• 王骄健(Jiaojian Wang)

    教授,博士生导师

    灵长类磁共振研究中心

    一、教育与工作经历 Education and working experiences

    • 教育经历
    • 2009.09 – 2014.12 电子科技大学,生物医学工程,博士(硕博连读)
    • 2005.09 – 2009.06 四川农业大学,农业电气化与自动化,学士

     

    • 工作经历
    • 2022.03 – 至今 昆明理工大学,灵长类转化医学研究院,教授
    • 2019.08 – 2022.02 电子科技大学,生命科学与技术学院,副教授
    • 2015.03 – 2019.07 电子科技大学,生命科学与技术学院,讲师
    • 2017.07 – 2018.08 宾夕法尼亚大学,Perelman医学院,博士后

    二、主要研究方向 Research Interests

    课题组长期专注于利用磁共振成像技术解析正常大脑认知功能机理解析以及脑功能异常神经机制及治疗开发。主要研究方向包括以下几个方面:

    1、灵长类脑连接图谱绘制;
    2、灵长类脑连接组进化、发育、老化;
    3、灵长类脑疾病神经表征及治疗开发。

    三、承担科研项目情况 Fundings

    1、国家自然科学基金面上项目“基于抑郁环路精细脑图谱研究抑郁症电休克治疗神经机制和个体化预测”,2022-2025,主持

    2、四川省科技厅面上项目“抑郁症电休克治疗神经影像学表征及个体化治疗预测”,2021-2023,主持

    3、科技创新2030-“脑科学与类脑研究”子课题:基于脑疾病模型猴的治疗干预手段的研发,2022-2026,主持

    4、云南省科技厅-昆明理工大学双一流联合重点项目:个体化脑图谱指导电磁联合刺激治疗抑郁症研究,2022-2025,主持

    四、获奖情况 Awards

    2018中国图形图象学会自然科学二等奖;

    2020中国人工智能学会2020年度优秀科技成果奖。

    五、授权发明专利 Patents

    王骄健,肖雅琼,谭力海;个体化结构脑网络构建方法、系统、电子设备,及存储介质;CN 202110788813.1;2021。

    王骄健,谭力海;个体化脑功能图谱构建方法及系统;CN 202010269528.4;2020.

    六、代表性论文 Publications

    课题组长期专注于利用磁共振成像技术开展脑连接脑图谱、脑连接组、神经调控治疗以及动物转化疾病的脑机制研究。目前发表SCI国际论文80多篇,以第一作者或通讯作者在NeuroImage, Cerebral Cortex,Psychological Medicine等国际学术期刊发表研究论文50余篇,文章被引用4700余次,ESI 1%高被引论文7篇,代表性论文如下(CA: corresponding author):

    1.    YuYin, Fuqin Wang, Yingzi Ma, Jia Yang, Rui Li, Yuanyuan Li, Jiaojian Wang* (CA),Heng Liu*, (2022). Structural and functional changes in drug-naïve benign childhood epilepsy with centrotemporal spikes and their associated gene expression profiles, Cerebral Cortex,bhac458. doi: 10.1093/cercor/bhac458.

    2.    BochaoCheng, Yi Guo , Xijian Chen, Bin Lv, Yi Liao, Haibo Qu, Xiao Hu, Haoxiang Yang, Yajing Meng, Wei Deng, Jiaojian Wang*(CA), (2022).Postpartum depression and major depressive disorder: the same or not? Evidence from resting-state functional MRI, Psychoradiology,2, 121–128.

    3.    YuanyuanLi, Xiaohui Yu, Yingzi Ma, Jing Su, Yue Li, Shunli Zhu, Tongjian Bai, Qiang Wei, Benjamin Becker, Zhiyong Ding, Kai Wang, Yanghua Tian*, Jiaojian Wang* (CA), (2022). Neural signaturesof default mode network in major depression disorder after electroconvulsive therapy, Cerebral Cortex,bhac311, https://doi.org/10.1093/cercor/bhac311.

    4.    JiangZhang, Tianyu Zhao, Jingyue Zhang, Zhiwei Zhang, Hongming Li, Bochao Cheng, Yajing Pang*, Huawang Wu*, JiaojianWang* (CA),(2022). Prediction of childhood maltreatment and subtypes with personalized functional connectome of large-scale brain networks, Human Brain Mapping, 43(15), 4710– 4721.

    5.    JingjingGao, Mingren Chen, Die Xiao, Yue Li, Shunli Zhu, Yanling Li, Xin Dai, Fengmei Lu, Zhengning Wang, Shimin Cai*, JiaojianWang* (CA),(2022). Classification of major depressive disorder using an attention-guided unified deep convolutional neural network and individual structural covariance network, Cerebral Cortex,bhac217, https://doi.org/10.1093/cercor/bhac217.

    6.    Jinping Xu, Wenfei Li, Tongjian Bai, Jiaying Li, Jinhuan Zhang, Qingmao Hu, Jiaojian Wang* (CA),Yanghua Tian*, Kai Wang, (2022). Volume ofhippocampus-amygdala transition area predicts outcomes of electroconvulsive therapy in major depressive disorder: high accuracy validated in two independent cohorts, Psychological Medicine, 23:1-10.

    7.    Yuanyuan Li, Yue Li, Qiang Wei, Tongjian Bai, Kai Wang,  Jiaojian Wang* (CA), Yanghua Tian*(2022). Mapping intrinsic functional network topological architecture in major depression disorder after electroconvulsive therapy, Journal of Affective Disorders,311, 103-109.

    8.    BochaoCheng, Xiuli Wang, Neil Roberts, Yushan Zhou, Song Wang, Pengcheng Deng, Yajing Meng, Wei Deng, Jiaojian Wang* (CA), (2022). Abnormal dynamicsof resting-state functional activity and couplings in postpartum depression with and without anxiety, CerebralCortex, 32(24):5597-5608. (ESI 1%高被引论文)

    9.    Yajing Pang, Shanshan Zhao, Zhihui Li, Nan Li, Jiarui Yu, Rui Zhang, Fengmei Lu, Heng Chen, Fengchun Wu, Wei Zheng, Jingjing Gao, Yongfeng Yang*, Huawang Wu*, Jiaojian Wang* (CA), (2022).Enduring effect of abuse: Childhood maltreatment links to altered theory of mind network among adults. Human Brain Mapping,43(7):2276-2288.

    10. Bochao Cheng, Neil Roberts, Yushan Zhou, Xiuli Wang, Yuanyuan Li, Yiming Chen, Yajun Zhao, Pengcheng Deng, Yajing Meng, Wei Deng & Jiaojian Wang* (CA), (2022). Socialsupport mediates the influence of cerebellum functional connectivity strength on postpartum depression and postpartum depression with anxiety. TranslationalPsychiatry, 12(1):54. 

    11. YajingPang, Qiang Wei, Shanshan Zhao, Nan Li, Zhihui Li, Fengmei Lu, Jianyue, Pang, Rui Zhang, Kai Wang, Congying Chu*, Yanghua Tian*, Jiaojian Wang* (CA).(2022). Enhanced default mode network functional connectivity links with electroconvulsive therapy response in major depressive disorder. Journalof Affective Disorders, 306, 47-54.

    12. BochaoCheng, Yushan Zhou, Veronica P Y Kwok, Yuanyuan Li, Song Wang, Yajun Zhao, Yajing Meng, Wei Deng, Jiaojian Wang*(CA), (2022).Altered functional connectivity density and couplings in postpartum depression with and without anxiety. SocialCognitive and Affective Neuroscience, 17(8):756-766.

    13. ChunyanLiu, Tao Han, Zhexue Xu, Jianghong Liu, Mo Zhang, Jialin Du, Qilin Zhou, Yiran Duan, Yuanyuan Li, Jiaojian Wang* (CA), Dehua Cui*, Yuping Wang*,(2022). Modulating Gamma Oscillations Promotes Brain Connectivity to Improve Cognitive Impairment, CerebralCortex, 32(12), 2644-2656.

    14. JiaojiangWang, ZhengboWang, HongjiangZhang, Shufei Feng,Yi Lu, Shuang Wang, Hong Wang, Yi Eve Sun, Yongchang Chen*, (2021). White Matter Structural andNetwork Topological Changes Underlying the Behavioral Phenotype of MECP2 Mutant Monkeys. Cerebral Cortex, 31(12):5396-5410.

    15. Jiang Zhang, Dundi Xu, Hongjie Cui, Tianyu Zhao, Congying Chu, Jiaojian Wang* (CA),(2021). Group-guided individual functional parcellation of the hippocampus and application to normal aging. Human Brain Mapping, 42(18), 5973– 5984.

    16. JiangZhang, Hongjie Cui, Huadong Yang, Yuanyuan Li, Dundi Xu, Tianyu Zhao, Huawang Wu, Zhengcong Du, Wei Huang, Chong Wang, Ai Chen*, Jiaojian Wang* (CA),(2021). Dynamic changes of large-scale resting-state functional networks in major depressive disorder. Progress in Neuro-Psychopharmacology andBiological Psychiatry 111, 110369.

    17. JiaojianWang, Yang Yang, Xudong Zhao, Zhentao Zuo*, Li-Hai Tan*. (2020). Evolutional anddevelopmental anatomical architecture of the left inferior frontal gyrus. NeuroImage222, 117268.

    18. Jiaojian Wang, Yang Ji, Xuemei Li, Zhengyu He, QiangWei, Tongjian Bai*, Yanghua Tian*, Kai Wang.(2020). Improved and residual functional abnormalities in major depressive disorder after electroconvulsive
    therapy.
    Progress in Neuro-Psychopharmacology and Biological Psychiatry100, 109888.

    19. ZhaoGao, Xin Guo, Cirong Liu, Yin Mo*, Jiaojian Wang* (CA).(2020). Right inferior frontal gyrus: An integrative hub in tonal bilinguals. Human Brain Mapping 41(8):2152-2159.

    20. Jinping Xu, Qiang Wei, Tongjian Bai, Lijie Wang, Xuemei Li, Zhengyu He, Jianhuang Wu, Qingmao Hu, Xun Yang, Chao Wang, Yanghua Tian*, JiaojianWang* (CA) & Kai Wang.(2020). Electroconvulsive therapy modulates functional interactions between submodules of the emotion regulation network in major depressive disorder. Translational Psychiatry 10, 271.

    21. Li Wang, Chunyan Liu, Yue Hou, Shuqin Zhan, Zhang Zhang, Jiaojian Wang* (CA), Yuping Wang*.(2020). Altered cortical gray matter volume and functional connectivity after transcutaneous spinal cord direct current stimulation in idiopathic restless legs syndrome. Sleep Medicine 74, 254-261.

    22. Jiaojian Wang#*, Benjamin Becker, Lijie Wang, Hai Li, XudongZhao, TianziJiang*. (2019).Corresponding anatomical and coactivation architecture of the human precuneus showing similar connectivity patterns with macaques. NeuroImage 200, 562-574.

    23. JinpingXu, Jinping Xu, Hanqing Lyu, Tian Li,Ziyun Xu, Xianjun Fu, Fucang Jia, JiaojianWang* (CA),Qingmao Hu*. (2019).Delineating functional segregations of the human middle temporal gyrus with resting‐state functional connectivity and coactivation patterns. HumanBrain Mapping, 40: 5159– 5171.

    24. Jinping Xu, Chao Wang, Ziyun Xu, Tian Li, Fangfang Chen, Kai Chen, Jingjing Gao, Jiaojian Wang*(CA), Qingmao Hu*. (2019). Specific Functional Connectivity Patterns ofMiddle Temporal Gyrus Subregions in Children and Adults with Autism Spectrum Disorder. Autism Research, https://doi.org/10.1002/aur.2239.

    25. LijieWang, Lin Yu, Fengchun Wu, Huawang Wu*, Jiaojian Wang* (CA). (2019). Altered whole brain functional connectivitypattern homogeneity in medication-free major depressive disorder.Journal of Affective disorders 253, 18-25.

    26.  Lizhu Luo, Kunhua Wu, Yi Lu, Shan Gao, XiangchaoKong, Fengmei Lu, Fengchun Wu, Huawang Wu*, Jiaojian Wang* (CA). (2019). Increased Functional Connectivity BetweenMedulla and Inferior Parietal Cortex in Medication-Free Major Depressive Disorder. Frontiers in Neuroscience DOI: 10.3389/fnins.2018.00926.

    27. Jiaojian Wang#, Qiang Wei#, Lijie Wang, Hongyu Zhang, Tongjian Bai, Li Cheng, Yanghua Tian*, Kai Wang*. (2018). Functional reorganization ofintra- and internetwork connectivity in major depressive disorder after
    electroconvulsive therapy.
    Human Brain Mapping 39, 1403-1411.

    28. Jiaojian Wang#*, Qiang Wei#, Xinru Yuan, Xiaoyan Jiang, Jinping Xu, Xiaoqin Zhou, Yanghua Tian*, Kai Wang*.(2018). Local functional connectivity density is closely associated with the
    response of electroconvulsive therapy in major depressive disorder.
    Journalof Affective Disorders 658–664.

    29. HuiSun, Lizhu Luo, Xinru Yuan, Lu Zhang, Yini He, Shuqiao Yao, Jiaojian Wang* (CA), Jing Xiao*. (2018). Regional homogeneity and functionalconnectivity patterns in major depressive disorder, cognitive ulnerability to depression and healthy subjects. Journal of Affective disorders 235,229-235.
    30. ChaoWang, Huawang Wu, Fangfang Chen, Jinping Xu, Hongming Li, Hong Li*,Jiaojian Wang* (CA). (2018). Disruptedfunctional connectivity patterns of the insula subregions in drug-free major depressive disorder. Journal of Affective disorders 234,297-304.
    31. JiaojianWang#*, Sangma Xie, Xin Guo, Benjamin Becker, Peter T. Fox, Simon B.Eickhoff, Tianzi Jiang*.(2017). Correspondent Functional Topography of the Human Left Inferior Parietal Lobule at Rest and under Task Revealed using Resting-state fMRI and Coactivation Based Parcellation. HumanBrain Mapping 38:1659-1675.

    32. Jiaojian Wang#, QiangWei#, Tongjian Bai, Xiaoqin Zhou, Hui Sun, Benjamin Becker, Yanghua Tian*, Kai Wang, Keith Kendrick. (2017). ElectroconvulsiveTherapy Selectively Enhanced Feedforward connectivity from Fusiform Face Area to Amygdala in Major Depressive Disorder. Social Cognitive and AffectiveNeuroscience 1983–1992.

    33. HuawangWu, Hui Sun, Chao Wang, Lin Yu, Yilan Li, Hongjun Peng, Xiaobing Lu, Qingmao Hu, Yuping Ning, Tianzi Jiang, Jinping Xu*, JiaojianWang* (CA)., (2017). Abnormalities inthe structural covariance of emotion regulation networks in major depressive disorder. Journal of Psychiatric Research 84: 237-42.

    34. Jiaojian Wang#*, Jinfeng Zhang, Menglin Rong, Xuehu Wei,Dingchen Zheng, Peter T Fox,Simon B Eickhoff, and Tianzi Jiang*., (2016). FunctionalTopography of the Right Inferior Parietal Lobule Structured by Anatomical Connectivity Profiles. HumanBrain Mapping 37:4316-4332.

    35. JiaojianWang#, Yong Yang, Lingzhong Fan, Jinping Xu, Changhai Li, Yong Liu, Peter TFox, Simon B Eickhoff, Chunshui Yu, Tianzi Jiang*., (2015). Convergent Functional Architecture of theSuperior Parietal Lobule Unraveled with Multimodal Neuroimaging Approaches. Human Brain Mapping 36:238-257.

    36.  Jiaojian Wang#, LingzhongFan#, Yinyan Wang#, Wenting Xu, Tao Jiang,Peter T Fox, Simon B Eickhoff, Chunshui Yu, Tianzi Jiang*., (2015). Determination of the posterior boundary ofWernicke's area based on multimodal connectivity profiles. Human Brain Mapping 36:1908-24.

    37.  JiaojianWang#, Lingzhong Fan#,Yu Zhang, Yong Liu, Di Jiang, Chunshui Yu*,Tianzi Jiang*. (2012). Tractography-basedparcellation of the human left inferior parietal lobule. NeuroImage 63:641-652.

    七、招聘招生

    欢迎对脑科学、磁共振成像、认知神经科学、生物信息学、心理学、神经生物学感兴趣的学生加入;对具有图像/信号处理经验,熟悉Matlab,Python等计算机编程语言,拥有计算机、生物医学工程、生物信息学以及心理学等背景优先考虑。

     

    联系方式:wangjj@lpbr.cnjiaojianwang@uestc.edu.cn.