
- 姓 名:
- 王征
- 職 稱:
- 研究員 博導(dǎo)
- 研究領(lǐng)域:
- 認(rèn)知神經(jīng)科學(xué) 社會(huì)決策 心理與精神健康 腦成像 神經(jīng)調(diào)控 動(dòng)物行為與認(rèn)知
- 通信地址:
- 北京大學(xué)呂志和樓336房間
- 電子郵件:
- [email protected]
王征博士現(xiàn)任北京大學(xué)心理與認(rèn)知科學(xué)學(xué)院,麥戈文腦科學(xué)研究所、北大-清華生命科學(xué)聯(lián)合中心研究員。1998 年本科畢業(yè)于大連理工大學(xué),2003年在華中科技大學(xué)獲碩士學(xué)位,2008年在加拿大西安大略大學(xué)獲博士學(xué)位,2009-2011年在美國范德堡大學(xué)心理學(xué)系開展博士后研究,2011-2021年在中國科學(xué)院腦科學(xué)與智能技術(shù)卓越創(chuàng)新中心歷任研究員、資深研究員,兼任腦影像平臺(tái)主管。主要研究領(lǐng)域?yàn)榇殴舱癯上窈蜕窠?jīng)調(diào)控系統(tǒng)在腦科學(xué)與腦疾病中的應(yīng)用。先后主持或承擔(dān)了中科院3.0T和9.4T磁共振成像系統(tǒng)、中科院先導(dǎo)科技專項(xiàng)、科技部重點(diǎn)研發(fā)計(jì)劃、基金委國家重大科研儀器設(shè)備研制、原創(chuàng)探索專項(xiàng)、上海市科技重大專項(xiàng)、廣東省重點(diǎn)領(lǐng)域研發(fā)計(jì)劃、美國國立衛(wèi)生研究院R01等相關(guān)科研任務(wù)。近年來在Science等國際知名學(xué)術(shù)期刊上發(fā)表學(xué)術(shù)論文60余篇,是國際醫(yī)學(xué)磁共振協(xié)會(huì)、國際神經(jīng)科學(xué)學(xué)會(huì)、美國生物精神病學(xué)學(xué)會(huì)的長期會(huì)員,擔(dān)任多個(gè)國際學(xué)術(shù)期刊(Neuroscience Bulletin等)編委和審稿人,以及中國科學(xué)院、發(fā)改委、財(cái)政部、科技部、教育部、工信部、基金委、英國醫(yī)學(xué)研究理事會(huì)(MRC)等多個(gè)國家部委機(jī)構(gòu)的評(píng)審專家。
王征實(shí)驗(yàn)室重點(diǎn)關(guān)注融合磁共振影像學(xué)、認(rèn)知決策計(jì)算、行為學(xué)、轉(zhuǎn)錄組學(xué)及神經(jīng)調(diào)控技術(shù),探索精神疾病的量化診斷與個(gè)體化干預(yù)。研究特色在于構(gòu)建非人靈長類疾病模型,解析臨床情感認(rèn)知障礙類疾病的環(huán)路機(jī)制,研創(chuàng)神經(jīng)調(diào)控新技術(shù)開展認(rèn)知干預(yù)治療,開辟靈長類動(dòng)物模型向臨床轉(zhuǎn)化應(yīng)用的新途徑,推進(jìn)精神疾病的客觀診療。相關(guān)研究成果以資深或通訊作者身份發(fā)表在Science(2017)、Neuron(2013且同期配發(fā)專文點(diǎn)評(píng)、2018、2020、2022)、Nat Commun(2023)、Cell Discovery(2021)、Cell Reports(2023)、Am J Psychiatry(2021且同期配發(fā)專文點(diǎn)評(píng))、Mol Psychiatry(2022)、J Neurol Neurosurgery Psychiatry (2021)、Biol Psychiatry (2016、2018,兩次同期配發(fā)專文點(diǎn)評(píng))、eLife(2022)、J Neurosci (2016、2020)、Cereb Cortex (2018、2021)、EBioMedicine(2017、2022)、IEEE TMI(2015)等國際主流學(xué)術(shù)期刊上。
目前聚焦的研究方向包括:
開展超高場(chǎng)靈長類磁共振成像與轉(zhuǎn)錄組學(xué)大數(shù)據(jù)研究,挖掘腦聯(lián)接圖譜的生物學(xué)基礎(chǔ);
重點(diǎn)解析強(qiáng)迫癥、物質(zhì)成癮等情感認(rèn)知障礙類疾病的環(huán)路機(jī)制,建立影像學(xué)指標(biāo)評(píng)估優(yōu)化認(rèn)知行為、藥物以及深部腦刺激等治療方案的臨床療效;
利用基因編輯等多種技術(shù)手段建立靈長類動(dòng)物疾病模型,同時(shí)并行開展臨床研究(包括轉(zhuǎn)錄組學(xué)、行為學(xué)、影像學(xué)和神經(jīng)調(diào)控干預(yù)),探索模式動(dòng)物-人類臨床試驗(yàn)相互的轉(zhuǎn)化路徑,發(fā)展跨物種智能算法輔助的精準(zhǔn)診斷和治療。
Mapping brain connectomics in nonhuman primates offers a cutting-edge path to advance our understanding of neural networks, especially as we aim to translate these insights into human brain health applications. By integrating multi-modal approaches—such as MRI/PET imaging, genetic and transcriptomic profiling, behavioral analysis, and computational modeling—this line of our research has the potential to unveil intricate connections and functions within the brain that correlate with behavior, genetic traits, and disease vulnerabilities:
Zhang Z1, Huang YC1, Chen XY, Li JH, Yang Y, Lv LB, Wang JH, Wang MY*, Wang YW*, Wang Z*, State-specific regulation of electrical stimulation in the intralaminar thalamus of macaque monkeys: network and transcriptional insights into arousal, Advanced Science, 2024, 11(33): e2402718.
Wang W1, Bo TT1, Zhang G1, Li J, Ma JJ, Ma LX, Hu GL, Tong HG, Lv Q, Daniel JA, Luo D, Chen YJ, Wang MY, Wang Z*, Wang G.-Z.*, Noncoding transcripts are linked to brain resting-state activity in non-human primates, Cell Reports, 2023, 42: 112652.
Bo TT1, Li J1, Hu GL, Zhang G, Wang W, Lv Q, Zhao SL, Qin M, Yao XH, Wang MY*, Wang GZ*, Wang Z*., Brain-wide and cell-specific transcriptomic insights into MRI-derived cortical morphology in macaque monkeys, Nature Communications, 2023, 14:1499.
Yan MC1, Yu WW1, Lv Q, Lv QM, Bo TT, Chen XY, Liu YL, Zhan YF, Yan SY, Shen XY, Yang BF, Hu QM, Yu JL, Qiu ZL, Feng YJ, Zhang XY, Wang H, Xu FQ, Wang Z*, Mapping brain-wide excitatory projectome of primate prefrontal cortex at submicron resolution and comparison with diffusion tractography, eLife, 2022, 11: e72534.
The PRIMatE Data and Resource Exchange (PRIME-DRE) Global Collaboration Workshop and Consortium, Toward next-generation primate neuroscience: a collaboration-based strategic plan for integrative neuroimaging, Neuron, 2022, 110: 1-5.
Zhan YF1, Wei JZ1, Liang J, Xu X, He R*, Robbins TW, Wang Z.*, Diagnostic classification for human autism and obsessive-compulsive disorder based on machine learning from a primate genetic model, American Journal of Psychiatry, 2021, 178(1): 65-76. [Commentary by van den Heuvel OA, Can transgenic monkeys help us innovate transdiagnostic therapies? American Journal of Psychiatry, 2021, 178(1): 8-10. Kalin NH, Genes, cells, and neural circuits relevant to OCD and autism spectrum disorder, American Journal of Psychiatry, 2021, 178(1): 1-4]
Qin DD1, Zhou JK1, He XC1, Shen XY1, Li C, Chen HZ, Yan LZ, Hu ZF, Li X, Lv LB, Yao YG*, Wang Z.*, Huang XX*, Hu XT*, Zheng P*, Depletion of giant ANK2 in monkeys causes drastic brain volume loss, Cell Discovery, 2021, 7(1):113.
Lv QM, Yan MC, Shen XY, Wu J, Yu WW, Yan SY, Yang F, Zeljic K, Shi YQ, Zhou ZF, Lv LB, Hu XT, Menon R, Wang Z.*, Normative analysis of individual brain differences based on a population MRI-based atlas of cynomolgus macaques, Cerebral Cortex, 2021, 31(1): 341-355.
Wang XD, Li XH, Cho JW, Russ B, Rajamani N, Omelchenko A, Ai L, Korchmaros A, Sawiak S, Benn A.R., Garcia-Saldivar P, Wang Z, Kalin NH, Schroeder CE, Craddock RC, Fox AS, Evans AC, Messinger A, Milham MP, Xu T*, U-Net model for brain extraction: trained on humans for transfer to non-human primates, NeuroImage, 2021, 235:118001.
Cai DC1, Wang ZW1, Bo TT1, Yan SY1, Liu YL, Liu ZW, Zeljic K, Chen XY, Zhan YF, Xu X, Du YS, Wang YW, Cang J, Wang GZ, Zhang J, Sun Q, Qiu ZL, Ge SJ*, Ye Z, Wang Z.*, MECP2 duplication causes aberrant GABA pathways, circuits and behaviors in transgenic monkeys: neural mappings to patients with autism, Journal of Neuroscience, 2020, 40(19): 3799-3814.
The PRIMatE Data Exchange (PRIME-DE) Global Collaboration Workshop and Consortium, Accelerating the evolution of nonhuman primate neuroimaging, Neuron, 2020, 105: 600-602
Pu R, Wu Z, Yu WW, He HJ*, Zhou ZF, Wang Z*, Zhong JH, Association of myelination in the internal capsule with iron deposition in the basal ganglia in macaques: a magnetic resonance imaging study, Quantitative Imaging in Medicine and Surgery, 2020, 10(7):1526-1539.
Zhang Z1, Cai DC1, Wang ZW, Zeljic K, Wang Z*, Wang YW*, Isoflurane-induced burst suppression increases intrinsic functional connectivity of the monkey brain, Frontiers in Neuroscience, 2019, 13: 296. doi: 10.3389/fnins.2019.00296.
Cui Y, Li X, Zeljic K, Shan S, Qiu Z*, Wang Z*, Effect of PEGylated magnetic PLGA-PEI nanoparticles on primary hippocampal neurons: reduced nano-neurotoxicity and enhanced transfection efficiency with magnetofection, ACS Applied Materials & Interfaces, 2019, 11(41): 38190-38204.
Milham MP, Ai L, Koo B, Xu T, Amiez C, Balezeau F, Baxter MG, Blezer ELA, Brochier T, Chen AH, Croxson PL, Damatac CG, Dehaene S, Everling S, Fair D, Fleysher L, Freiwald W, Froudist-Walsh S, Griffiths TD, Guedj C, Hadj-Bouziane F, Hamed SB, Harel N, Hiba B, Jarraya B, Jung B, Kastner S, Klink PC, Kwok SC, Laland K.N., Leopold DA, Lindenfors P, Mars RB, Menon RS, Messinger A, Meunier M, Mok K, Morrison JH, Nacef J, Nagy J, Rios MO, Petkov CI, Pinsk M, Poirier C, Procyk E, Rajimehr R, Reader SM, Roelfsema PR, Rudko D, Rushworth MFS, Russ B, Sallet J, Schmid M, Schwiedrzik CM, Seidlitz J, Sein J, Shmuel A, Sullivan EL, Ungerleider L, Thiele A, Todorov OS, Tsao D, Wang Z, Wilson CRE, Yacoub E, Ye F, Zarco W, Zhou YD, Margulies DS, Schroeder C, An open resource for nonhuman primate imaging, Neuron, 2018, 100:1-14.
Zhou TT1, Zhu H1, Fan ZX, Wang F, Chen Y, Liang HX, Yang ZF, Zhang L, Lin LN, Zhan Y, Wang Z, Hu H*, History of winning remodels thalamo-PFC circuit to reinforce social dominance, Science, 2017, 357: 162-168.
Lv Q1, Yang LQ1, Li GL, Wang ZW, Shen ZM, Yu WW, Jiang QY, Hou BY, Pu J, Hu H*, Wang Z.*, Large-scale persistent network reconfiguration induced by ketamine in anesthetized macaques: relevance to mood disorders, Biological Psychiatry, 2016, 79: 765-775. [Commentary by Arnsten AF, Murray JD, Seo H, and Lee D. Ketamine’s antidepressant actions: potential mechanisms in the primate medial prefrontal circuits that represent aversive experience, Biological Psychiatry, 2016, 79: 713-715]
Wang Z1., Chen LM1, Negyessy L1, Friedman RM, Mishra A, Gore JC*, Roe AW*, The relationship of anatomical and functional connectivity to resting state connectivity in primate somatosensory cortex, Neuron, 2013, 78:1116-1126. [Previews by Olaf Sporns and Christopher J Honey, “Topographic dynamics in the resting brain”, 78, 955-956]
Wang Z., Qi H-X, Kaas JH, Roe AW, Chen LM, Functional signature of recovering cortex: dissociation of local field potentials and spiking activity in somatosensory cortices of spinal cord injured monkeys, Experimental Neurology, 2013, 249:132-143.
Our research on human brain disorders began through a collaboration with clinical doctors in China, focusing on the therapeutic mechanisms of various neuroimaging and neuromodulation techniques, including deep brain stimulation. We aim to uncover the underlying effects of these techniques on patients and establish theoretical guidelines to improve treatment efficacy for individuals. Analyzing MRI data poses a unique challenge, prompting the development of new AI-derived computational models and algorithms to extract rich information on brain structure and function across diverse conditions.
Zhao SL1, Lv Q1, Zhang G, Zhang JT, Wang HQ, Zhang JM, Wang MY*, Wang Z*, Quantitative expression of latent disease factors in individuals associated with psychopathology dimensions and treatment response, Neuroscience Bulletin, 2024, advance online.
Yao JY, Li ZH, Zhou ZH, Bao AM, Wang Z*, Wei HJ*, He HJ*, Distinct regional vulnerability to Aβ and iron accumulation in postmortem AD brains, Alzheimer's & Dementia, 2024, 20(10): 6984-6997.
Liang H, Luo HR, Sang ZL, Jia M, Jiang XH, Wang Z, Cong S*, Yao XH*, GREMI: an explainable multi-omics integration framework for enhanced disease prediction and module identification, IEEE Journal of Biomedical and Health Informatics, 2024, 28(11): 6983-6996.
Cong S, Wang H, Zhou Y, Wang Z, Yao XH*, Yang CS*, Comprehensive review of Transformer-based models in neuroscience, neurology and psychiatry, Brain-X, 2024, 2: e57-e89.
Lv Q*, Zeljic K, Zhao SL, Zhang JT, Zhang JM, Wang Z*, Dissecting psychiatric heterogeneity and comorbidity with core region-based machine learning, Neuroscience Bulletin, 2023, 39(8):1309-1326.
Lv Q1, Zhang M1, Jiang HF1, Liu YL, Zhao SL, Xu XM, Zhang WL, Chen TZ, Su H, Zhang JT, Wang HQ, Zhang JM, Feng YJ, Li YQ, Li B*, Zhao M*, Wang Z*, Metabolic and functional substrates of impulsive decision bias in abstinent heroin addicts after prolonged methadone maintenance treatment, NeuroImage, 2023, 283:120421.
Liu CC, Li KS, Zheng XX, Fu MN, Zhang YY, Sindermann C, Montag C, Wang Z, Zhou B, Kendrick K, Becker B, A central serotonin regulating gene polymorphism (TPH2) determines vulnerability to acute tryptophan depletion-induced anxiety and ventromedial prefrontal threat reactivity in healthy young men, European Neuropsychopharmacology, 2023, 77: 24-34.
Chen XY1, Wang Z1, Lv Q, Lv QM, van Wingen G, Fridgeirsson EA, Denys D, Voon V, Wang Z*, Common and differential connectivity profiles of deep brain stimulation and capsulotomy in refractory obsessive-compulsive disorder, Molecular Psychiatry, 2022, 27(2):1020-1030.
Li G, Huang P*, Cui SS, Tan YY, He YC, Shen X, Jiang QY, Huang P, He GY, Li BY, Li YX, Xu J, Wang Z*, Chen SD*, Mechanisms of motor symptom improvement by long-term Tai Chi training in Parkinson’s disease patients, Translational Neurodegeneration, 2022, 11: 6-16.
Zhang M1, Qin QK1, Zhang SN, Liu W, Meng HP, Xu MY, Huang XY, Lin XZ, Lin M, Herman P, Hyder F, Stevens RC, Wang Z, Li B*, Thompson GJ*, Aerobic glycolysis imaging of epileptic foci during the inter-ictal period, eBioMedicine, 2022, 79:104004.
Feng L1, Yin DZ1, Wang XB, Xu YF, Xiang YS, Teng F, Pan YG, Zhang XL, Su JH, Wang Z*, Jin LJ*, Brain connectivity abnormalities and treatment-induced restorations in patients with cervical dystonia, European Journal of Neurology, 2021, 28(5):1537-1547.
Hong J1, Bo TT1, Xi LQ1, Xu XQ1, He NY1, Zhan YF, Li WY, Liang PW, Chen YF, Shi J, Yan FH, Gu WQ, Wang WQ, Liu RX, Wang JQ*, Wang Z*, Ning G, Reversal of functional brain connectivity associated with gut microbiome and gastrointestinal hormones after vertical sleeve gastrectomy in obese patients, Journal of Clinical Endocrinology & Metabolism, 2021, 106(9): e3619-e3633.
Zhang CC1, Kim S-G1, Li J, Zhang YY, Lv QM, Zeljic K, Gong HF, Zhan SK, Lin GZ, Sun BM*, Wang Z*, Voon V*., Anterior limb of the internal capsule tractography: relationship with capsulotomy outcomes in obsessive-compulsive disorder, Journal of Neurology, Neurosurgery and Psychiatry, 2021, 92(6):637-644.
Lv Q1, Lv QM1, Yin DZ, Zhang CC, Sun BM, Voon V*, Wang Z*, Neuroanatomical substrates and predictors of response to capsulotomy in intractable obsessive-compulsive disorder, Biological Psychiatry: Cognitive Neuroscience and Neuroimaging, 2021, 28(5):1537-1547.
Zeljic K1, Xiang Q1, Wang ZW, Pan YY, Shi YQ, Zhou ZF, Wang Z*, Liu DT*, Heightened perception of illusory motion is associated with symptom severity in Schizophrenia patients, Progress in Neuropsychopharmacology & Biological Psychiatry, 2021, 104:110055.
Su H1, Liu YL1, Yin DZ, Chen TZ, Li XT, Zhong N, Jiang HF, Wang JJ, Du J, Xiao K, Xu D, Zeljic K, Wang Z*, Zhao M*, Neuroplastic changes in resting-state functional connectivity after rTMS intervention for methamphetamine craving, Neuropharmacology, 2020, 175: 108177
Su H1, Chen TZ1, Zhong N, Jiang HF, Du J, Xiao K, Xu D, Wang Z, Zhao M*, GABA and Glutamate/glutamine alterations of the left prefrontal cortex in individuals with methamphetamine use disorder: a combined TMS-MRS study, Annals of Translational Medicine, 2020, 8(6): 347-356.
Li HF1, Yang LQ1, Yin DZ1, Chen WJ, Liu GL, Ni W, Wang N, Yu WW, Wu ZY*, Wang Z.*, Associations between neuroanatomical abnormalities and motor symptoms in paroxysmal kinesigenic dyskinesia, Parkinsonism & Related Disorders, 2019, 62:134-140.
Yin DZ, Chen XY, Zeljic K, Zhan YF, Shen XY, Yan G, Wang Z.*, Topological architecture of functional diversity of brain regions and its association with human intelligence, Brain and Behavior, 2019,9:e01358.
Yin DZ, Zhang Z, Wang ZW, Zeljic K, Lv Q, Cai DC, Wang YW, Wang Z.*, Brain map of intrinsic functional flexibility in anesthetized monkeys and awake humans, Frontiers in Neuroscience, 2019, 13:174. doi: 10.3389/fnins.2019.00174.
Wang ZW, Zeljic K, Jiang QY, Gu Y, Wang W, Wang Z*, Dynamic network communication in the human functional connectome predicts perceptual variability in visual illusion, Cerebral Cortex, 2018, 28(1):48-62.
Yin DZ1, Zhang CC1, Lv QM, Chen XY, Zeljic K, Gong HF, Jin HY, Wang Z.*, Sun BM*, Dissociable frontostriatal pathways: mechanism and predictor of the clinical efficacy of capsulotomy in obsessive-compulsive disorder, Biological Psychiatry, 2018, 84(12): 926-936. [Commentary by Hoexter MQ, Are we ready for individualized target planning of ablative procedures in intractable obsessive-compulsive disorder? Biological Psychiatry, 2018, 84(12): e85-e87]
Chen XY1, Zhang CC1, Li YX1, Lv Q, Zeljic K, Huang P, Jin HY, Chen SD, Sun BM*, Wang Z.*, Functional connectivity-based modelling simulates subject-specific network effects of focal brain stimulation, Neuroscience Bulletin, 2018, 34(6):921-938.
Yin DZ1, Liu WJ1, Wang ZW, Zeljic K, Bo TT, Lv Q, You MN, Men WW, Fan MX, Cheng WH*, Wang Z*., Failure in cognitive suppression of negative affect in adolescents with generalized anxiety disorder, Scientific Reports, 2017, 7:6583, doi:10.1038/s41598-017-07063-5.
Lv QM1, Wang Z1, Zhang CC1, Fan Q, Zeljic K, Sun BM, Xiao ZP*, Wang Z.*, Divergent structural responses to pharmacological interventions in orbitofronto-striato-thalamic and premotor circuits in obsessive-compulsive disorder, eBioMedicine, 2017, 22:242-248.
Pan YX1, Wang LJ1, Wang ZW1, Xu C, Yu WW, Spillmann L, Gu Y*, Wang Z.*, Wang W*. Representations of illusory and real rotations in human MST– a cortical site for the Pinna illusion, Human Brain Mapping, 2016, 37: 2097-2113.
Yin DZ, Liu WJ, Zeljic K, Wang ZW, Lv Q, Fan MX, Cheng WH*, Wang Z*, Dissociable changes of frontal and parietal cortices in inherent functional flexibility across the human lifespan, Journal of Neuroscience, 2016, 36(39):10060-10074.
Pu J, Wang J, Yu WW, Shen ZM, Lv Q, Zeljic K, Zhang CC, Sun BM, Liu GX, Wang Z.*. Discriminative structured feature engineering for macroscale brain connectomes, IEEE Trans Med Imaging, 2015, 34(11):2333-2342.