analysis effect sizes for regions that showed a significant (q<0.05) difference in cortical thickness between pediatric OCD patients and healthy controls. Negative effect sizes d (red) indicate cortical thinning in OCD compared to controls
LLM interpretation
This figure consists of four brain surface maps showing regional cortical thickness differences between pediatric OCD patients and healthy controls for the left and right hemispheres. Red-shaded regions indicate negative effect sizes ($d$), representing significant cortical thinning in the OCD group compared to controls. A color scale on the right maps the effect size $d$, ranging from -0.15 (red) to 0.15 (blue).
Mega-analysis effect sizes for regions that showed a significant (q<0.05) difference in cortical thickness between adult medicated OCD patients and healthy controls. Negative effect sizes d (red) indicate cortical thinning in OCD compared to controls.
LLM interpretation
This figure consists of four brain surface maps showing regional cortical thickness differences between adult medicated OCD patients and healthy controls for the left and right hemispheres. A color scale represents the effect size $d$, where red and orange hues indicate cortical thinning in OCD patients and grey indicates non-significant regions. The visualization shows widespread areas of cortical thinning (negative effect sizes) across both hemispheres.
Mega-analysis effect sizes for regions that showed a significant (q<0.05) difference in cortical surface area between pediatric medicated OCD patients and healthy controls. Negative effect sizes d (red) indicate reduced cortical surface area in OCD compared to controls.
LLM interpretation
This figure consists of four brain surface maps showing the regional cortical surface area differences between pediatric medicated OCD patients and healthy controls for the left and right hemispheres. Red-shaded regions indicate a negative effect size ($d$), representing a significant reduction ($q < 0.05$) in cortical surface area in the OCD group compared to controls. A color scale on the right maps the effect size $d$, ranging from -0.15 (red) to 0.15 (blue).
| Name | Type |
|---|---|
| ACC | anatomy |
| adult illness onset local | phenotype |
| Adult illness onset local | phenotype |
| adult OCD local | cohort |
| Adult OCD group local | cohort |
| adult OCD patients local | cohort |
| Adult OCD patients local | cohort |
| Adult OCD patients with adult illness onset local | cohort |
| Adult OCD patients with childhood illness onset local | cohort |
| Adult OCD patients with childhood-onset local | cohort |
| adult-onset group local | cohort |
| Adult-onset Obsessive-Compulsive Disorder local | phenotype |
| adult patients with childhood disease onset local | cohort |
| adults | cohort |
| Adults with OCD local | cohort |
| age at onset | phenotype |
| angular gyrus | anatomy |
| anterior cingulate cortex | anatomy |
| antidepressants | drug |
| anti-OCD medication local | drug |
| antipsychotics | drug |
| anxiety | phenotype |
| attention | phenotype |
| attention deficit hyperactivity disorder | phenotype |
| auditory hallucinations | phenotype |
| brain | anatomy |
| brain structure | anatomy |
| cerebral hemispheres | anatomy |
| Childhood illness onset local | phenotype |
| childhood-onset group local | cohort |
| Childhood-onset Obsessive-Compulsive Disorder local | phenotype |
| children | cohort |
| Children with OCD local | cohort |
| Classical CSTC regions local | anatomy |
| cognition | phenotype |
| cognitive flexibility | phenotype |
| Comorbid depression local | phenotype |
| control | cohort |
| controls | cohort |
| cortex | anatomy |
| cortical gray matter region local | anatomy |
| cortical measures local | phenotype |
| cortical surface area | anatomy |
| cortical thickness | phenotype |
| Cortical thickness abnormalities local | phenotype |
| Cortical thickness abnormality local | phenotype |
| cortico-striato-thalamo-cortical circuit | anatomy |
| current comorbid anxiety disorder local | phenotype |
| current comorbid depression local | phenotype |
| Currently medicated OCD patients local | cohort |
| current study | cohort |
| default mode network | anatomy |
| depression | phenotype |
| Desikan-Killiany atlas local | drug |
| dorsomedial prefrontal cortex | anatomy |
| ENIGMA | cohort |
| ENIGMA consortium | cohort |
| ENIGMA-OCD working group | cohort |
| FreeSurfer | drug |
| frontal cortex | anatomy |
| Frontal surface area local | anatomy |
| fronto-limbic region local | anatomy |
| fronto-parietal network | anatomy |
| fronto-parietal region | anatomy |
| gray matter thickness local | anatomy |
| head motion | phenotype |
| healthy controls | cohort |
| hippocampus | anatomy |
| Hormonal influence local | drug |
| Illness duration local | phenotype |
| Illness severity local | phenotype |
| Illness severity (CY-BOCS) local | phenotype |
| inferior parietal lobe | anatomy |
| Intracranial volume local | drug |
| Lateral occipital cortex | anatomy |
| left cuneus | anatomy |
| Left hemisphere total surface area local | anatomy |
| Left pars opercularis local | anatomy |
| left transverse temporal cortex local | anatomy |
| Left transverse temporal cortex local | anatomy |
| Lingual cortex | anatomy |
| major depressive disorder | phenotype |
| medicated adult OCD patients | cohort |
| Medicated children with OCD local | cohort |
| Medicated group local | cohort |
| medicated OCD patients local | cohort |
| medicated patients | cohort |
| Medicated pediatric OCD cohort local | cohort |
| medicated pediatric OCD patients | cohort |
| medication | drug |
| OBIC consortium local | cohort |
| OBIC sample local | cohort |
| obsessive-compulsive disorder | phenotype |
| Obsessive-compulsive severity | phenotype |
| occipital cortex | anatomy |
| OCD | phenotype |
| OCD Brain Imaging Consortium local | cohort |
| Operculum local | anatomy |
| orbitofrontal cortex | anatomy |
| ordering and symmetry symptoms local | phenotype |
| ordering/symmetry dimension local | phenotype |
| pallidum | anatomy |
| parietal cortex | anatomy |
| pediatric cohort | cohort |
| Pediatric OCD local | cohort |
| Pediatric OCD cohort local | cohort |
| Pediatric OCD group local | cohort |
| Pediatric OCD patients local | cohort |
| Pediatric OCD patients with ordering and symmetry symptoms local | cohort |
| Pediatric participants local | cohort |
| Pericalcarine cortex local | anatomy |
| planning | phenotype |
| primary auditory cortex | anatomy |
| puberty | phenotype |
| response inhibition | phenotype |
| Right hemisphere total surface area local | anatomy |
| schizophrenia | phenotype |
| Set shifting | phenotype |
| study cohort | cohort |
| Subcortical volume differences local | phenotype |
| superior parietal cortex | anatomy |
| supramarginal gyrus | anatomy |
| surface area | phenotype |
| Surface area deficits local | phenotype |
| symptom dimension | phenotype |
| T1-weighted MRI local | drug |
| temporal region | anatomy |
| Temporo-Parietal Region local | anatomy |
| thalamus | anatomy |
| Tourette syndrome | phenotype |
| transverse temporal cortex local | anatomy |
| Transverse temporal cortex local | anatomy |
| Unmedicated group local | cohort |
| unmedicated OCD patients local | cohort |
| Unmedicated OCD patients local | cohort |
| Unmedicated pediatric OCD cohort local | cohort |
| whole-hemisphere measure local | anatomy |
No uploaded files.
| Citation | PMID | DOI | Status |
|---|---|---|---|
| AndersonBJ: Plasticity of gray matter volume: The cellular and synaptic plasticity that underlies volumetric change. Dev. Psychobiol. 2011; 53(5), 456β465.2167839310.1002/dev.20563 | β | β | β |
| AnholtGE, AderkaIM, van BalkomAJLM, SmitJH, SchruersK, van der WeeNJA, EikelenboomM, De LucaV, van OppenP: Age of onset in obsessive-compulsive disorder: admixture analysis with a large sample. Psychol. Med. 2014; 44:185β1942351765110.1017/S0033291713000470 | β | β | β |
| AshburnerJ, FristonKJ: Voxel-based morphometry--the methods. Neuroimage 2000; 11:805β8211086080410.1006/nimg.2000.0582 | β | β | β |
| BoedhoePSW, SchmaalL, AbeY, AmeisSH, ArnoldPD, BatistuzzoMC, BenedettiF, BeuckeJC, BollettiniI, BoseA, BremS, CalvoA, ChengY, ChoKIK, DallaspeziaS, DenysD, FitzgeraldKD, FoucheJ-P, GimΓ©nezM, GrunerP, HannaGL, HibarDP, HoexterMQ, HuH, HuyserC, IkariK, JahanshadN, KathmannN, KaufmannC, KochK, KwonJS, LazaroL, LiuY, LochnerC, MarshR, MartΓnez-ZalacaΓnI, Mataix-ColsD, MenchΓ³nJM, MinuzziiL, NakamaeT, NakaoT, NarayanaswamyJC, PirasF, PirasF, PittengerC, ReddyYCJ, SatoJR, SimpsonHB, SoreniN, Soriano-MasC, SpallettaG, StevensMC, SzeszkoPR, TolinDF, VenkatasubramanianG, WalitzaS, WangZ, van WingenGA, XuJ, XuX, YunJ-Y, ZhaoQ, ThompsonPM, SteinDJ, van den HeuvelOA, HeuvelOA van den: Distinct Subcortical Volume Alterations in Pediatric and Adult OCD: A Worldwide Meta- and Mega-Analysis. Am. J. Psychiatry 2017; 174:60β702760924110.1176/appi.ajp.2016.16020201PMC5344782 | β | β | β |
| BoedhoePSW, SchmaalL, Mataix-colsD, ENIGMA-OCD working group, ThompsonPM, SteinD, van den HeuvelOA: Association and Causation in Brain Imaging : The Case of OCD - Response to McKay et al. Am. J. Psychiatry 2017; 174(6), 60β692856594510.1176/appi.ajp.2017.17010019rPMC6546159 | β | β | β |
| ButtonKS, IoannidisJP a, MokryszC, NosekBA, FlintJ, RobinsonESJ, MunafΓ²MR: Power failure: why small sample size undermines the reliability of neuroscience. Nat. Rev. Neurosci. 2013; 14:365β762357184510.1038/nrn3475 | β | β | β |
| ChenX, LiangS, PuW, SongY, MwansisyaTE, YangQ, LiuH, LiuZ, ShanB, XueZ: Reduced cortical thickness in right Heschlβs gyrus associated with auditory verbal hallucinations severity in first-episode schizophrenia. BMC Psychiatry 2015; 15:1522614949010.1186/s12888-015-0546-2PMC4493802 | β | β | β |
| ClarksonMJ, CardosoMJ, RidgwayGR, ModatM, LeungKK, RohrerJD, FoxNC, OurselinS: A comparison of voxel and surface based cortical thickness estimation methods. Neuroimage 2011; 57:856β8652164084110.1016/j.neuroimage.2011.05.053 | β | β | β |
| de WitSJ, AlonsoP, SchwerenL, Mataix-ColsD, LochnerC, MenchΓ³nJM, SteinDJ, FoucheJP, Soriano-MasC, SatoJR, HoexterMQ, DenysD, NakamaeT, NishidaS, KwonJS, JangJH, BusattoGF, CardonerN, CathDC, FukuiK, JungWH, KimSN, MiguelEC, NarumotoJ, PhillipsML, PujolJ, RemijnsePL, SakaiY, ShinNY, YamadaK, VeltmanDJ, Van Den HeuvelOA.: Multicenter voxelbased morphometry mega-analysis of structural brain scans in obsessive-compulsive disorder. Am. J. Psychiatry 2014; 171:340β3492422066710.1176/appi.ajp.2013.13040574 | β | β | β |
| DesikanRS, SΓ©gonneF, FischlB, QuinnBT, DickersonBC, BlackerD, BucknerRL, DaleAM, MaguireRP, HymanBT, AlbertMS, KillianyRJ: An automated labeling system for subdividing the human cerebral cortex on MRI scans into gyral based regions of interest. Neuroimage 2006; 31:968β9801653043010.1016/j.neuroimage.2006.01.021 | β | β | β |
| FalluccaE, MacMasterFP, HaddadJ, EasterP, DickR, MayG, StanleyJA, RixC, RosenbergDR: Distinguishing Between Major Depressive Disorder and Obsessive-Compulsive Disorder in Children by Measuring Regional Cortical Thickness. 2011; 68:527β53310.1001/archgenpsychiatry.2011.36PMC477735121536980 | β | β | β |
| FanQ, PalaniyappanL, TanL, WangJ, WangX, LiC, ZhangT, JiangK, XiaoZ, LiddlePF: Surface anatomical profile of the cerebral cortex in obsessiveβcompulsive disorder: a study of cortical thickness, folding and surface area. Psychol. Med. 2013; 43:1081β10912293542710.1017/S0033291712001845 | β | β | β |
| FischlB, SalatDH, BusaE, AlbertM, DieterichM, HaselgroveC, Van Der KouweA, KillianyR, KennedyD, KlavenessS, MontilloA, MakrisN, RosenB, DaleAM: Whole brain segmentation: Automated labeling of neuroanatomical structures in the human brain. Neuron 2002; 33:341β3551183222310.1016/s0896-6273(02)00569-x | β | β | β |
| FoucheJ-P, du PlessisS, HattinghC, RoosA, LochnerC, Soriano-MasC, SatoJR, NakamaeT, NishidaS, KwonJS, JungWH, Mataix-ColsD, HoexterMQ, AlonsoP, OCD Brain Imaging Consortium, de WitSJ, VeltmanDJ, SteinDJ, van den HeuvelOA: Cortical thickness in obsessive-compulsive disorder: multisite mega-analysis of 780 brain scans from six centres. Br. J. Psychiatry 2017; 210:67β742719848510.1192/bjp.bp.115.164020 | β | β | β |
| GlasserMF, CoalsonTS, RobinsonEC, HackerCD, HarwellJ, YacoubE, UgurbilK, AnderssonJ, BeckmannCF, JenkinsonM, SmithSM, Van EssenDC: A multi-modal parcellation of human cerebral cortex. Nature 2016; 536:171β82743757910.1038/nature18933PMC4990127 | β | β | β |
| GogtayN, GieddJN, LuskL, HayashiKM, GreensteinD, Vaituzisa C, NugentTF, HermanDH, ClasenLS, TogaAW, RapoportJL, ThompsonPM: Dynamic mapping of human cortical development during childhood through early adulthood. Proc. Natl. Acad. Sci. U. S. A. 2004; 101:8174β91514838110.1073/pnas.0402680101PMC419576 | β | β | β |
| GoodmanWK, PriceLH, RasmussenSA, MazureC, FleischmannRL, HillCL, HeningerGR, CharneyDS: The Yale-Brown Obsessive Compulsive Scale. Arch 1989; 46:1006β101110.1001/archpsyc.1989.018101100480072684084 | β | β | β |
| GraybielAM, RauchSL: Toward a neurobiology of obsessive-compulsive disorder. Neuron 2000; 28:343β3471114434410.1016/s0896-6273(00)00113-6 | β | β | β |
| HoexterMQ, DuranDS, AlcanteCCD, DoughertyDD, ShavittRG, LopesAC, DinizJB, DeckersbachT, BatistuzzoMC, BressanRA, MiguelEC, BusattoGF: Gray Matter Volumes in Obsessive-Compulsive Disorder Before and After Fluoxetine or Cognitive-Behavior Therapy : A Randomized Clinical Trial. Neuropsychopharmacology 2012; 37:734β7452203070910.1038/npp.2011.250PMC3260985 | β | β | β |
| HuttonC, DraganskiB, AshburnerJ, WeiskopfN: A comparison between voxel-based cortical thickness and voxel-based morphometry in normal aging. Neuroimage 2009; 48:371β3801955980110.1016/j.neuroimage.2009.06.043PMC2741580 | β | β | β |
| KopΕivovΓ‘J, HorΓ‘ΔekJ, TintΔraJ, PraΕ‘koJ, RaszkaM, IbrahimI, HΓΆschlC: Medial frontal and dorsal cortical morphometric abnormalities are related to obsessive-compulsive disorder. Neurosci. Lett. 2009; 464:62β661966608410.1016/j.neulet.2009.08.012 | β | β | β |
| KuhnS, KaufmannC, SimonD, EndrassT, GallinatJ, KathmannN: Reduced thickness of anterior cingulate cortex in obsessive-compulsive disorder. Cortex 2013; 49:2178β21852306772710.1016/j.cortex.2012.09.001 | β | β | β |
| LeckmanJF, DenysD, SimpsonHB, Mataix-ColsD, HollanderE, SaxenaS, MiguelEC, RauchSL, GoodmanWK, PhillipsKA, SteinDJ: Obsessive-compulsive disorder: A review of the diagnostic criteria and possible subtypes and dimensional specifiers for DSM-V. Depress. Anxiety 2010; 27:507β5272021785310.1002/da.20669PMC3974619 | β | β | β |
| LΓ‘zaroL, BargallΓ³N, Castro-FornielesJ, FalcΓ³nC, AndrΓ©sS, CalvoR, JunquΓ©C: Brain changes in children and adolescents with obsessive-compulsive disorder before and after treatment: A voxelbased morphometric MRI study. Psychiatry Res. - Neuroimaging 2009; 172:140β14610.1016/j.pscychresns.2008.12.00719321314 | β | β | β |
| Mataix-ColsD, WoodersonS, LawrenceN, BrammerMJ, SpeckensA, PhillipsML: Distinct neural correlates of washing, checking, and hoarding symptom dimensions in obsessive-compulsive disorder. Arch. Gen. Psychiatry 2004; 61:564β5761518423610.1001/archpsyc.61.6.564 | β | β | β |
| MiladMR, RauchSL: Obsessive-compulsive disorder: Beyond segregated cortico-striatal pathways. Trends Cogn. Sci. 2012; 16:43β512213823110.1016/j.tics.2011.11.003PMC4955838 | β | β | β |
| NakamaeT, NarumotoJ, SakaiY, NishidaS, YamadaK, KubotaM, MiyataJ, FukuiK: Reduced cortical thickness in non-medicated patients with obsessive-compulsive disorder. Prog. NeuroPsychopharmacology Biol. Psychiatry 2012; 37:90β9510.1016/j.pnpbp.2012.01.00122251565 | β | β | β |
| NarayanVM, NarrKL, PhilipsOR, ThompsonPM, TogaAW, SzeszkoPR: Greater regional cortical gray matter thickness in obsessive-compulsive disorder. Neuroreport 2008; 19:1551β15551879731510.1097/WNR.0b013e3283112720PMC2807445 | β | β | β |
| OβConnorK, AardemaF: Fusion or confusion in obsessive compulsive disorder. Psychol. Rep. 2003; 93:227β2321456305410.2466/pr0.2003.93.1.227 | β | β | β |
| PirasF, PirasF, ChiapponiC, GirardiP, CaltagironeC, SpallettaG: Widespread structural brain changes in OCD: A systematic review of voxel-based morphometry studies. Cortex 2015; 62:89β1082358229710.1016/j.cortex.2013.01.016 | β | β | β |
| PosnerJ, SongI, LeeS, RodriguezCI, MooreH, MarshR, BlairSimpson H: Increased functional connectivity between the default mode and salience networks in unmedicated adults with obsessive-compulsive disorder. Hum. Brain Mapp. 2017; 38:678β6872765929910.1002/hbm.23408PMC5225141 | β | β | β |
| RaduaJ, Mataix-ColsD: Voxel-wise meta-analysis of grey matter changes in obsessive-compulsive disorder. Br. J. Psychiatry 2009; 195:393β4021988092710.1192/bjp.bp.108.055046 | β | β | β |
| RaduaJ, van den HeuvelO a, SurguladzeS, Mataix-ColsD: Meta-analytical comparison of voxelbased morphometry studies in obsessive-compulsive disorder vs other anxiety disorders. Arch. Gen. Psychiatry 2010; 67:701β7112060345110.1001/archgenpsychiatry.2010.70 | β | β | β |
| RakicP: Specification of Cerebral Cortical Areas. Science. 1988; 241:170β176329111610.1126/science.3291116 | β | β | β |
| RosenbergDR, KeshavanMS: Toward a neurodevelopmental model of obsessive-compulsive disorder. Biol. Psychiatry 1998; 43:623β640958299610.1016/s0006-3223(97)00443-5 | β | β | β |
| RotgeJ-Y, LangbourN, GuehlD, BioulacB, JaafariN, AllardM, AouizerateB, BurbaudP: Gray matter alterations in obsessive-compulsive disorder: an anatomic likelihood estimation metaanalysis. Neuropsychopharmacology 2010; 35:686β6911989026010.1038/npp.2009.175PMC3055616 | β | β | β |
| SavaliaNK, AgresPF, ChanMY, FeczkoEJ, KennedyKM, WigGS: Motion-related artifacts in structural brain images revealed with independent estimates of in-scanner head motion. Hum. Brain Mapp. 2017; 38:472β4922763455110.1002/hbm.23397PMC5217095 | β | β | β |
| ScahillL, RiddleM a., McSWIGGIN-HARDINM, OrtSI, KingR a., GoodmanWK, CicchettiD, LeckmanJF: Childrenβs Yale-Brown Obsessive Compulsive Scale: Reliability and Validity. J. Am. Acad. Child Adolesc. Psychiatry 1997; 36:844β852918314110.1097/00004583-199706000-00023 | β | β | β |
| SternER, FitzgeraldKD, WelshRC, AbelsonJL, TaylorSF: Resting-state functional connectivity between fronto-parietal and default mode networks in obsessive-compulsive disorder. PLoS One 2012; 710.1371/journal.pone.0036356PMC334305422570705 | β | β | β |
| ThompsonPM, AndreassenOA, Arias-VasquezA, BeardenCE, BoedhoePS, BrouwerRM, BucknerRL, BuitelaarJK, BulaevaKB, CannonDM, CohenRA, ConrodPJ, DaleAM, DearyIJ, DennisEL, de ReusM a., DesrivieresS, DimaD, DonohoeG, FisherSE, FoucheJ-P, FrancksC, FrangouS, FrankeB, GanjgahiH, GaravanH, GlahnDC, GrabeHJ, GuadalupeT, GutmanB a., HashimotoR, HibarDP, HollandD, HoogmanM, PolHEH, HostenN, JahanshadN, KellyS, KochunovP, KremenWS, LeePH, MackeyS, MartinNG, MazoyerB, McDonaldC, MedlandSE, MoreyRA, NicholsTE, PausT, PausovaZ, SchmaalL, SchumannG, ShenL, SisodiyaSM, SmitDJ a., SmollerJW, SteinDJ, SteinJL, ToroR, TurnerJ a., van den HeuvelM, van den HeuvelO a., van ErpTGM, van RooijD, VeltmanDJ, WalterH, WangY, WardlawJM, WhelanCD, WrightMJ, YeJ: ENIGMA and the Individual: Predicting Factors that Affect the Brain in 35 Countries Worldwide. Neuroimage 2017; 145;389β4082665893010.1016/j.neuroimage.2015.11.057PMC4893347 | β | β | β |
| van den HeuvelOA, RemijnsePL, Mataix-ColsD, VrenkenH, GroenewegenHJ, UylingsHBM, Van BalkomAJLM, VeltmanDJ: The major symptom dimensions of obsessive-compulsive disorder are mediated by partially distinct neural systems. Brain 2009; 132:853β8681895267510.1093/brain/awn267 | β | β | β |
| van den HeuvelOA, van WingenG, Soriano-MasC, AlonsoP, ChamberlainSR, NakamaeT, DenysD, GoudriaanAE, VeltmanDJ: Brain circuitry of compulsivity. Eur. Neuropsychopharmacol. 2016; 26:810β8272671168710.1016/j.euroneuro.2015.12.005 | β | β | β |
| VenkatasubramanianG, ZutshiA, JindalS, SrikanthSG, KovoorJME, KumarJK, JanardhanReddy YC: Comprehensive evaluation of cortical structure abnormalities in drug-naive, adult patients with obsessive-compulsive disorder: A surface-based morphometry study. J. Psychiatr. Res. 2012; 46:1161β11682277050810.1016/j.jpsychires.2012.06.003 | β | β | β |
| WestlyeLT, WalhovdKB, DaleAM, BjΓΈrnerudA, Due-TΓΈnnessenP, EngvigA, GrydelandH, TamnesCK, ΓstbyY, FjellAM: Differentiating maturational and aging-related changes of the cerebral cortex by use of thickness and signal intensity. Neuroimage 2010; 52:172β1852034799710.1016/j.neuroimage.2010.03.056 | β | β | β |
| WierengaLM, LangenM, OranjeB, DurstonS: Unique developmental trajectories of cortical thickness and surface area. Neuroimage 2014; 87, 120β126.2424649510.1016/j.neuroimage.2013.11.010 | β | β | β |
| WinklerAM, KochunovP, FoxPT, DuggiralaR, AlmasyL, BlangeroJ, GlahnDC: Heritability of volume, surface area and thickness for anatomically defined cortical brain regions estimated in a large extended pedigree. Neuroimage 2009; 47:S162 | β | β | β |
| ZhangT, WangJ, YangY, WuQ, LiB, ChenL, YueQ, TangH, YanC, LuiS, HuangX, ChanRCK, ZangY, HeY, GongQ: Abnormal small-world architecture of top-down control networks in obsessive-compulsive disorder. J. Psychiatry Neurosci. 2011; 36:23β312096495710.1503/jpn.100006PMC3004972 | β | β | β |
In this knowledge base
External
| Title | Authors | Journal | Year | Link |
|---|---|---|---|---|
| Altered frontal and occipital cortical microstructure in obsessive-compulsive disorder - a multisite mega-analysis. | Thorsen AL et al. | β | 2026 | β |
| Biological Mechanisms and Treatment of Obsessive-Compulsive Disorder. | Pittenger C | β | 2026 | β |
| Developmental changes of the white matter functional connectome. | Feng G et al. | β | 2026 | β |
| Global scientific trends on neuroimaging in obsessive-compulsive disorder in the early twenty-first century: a bibliometric analysis and visualization analysis. | Zhou C et al. | β | 2026 | β |
| Neurostructural Substrates of Hierarchical Dimensions of Internalizing Symptoms in Youth. | Durham EL et al. | β | 2026 | β |
| Sex-specific brain morphometric associations with psychopathology severity in obsessive-compulsive disorder. | Yi X et al. | β | 2026 | β |
| Structural brain differences associated with panic disorder: an ENIGMA-Anxiety Working Group mega-analysis of 4924 individuals worldwide. | Han LKM et al. | β | 2026 | β |
| The prevalence of autism spectrum traits and autism spectrum disorders in children and adolescents with obsessive compulsive disorder: systematic review and meta-analysis. | Tiley C et al. | β | 2026 | β |
| Common neuroanatomical differential factors underlying heterogeneous gray matter volume variations in five common psychiatric disorders. | Han S et al. | β | 2025 | β |
| Comparing Different Montages of Transcranial Direct Current Stimulation in Treating Treatment-Resistant Obsessive Compulsive Disorder: A Randomized, Single-Blind Clinical Trial. | Chu CS et al. | β | 2025 | β |
| Comparison of retinal neural network parameters of children and adolescents diagnosed with obsessive compulsive disorder with the healthy controls: A cross-sectional study. | Sivri RΓ et al. | β | 2025 | β |
| Cortical thickness alternation in obsessive-compulsive disorder patients compared with healthy controls. | Dong C et al. | β | 2025 | β |
| Decoding Obsessive-Compulsive Disorder: The Regional Vulnerability Index and Its Association With Clinical Symptoms. | Koch K et al. | β | 2025 | β |
| Genome-wide analyses identify 30 loci associated with obsessive-compulsive disorder. | Strom NI et al. | β | 2025 | β |
| Grey matter volume differences in pediatric obsessive-compulsive disorder: a meta-analysis of voxel-based morphometry studies. | Li L et al. | β | 2025 | β |
| Individualized gray matter morphological abnormalities unveil two neuroanatomical obsessive-compulsive disorder subtypes. | Wen B et al. | β | 2025 | β |
| Lithium and valproate affect subcortical brain volumes in individuals with bipolar disorder: Mega-analysis of 235 individuals. | Hashimoto N et al. | β | 2025 | β |
| Morphometric brain MRI findings in hair-pulling and skin-picking disorders in youth. | O'Neill J et al. | β | 2025 | β |
| Negative Valence in Obsessive-Compulsive Disorder: A Worldwide Mega-Analysis of Task-Based Functional Neuroimaging Data of the ENIGMA-OCD Consortium. | Dzinalija N et al. | β | 2025 | β |
| Neurobiological correlates of schizophrenia-specific and highly pleiotropic genetic risk scores for neuropsychiatric disorders. | Federmann LM et al. | β | 2025 | β |
| Neuroimaging and Machine Learning in OCD: Advances in Diagnostic and Therapeutic Insights. | Alturaiqi NA et al. | β | 2025 | β |
| Neuroimaging insights into brain mechanisms of early-onset restrictive eating disorders. | Moreau CA et al. | β | 2025 | β |
| Obsessive-compulsive disorder and temporal lobe porencephaly: a case report. | Deng G et al. | β | 2025 | β |
| Obsessive-compulsive disorder - A state-of-the-art review. | Endres D et al. | β | 2025 | β |
| Obsessive-Compulsive Disorder Comorbid With or Without Obsessive-Compulsive Personality Disorder: Conceptual Implications, Clinical Correlates, and Brain Morphometries. | Zhang C et al. | β | 2025 | β |
| Shared and distinct alterations of thalamic subregional functional connectivity in early- and late-onset obsessive-compulsive disorder. | Yu Q et al. | β | 2025 | β |
| Staged Care for Adult Obsessive-Compulsive Disorder: A Neuroprogressive Model. | Moreira-de-Oliveira ME et al. | β | 2025 | β |
| Structural Brain Correlates of Anxiety During Development. | Durham EL et al. | β | 2025 | β |
| Working memory load-dependent modulation of neural activity predicts response to cognitive behavioral therapy in obsessive-compulsive disorder. | Heinzel S et al. | β | 2025 | β |
| Abnormalities of structural covariance of insular subregions in drug-naΓ―ve OCD patients. | Zhang X et al. | β | 2024 | β |
| A coordinate-based meta-analysis of grey matter volume differences between adults with obsessive-compulsive disorder (OCD) and healthy controls. | Del Casale A et al. | β | 2024 | β |
| Application of Hybrid DeepLearning Architectures for Identification of Individuals with Obsessive Compulsive Disorder Based on EEG Data. | Farhad S et al. | β | 2024 | β |
| A systematic review of structural neuroimaging markers of psychotherapeutic and pharmacological treatment for obsessive-compulsive disorder. | Moreau AL et al. | β | 2024 | β |
| Boosting Psychotherapy With Noninvasive Brain Stimulation: The Whys and Wherefores of Modulating Neural Plasticity to Promote Therapeutic Change. | Saccenti D et al. | β | 2024 | β |
| Cerebellar Microstructural Abnormalities in Obsessive-Compulsive Disorder (OCD): a Systematic Review of Diffusion Tensor Imaging Studies. | Shobeiri P et al. | β | 2024 | β |
| Contributions of network structure, chemoarchitecture and diagnostic categories to transitions between cognitive topographies. | Luppi AI et al. | β | 2024 | β |
| Cortical and Subcortical Brain Alterations in Specific Phobia and Its Animal and Blood-Injection-Injury Subtypes: A Mega-Analysis From the ENIGMA Anxiety Working Group. | Hilbert K et al. | β | 2024 | β |
| Effects of electroconvulsive therapy on cortical thickness in depression: a systematic review. | Toffanin T et al. | β | 2024 | β |
| Genetic and molecular correlates of cortical thickness alterations in adults with obsessive-compulsive disorder: a transcription-neuroimaging association analysis. | Zhang D et al. | β | 2024 | β |
| Large-scale analysis of structural brain asymmetries during neurodevelopment: Associations with age and sex in 4265 children and adolescents. | Kurth F et al. | β | 2024 | β |
| Large-Scale Neuroimaging of Mental Illness. | Ching CRK et al. | β | 2024 | β |
| Local structural and functional MRI markers of compulsive behaviors and obsessive-compulsive disorder diagnosis within striatum-based circuits. | Xu C et al. | β | 2024 | β |
| mFusion: a multiscale fusion method bridging neuroimages to genes through neurotransmissions in mental health disorders. | Cao L et al. | β | 2024 | β |
| Neural correlates of anhedonia in young adults with subthreshold depression: A graph theory approach for cortical-subcortical structural covariance. | Yun JY et al. | β | 2024 | β |
| Neuroimaging epicenters as potential sites of onset of the neuroanatomical pathology in schizophrenia. | Jiang Y et al. | β | 2024 | β |
| Pallidum volume as a predictor for the effectiveness of mindfulness-based cognitive therapy and psycho-education in unmedicated patients with obsessive-compulsive disorder. | Zhang C et al. | β | 2024 | β |
| Regional gray matter changes in steatotic liver disease provide a neurobiological link to depression: A cross-sectional UK Biobank cohort study. | Arold D et al. | β | 2024 | β |
| Resolving heterogeneity in schizophrenia, bipolar I disorder, and attention-deficit/hyperactivity disorder through individualized structural covariance network analysis. | Niu L et al. | β | 2024 | β |
| Resting-state functional connectivity of goal-directed and habitual-learning systems: The efficacy of cognitive-behavioral therapy for obsessive-compulsive disorder. | Chen H et al. | β | 2024 | β |
| Starting the pill during adolescence: Age of onset and duration of use influence morphology of the hippocampus and ventromedial prefrontal cortex. | Brouillard A et al. | β | 2024 | β |
| The association between cortical gyrification and sleep in adolescents and young adults. | Lima Santos JP et al. | β | 2024 | β |
| The Longitudinal Relationship Between Brain Morphology and Obsessive-Compulsive Symptoms in Children From the General Population. | Weeland CJ et al. | β | 2024 | β |
| The NExT trial: Protocol for a two-phase randomized controlled trial testing transcranial magnetic stimulation to augment exposure therapy for youth with OCD. | Conelea C et al. | β | 2024 | β |
| Cerebral chemoarchitecture shares organizational traits with brain structure and function. | HΓ€nisch B et al. | β | 2023 | β |
| Cortical morphology in patients with the deficit and non-deficit syndrome of schizophrenia: a worldwide meta- and mega-analyses. | Banaj N et al. | β | 2023 | β |
| Cortical profiles of numerous psychiatric disorders and normal development share a common pattern. | Cao Z et al. | β | 2023 | β |
| Cytoarchitectonically Defined Volumes of Early Extrastriate Visual Cortex in Unmedicated Adults With Body Dysmorphic Disorder. | Feusner JD et al. | β | 2023 | β |
| Decision-making deficits in obsessive-compulsive disorder are associated with abnormality of recency and response consistency parameter in prospect valence learning model. | Murayama K et al. | β | 2023 | β |
| Dissecting Psychiatric Heterogeneity and Comorbidity with Core Region-Based Machine Learning. | Lv Q et al. | β | 2023 | β |
| Early Identification and Intervention in Pediatric Obsessive-Compulsive Disorder. | Liu X et al. | β | 2023 | β |
| Exploring the multidimensional nature of repetitive and restricted behaviors and interests (RRBI) in autism: neuroanatomical correlates and clinical implications. | Lefebvre A et al. | β | 2023 | β |
| In search of environmental risk factors for obsessive-compulsive disorder: study protocol for the OCDTWIN project. | Mataix-Cols D et al. | β | 2023 | β |
| Integrating multimodal and multiscale connectivity blueprints of the human cerebral cortex in health and disease. | Hansen JY et al. | β | 2023 | β |
| Mapping the neuroanatomical heterogeneity of OCD using a framework integrating normative model and non-negative matrix factorization. | Han S et al. | β | 2023 | β |
| Memantine for Refractory Obsessive-Compulsive Disorder: Protocol for a Pragmatic, Double-blind, Randomized, Parallel-Group, Placebo-Controlled, Monocenter Trial. | Maraone A et al. | β | 2023 | β |
| Pathological Networking of Gray Matter Dendritic Density With Classic Brain Morphometries in OCD. | Zhang X et al. | β | 2023 | β |
| Recalibrating single-study effect sizes using hierarchical Bayesian models. | Cao Z et al. | β | 2023 | β |
| Right Prefrontal Cortical Thickness Is Associated With Response to Cognitive-Behavioral Therapy in Children With Obsessive-Compulsive Disorder. | BertolΓn S et al. | β | 2023 | β |
| Schizophrenia Polygenic Risk During Typical Development Reflects Multiscale Cortical Organization. | Kirschner M et al. | β | 2023 | β |
| The functional connectome in obsessive-compulsive disorder: resting-state mega-analysis and machine learning classification for the ENIGMA-OCD consortium. | Bruin WB et al. | β | 2023 | β |
| White matter abnormalities in paediatric obsessive-compulsive disorder: a systematic review of diffusion tensor imaging studies. | Haghshomar M et al. | β | 2023 | β |
| Aberrant cortico-striatal white matter connectivity and associated subregional microstructure of the striatum in obsessive-compulsive disorder. | Park H et al. | β | 2022 | β |
| Altered Intrinsic Brain Activity in Patients With Toothache Using the Percent Amplitude of a Fluctuation Method: A Resting-State fMRI Study. | Yang J et al. | β | 2022 | β |
| Amygdala subnuclear volumes in temporal lobe epilepsy with hippocampal sclerosis and in non-lesional patients. | Ballerini A et al. | β | 2022 | β |
| Anatomical distance affects functional connectivity at rest in medicine-free obsessive-compulsive disorder. | Lv D et al. | β | 2022 | β |
| An overview of the first 5βyears of the ENIGMA obsessive-compulsive disorder working group: The power of worldwide collaboration. | van den Heuvel OA et al. | β | 2022 | β |
| Associations of medication with subcortical morphology across the lifespan in OCD: Results from the international ENIGMA Consortium. | Ivanov I et al. | β | 2022 | β |
| Changes in Volume of Subregions Within Basal Ganglia in Obsessive-Compulsive Disorder: A Study With Atlas-Based and VBM Methods. | Chen J et al. | β | 2022 | β |
| Common Gray Matter Reductions in Alcohol Use and Obsessive-Compulsive Disorders: A Meta-analysis. | Stevens BW et al. | β | 2022 | β |
| Coordinated cortical thickness alterations across six neurodevelopmental and psychiatric disorders. | Hettwer MD et al. | β | 2022 | β |
| Cortical thickness across the lifespan: Data from 17,075 healthy individuals aged 3-90βyears. | Frangou S et al. | β | 2022 | β |
| Cortical thickness and surface area in patients with obsessive compulsive disorder and their unaffected siblings. | Besiroglu L et al. | β | 2022 | β |
| Distinct clinical manifestations of obsessive-compulsive disorder are associated with cortical thickness alteration. | Shan HD et al. | β | 2022 | β |
| Early intervention in obsessive-compulsive disorder: From theory to practice. | Fontenelle LF et al. | β | 2022 | β |
| Feasibility of FreeSurfer Processing for T1-Weighted Brain Images of 5-Year-Olds: Semiautomated Protocol of FinnBrain Neuroimaging Lab. | Pulli EP et al. | β | 2022 | β |
| Gray Matter Alterations in Pediatric Schizophrenia and Obsessive-Compulsive Disorder: A Systematic Review and Meta-Analysis of Voxel-Based Morphometry Studies. | Liu J et al. | β | 2022 | β |
| Harmonization of multi-scanner <i>in vivo</i> magnetic resonance spectroscopy: ENIGMA consortium task group considerations. | Harris AD et al. | β | 2022 | β |
| Higher brain structural heterogeneity in schizophrenia. | Fang K et al. | β | 2022 | β |
| Increased serum brain-derived neurotrophic factor and adrenocorticotropic hormone levels are associated with obsessive compulsive disorder in medicationβfree children. | BilgiΓ§ A et al. | β | 2022 | β |
| Inhibitory control in obsessive compulsive disorder: A systematic review and activation likelihood estimation meta-analysis of functional magnetic resonance imaging studies. | Funch Uhre V et al. | β | 2022 | β |
| Local molecular and global connectomic contributions to cross-disorder cortical abnormalities. | Hansen JY et al. | β | 2022 | β |
| Mapping brain asymmetry in health and disease through the ENIGMA consortium. | Kong XZ et al. | β | 2022 | β |
| Mapping neurotransmitter systems to the structural and functional organization of the human neocortex. | Hansen JY et al. | β | 2022 | β |
| Molecular and connectomic vulnerability shape cross-disorder cortical abnormalities | Hansen JY et al. | β | 2022 | β |
| Multiscale neural gradients reflect transdiagnostic effects of major psychiatric conditions on cortical morphology. | Park BY et al. | β | 2022 | β |
| [Neurobiology of obsessive-compulsive disorder]. | Endres D et al. | β | 2022 | β |
| Neurocircuit models of obsessive-compulsive disorder: limitations and future directions for research. | Shephard E et al. | β | 2022 | β |
| Obsessive compulsive symptom dimensions are linked to altered white-matter microstructure in a community sample of youth. | Grazioplene RG et al. | β | 2022 | β |
| Preliminary Observations of Resting-State Magnetoencephalography in Nonmedicated Children with Obsessive-Compulsive Disorder. | Tan V et al. | β | 2022 | β |
| Role of deep brain stimulation in management of psychiatric disorders. | Messina G et al. | β | 2022 | β |
| Sex is a defining feature of neuroimaging phenotypes in major brain disorders. | Salminen LE et al. | β | 2022 | β |
| Static and temporal dynamic changes of intrinsic brain activity in pediatric and adults OCD. | Xu Y et al. | β | 2022 | β |
| Symptom-Based Profiling and Multimodal Neuroimaging of a Large Preteenage Population Identifies Distinct Obsessive-Compulsive Disorder-like Subtypes With Neurocognitive Differences. | Wu X et al. | β | 2022 | β |
| The OCI-CV-R: A Revision of the Obsessive-Compulsive Inventory - Child Version. | Abramovitch A et al. | β | 2022 | β |
| The thalamus and its subnuclei-a gateway to obsessive-compulsive disorder. | Weeland CJ et al. | β | 2022 | β |
| The Transdiagnostic Relevance of Self-Other Distinction to Psychiatry Spans Emotional, Cognitive and Motor Domains. | Eddy CM | β | 2022 | β |
| Two distinct subtypes of obsessive compulsive disorder revealed by a framework integrating multimodal neuroimaging information. | Han S et al. | β | 2022 | β |
| Two distinct subtypes of obsessive compulsive disorder revealed by heterogeneity through discriminative analysis. | Han S et al. | β | 2022 | β |
| What we learn about bipolar disorder from large-scale neuroimaging: Findings and future directions from the ENIGMA Bipolar Disorder Working Group. | Ching CRK et al. | β | 2022 | β |
| Antiglutamatergic agents for obsessive-compulsive disorder: Where are we now and what are possible future prospects? | Maraone A et al. | β | 2021 | β |
| Anxiety disorders. | Penninx BW et al. | β | 2021 | β |
| Associations between brain structure and sleep patterns across adolescent development. | Jalbrzikowski M et al. | β | 2021 | β |
| Brain structural abnormalities in obesity: relation to age, genetic risk, and common psychiatric disorders : Evidence through univariate and multivariate mega-analysis including 6420 participants from the ENIGMA MDD working group. | Opel N et al. | β | 2021 | β |
| Cellular and Extracellular White Matter Abnormalities in Obsessive-Compulsive Disorder: A Diffusion Magnetic Resonance Imaging Study. | Maziero MP et al. | β | 2021 | β |
| Common abnormality of gray matter integrity in substance use disorder and obsessive-compulsive disorder: A comparative voxel-based meta-analysis. | Klugah-Brown B et al. | β | 2021 | β |
| Comparison of resting-state spontaneous brain activity between treatment-naive schizophrenia and obsessive-compulsive disorder. | Yu XM et al. | β | 2021 | β |
| Cortical and subcortical brain structure in generalized anxiety disorder: findings from 28 research sites in the ENIGMA-Anxiety Working Group. | Harrewijn A et al. | β | 2021 | β |
| Developmental Considerations in Obsessive Compulsive Disorder: Comparing Pediatric and Adult-Onset Cases. | Geller DA et al. | β | 2021 | β |
| Early onset obsessive-compulsive disorder: the biological and clinical phenotype. | Grassi G et al. | β | 2021 | β |
| Effect of Experimental Manipulation of the Orbitofrontal Cortex on Short-Term Markers of Compulsive Behavior: A Theta Burst Stimulation Study. | Price RB et al. | β | 2021 | β |
| Electroencephalographic Correlates and Predictors of Treatment Outcome in OCD: A Brief Narrative Review. | Zaboski BA et al. | β | 2021 | β |
| Epigenome-wide meta-analysis of blood DNA methylation and its association with subcortical volumes: findings from the ENIGMA Epigenetics Working Group. | Jia T et al. | β | 2021 | β |
| Genetics of obsessive-compulsive disorder. | Mahjani B et al. | β | 2021 | β |
| Genomics of Obsessive-Compulsive Disorder-Toward Personalized Medicine in the Era of Big Data. | Szejko N et al. | β | 2021 | β |
| Homogeneous grey matter patterns in patients with obsessive-compulsive disorder. | Koch K et al. | β | 2021 | β |
| Knowledge and competency standards for specialized cognitive behavior therapy for pediatric obsessive-compulsive disorder. | Piacentini J et al. | β | 2021 | β |
| Microstructural white matter abnormalities in pediatric and adult obsessive-compulsive disorder: A systematic review and meta-analysis. | Li Q et al. | β | 2021 | β |
| Neuroimaging Association Scores: reliability and validity of aggregate measures of brain structural features linked to mental disorders in youth. | Axelrud LK et al. | β | 2021 | β |
| Neuroimaging Findings in Adolescents and Young Adults with Anorexia Nervosa: A Systematic Review. | Kappou K et al. | β | 2021 | β |
| Nucleus Accumbens Stimulation Modulates Inhibitory Control by Right Prefrontal Cortex Activation in Obsessive-Compulsive Disorder. | Lopez-Sosa F et al. | β | 2021 | β |
| Obsessive-Compulsive Symptoms Among Children in the Adolescent Brain and Cognitive Development Study: Clinical, Cognitive, and Brain Connectivity Correlates. | Pagliaccio D et al. | β | 2021 | β |
| On the Development of OCD. | Hauser TU | β | 2021 | β |
| Polygenic risk for obsessive-compulsive disorder (OCD) predicts brain response during working memory task in OCD, unaffected relatives, and healthy controls. | Heinzel S et al. | β | 2021 | β |
| Psychiatric disorders in multiple sclerosis. | Sparaco M et al. | β | 2021 | β |
| Quality control strategies for brain MRI segmentation and parcellation: Practical approaches and recommendations - insights from the Maastricht study. | Monereo-SΓ‘nchez J et al. | β | 2021 | β |
| Shared and unique neural mechanisms underlying pediatric trichotillomania and obsessive compulsive disorder. | Peris TS et al. | β | 2021 | β |
| Smaller volume of posterior thalamic nuclei in patients with obsessive-compulsive disorder. | Jurng J et al. | β | 2021 | β |
| Structural and functional brain alterations revealed by neuroimaging in CNV carriers. | Moreau CA et al. | β | 2021 | β |
| Structural brain imaging studies offer clues about the effects of the shared genetic etiology among neuropsychiatric disorders. | RadonjiΔ NV et al. | β | 2021 | β |
| Structural Imaging in OCD. | Veltman DJ | β | 2021 | β |
| Temporal variability of regional intrinsic neural activity inΒ drug-naΓ―ve patients with obsessive-compulsive disorder. | Liu J et al. | β | 2021 | β |
| Toward a neurocircuit-based taxonomy to guide treatment of obsessive-compulsive disorder. | Shephard E et al. | β | 2021 | β |
| Virtual Histology of Cortical Thickness and Shared Neurobiology in 6 Psychiatric Disorders. | Writing Committee for the Attention-Deficit/Hyperactivity Disorder et al. | β | 2021 | β |
| Visuomotor Activation of Inhibition-Processing in Pediatric Obsessive Compulsive Disorder: A Magnetoencephalography Study. | Nishat E et al. | β | 2021 | β |
| White matter microstructure and its relation to clinical features of obsessive-compulsive disorder: findings from the ENIGMA OCD Working Group. | Piras F et al. | β | 2021 | β |
| Altered network connectivity predicts response to cognitive-behavioral therapy in pediatric obsessive-compulsive disorder. | Cyr M et al. | β | 2020 | β |
| Brain structural covariance networks in obsessive-compulsive disorder: a graph analysis from the ENIGMA Consortium. | Yun JY et al. | β | 2020 | β |
| Cross-Disorder Analysis of Brain Structural Abnormalities in Six Major Psychiatric Disorders: A Secondary Analysis of Mega- and Meta-analytical Findings From the ENIGMA Consortium. | Opel N et al. | β | 2020 | β |
| ENIGMA and global neuroscience: A decade of large-scale studies of the brain in health and disease across more than 40 countries. | Thompson PM et al. | β | 2020 | β |
| Functional Connectivity of the Striatum as a Neural Correlate of Symptom Severity in Patient with Obsessive-Compulsive Disorder. | Park J et al. | β | 2020 | β |
| Gray matter volume abnormalities and clinical correlates in OCD with exclusive washing dimension. | Kodancha PG et al. | β | 2020 | β |
| Hippocampal functional network: The mediating role between obsession and anxiety in adult patients with obsessive-compulsive disorder. | Li K et al. | β | 2020 | β |
| Is it time to change the gold standard of obsessive-compulsive disorder severity assessment? Factor structure of the Yale-Brown Obsessive-Compulsive Scale. | Fatori D et al. | β | 2020 | β |
| Mapping Cortical and Subcortical Asymmetry in Obsessive-Compulsive Disorder: Findings From the ENIGMA Consortium. | Kong XZ et al. | β | 2020 | β |
| Neural bases of the clinical and neurocognitive differences between earlyand late-onset obsessiveβcompulsive disorder | Kim T et al. | β | 2020 | β |
| Neural primacy of the dorsolateral prefrontal cortex in patients with obsessive-compulsive disorder. | Li H et al. | β | 2020 | β |
| Neurocognitive risk markers in pediatric obsessive-compulsive disorder. | Negreiros J et al. | β | 2020 | β |
| Structural and functional MRI of altered brain development in a novel adolescent rat model of quinpirole-induced compulsive checking behavior. | Straathof M et al. | β | 2020 | β |
| Structural neural markers of response to cognitive behavioral therapy in pediatric obsessive-compulsive disorder. | Pagliaccio D et al. | β | 2020 | β |
| Structural neuroimaging biomarkers for obsessive-compulsive disorder in the ENIGMA-OCD consortium: medication matters. | Bruin WB et al. | β | 2020 | β |
| Subcortical Brain Volume, Regional Cortical Thickness, and Cortical Surface Area Across Disorders: Findings From the ENIGMA ADHD, ASD, and OCD Working Groups. | Boedhoe PSW et al. | β | 2020 | β |
| Toward identifying reproducible brain signatures of obsessive-compulsive profiles: rationale and methods for a new global initiative. | Simpson HB et al. | β | 2020 | β |
| White matter disruption in obsessive-compulsive disorder revealed by meta-analysis of tract-based spatial statistics. | Hu X et al. | β | 2020 | β |
| Abnormal functional network of the thalamic subregions in adult patients with obsessive-compulsive disorder. | Li K et al. | β | 2019 | β |
| A Clinical Staging Model for Obsessive-Compulsive Disorder: Is It Ready for Prime Time? | Fontenelle LF et al. | β | 2019 | β |
| Altered Cortico-Striatal Functional Connectivity During Resting State in Obsessive-Compulsive Disorder. | CalzΓ J et al. | β | 2019 | β |
| Altered structural brain asymmetry in autism spectrum disorder in a study of 54 datasets. | Postema MC et al. | β | 2019 | β |
| Associations of cortical thickness, surface area and subcortical volumes with insight in drug-naΓ―ve adults with obsessive-compulsive disorder. | Liu W et al. | β | 2019 | β |
| Brain Imaging of the Cortex in ADHD: A Coordinated Analysis of Large-Scale Clinical and Population-Based Samples. | Hoogman M et al. | β | 2019 | β |
| Caudate volume differences among treatment responders, non-responders and controls in children with obsessive-compulsive disorder. | Vattimo EFQ et al. | β | 2019 | β |
| CIBERSAM: Ten years of collaborative translational research in mental disorders. | Salagre E et al. | β | 2019 | β |
| Duration of untreated illness and response to SRI treatment in Obsessive-Compulsive Disorder. | Albert U et al. | β | 2019 | β |
| Early intervention for obsessive compulsive disorder: An expert consensus statement. | Fineberg NA et al. | β | 2019 | β |
| Error Processing and Inhibitory Control in Obsessive-Compulsive Disorder: A Meta-analysis Using Statistical Parametric Maps. | Norman LJ et al. | β | 2019 | β |
| Investigating duration of illness and duration of untreated illness in obsessive compulsive disorder reveals patients remain at length pharmacologically untreated. | Dell'Osso B et al. | β | 2019 | β |
| Localized Connectivity in Obsessive-Compulsive Disorder: An Investigation Combining Univariate and Multivariate Pattern Analyses. | Hu X et al. | β | 2019 | β |
| Mapping Alterations of the Functional Structure of the Cerebral Cortex in Obsessive-Compulsive Disorder. | Pujol J et al. | β | 2019 | β |
| Neural correlates of symptom provocation in pediatric obsessive-compulsive disorder. | Jaspers-Fayer F et al. | β | 2019 | β |
| Neuroimaging findings in obsessive-compulsive disorder: A narrative review to elucidate neurobiological underpinnings. | Hazari N et al. | β | 2019 | β |
| Obsessive-compulsive disorder. | Stein DJ et al. | β | 2019 | β |
| Obsessive-compulsive disorder and global mental health. | Stein DJ | β | 2019 | β |
| Person-Based Brain Morphometric Similarity is Heritable and Correlates With Biological Features. | Doucet GE et al. | β | 2019 | β |
| Structural Brain Alterations in Youth With Psychosis and Bipolar Spectrum Symptoms. | Jalbrzikowski M et al. | β | 2019 | β |
| Structural neuroimaging correlates of social deficits are similar in autism spectrum disorder and attention-deficit/hyperactivity disorder: analysis from the POND Network. | Baribeau DA et al. | β | 2019 | β |
| An Empirical Comparison of Meta- and Mega-Analysis With Data From the ENIGMA Obsessive-Compulsive Disorder Working Group. | Boedhoe PSW et al. | β | 2018 | β |
| Investigating the Role of Micronutrients in Brain Development and Psychiatric Disorders via Magnetic Resonance Imaging. | Paus T | β | 2018 | β |
| Symptom dimensions in obsessive-compulsive disorder as predictors of neurobiology and treatment response. | Thorsen AL et al. | β | 2018 | β |