2021
Symptom provocation in obsessive–compulsive disorder: A voxel-based meta-analysis and meta-analytic connectivity modeling
Yu J, Zhou P, Yuan S, Wu Y, Wang C, Zhang N, Li CR, Liu N. Symptom provocation in obsessive–compulsive disorder: A voxel-based meta-analysis and meta-analytic connectivity modeling. Journal Of Psychiatric Research 2021, 146: 125-134. PMID: 34971910, DOI: 10.1016/j.jpsychires.2021.12.029.Peer-Reviewed Original ResearchConceptsRight lateral occipital gyrusMiddle occipital gyrusMiddle cingulate cortexLateral occipital gyrusRight caudate bodyMiddle temporal gyrusObsessive-compulsive disorderInferior frontal gyrusSymptom provocationOCD patientsOrbitofrontal cortexCaudate bodyPrimary analysisThalamic-cortical circuit [CSTC] dysfunctionOccipital gyrusPosterior cortical structuresMagnetic resonance imaging studyActivation likelihood estimation algorithmHigher activationRight middle temporal gyrusRight orbitofrontal cortexLeft orbitofrontal cortexResonance imaging studyFunctional magnetic resonance imaging studyDorsal striatal activation
2020
Cortical Thickness in Alcohol Dependent Patients With Apathy
Yang K, Yang Q, Niu Y, Fan F, Chen S, Luo X, Tan S, Wang Z, Tong J, Yang F, Le TM, Li CR, Tan Y. Cortical Thickness in Alcohol Dependent Patients With Apathy. Frontiers In Psychiatry 2020, 11: 364. PMID: 32431630, PMCID: PMC7214693, DOI: 10.3389/fpsyt.2020.00364.Peer-Reviewed Original ResearchInferior parietal cortexHealthy controlsCortical thicknessSuperior parietal cortexOccipito-temporal cortexParietal cortexOccipital gyrusBilateral superior parietal cortexCritical clinical featuresStructural brain changesEducation-matched healthy controlsSeverity of apathyRight superior occipital gyrusAlcohol-dependent patientsBilateral lingual gyrusLeft middle occipital gyrusSuperior occipital gyrusMiddle occipital gyrusBilateral inferior parietal cortexOccipital-temporal cortexClinical featuresDependent patientsRight intraparietal sulcusMagnetic resonance imaging dataBrain changes
2019
Imaging the effects of age on proactive control in healthy adults
Hu S, Job M, Jenks SK, Chao HH, Li CR. Imaging the effects of age on proactive control in healthy adults. Brain Imaging And Behavior 2019, 13: 1526-1537. PMID: 31011949, PMCID: PMC6812594, DOI: 10.1007/s11682-019-00103-w.Peer-Reviewed Original ResearchConceptsInferior occipital gyrusStop-signal reaction timePrefrontal cortexProactive controlProactive inhibitionOlder adultsReactive inhibitionSuperior parietal lobuleSequential effectsEffect of ageSignal reaction timeCaudate headDistinct neural processesParacentral lobuleTrial reaction timeVentromedial prefrontal cortexLateral prefrontal cortexHealthy adultsNeural changesNeural plasticityOccipital gyrusParietal lobuleReaction timeYoung adultsBelief Model
2016
The Effects of Methylphenidate on Resting-State Functional Connectivity of the Basal Nucleus of Meynert, Locus Coeruleus, and Ventral Tegmental Area in Healthy Adults
Kline RL, Zhang S, Farr OM, Hu S, Zaborszky L, Samanez-Larkin GR, Li CS. The Effects of Methylphenidate on Resting-State Functional Connectivity of the Basal Nucleus of Meynert, Locus Coeruleus, and Ventral Tegmental Area in Healthy Adults. Frontiers In Human Neuroscience 2016, 10: 149. PMID: 27148006, PMCID: PMC4834346, DOI: 10.3389/fnhum.2016.00149.Peer-Reviewed Original ResearchResting-state functional connectivityEffects of methylphenidateAttention deficit hyperactivity disorderLocus coeruleusPositive connectivityNegative connectivityFunctional connectivityBrain resting-state functional connectivityHealthy adultsDeficit hyperactivity disorderBasal nucleusDose of methylphenidateMiddle occipital gyrusSeed regionVTA/SNcVentral tegmental area/substantia nigraCognitive controlVentral tegmental areaHyperactivity disorderOccipital gyrusT-testCatecholaminergic signalingTwo-sample t-testMethylphenidatePrecentral gyrus