职称:长聘副教授

E-mail address:jiangcq13@tsinghua.edu.cn

个人简介

姜长青,清华大学航天航空学院长聘副教授、博士生导师,人机与环境工程研究所所长,神经调控国家工程研究中心副主任,清华-IDG/麦戈文脑科学研究院兼聘研究员。

电话:010-62795977

E-mail: jiangcq13@tsinghua.edu.cn

教育背景

2007-2013,清华大学航天航空学院,博士

2003-2007,清华大学机械工程系,学士

工作履历

2025-至今,清华-IDG/麦戈文脑科学研究院,兼聘研究员

2025-至今,清华大学航天航空学院,长聘副教授

2015-2025,清华大学航天航空学院,助理研究员、副研究员

2013-2015,清华大学航天航空学院,博士后

学术兼职

北京神经科学学会神经调控与脑机接口转化应用专委会副主任委员

中国神经科学学会神经调控基础与转化分委会委员

中国电工技术学会生物电工专委会委员

全国医用电器标技委医用电子仪器分技委委员

《航天医学与医学工程》杂志编委

研究领域

神经调控、植入式神经接口、医疗器械及磁共振兼容、神经疾病电刺激治疗

研究概况

围绕神经调控技术领域开展研究。曾作为清华脑起搏器电极技术负责人,获得2018年国家科学技术进步奖一等奖;攻克磁共振兼容脑起搏器的关键技术,入选国家“十三五”科技创新成就展等。发表论文40余篇,授权发明专利30余项,“十四五”国家重点研发计划项目负责人,主持国家自然科学基金等项目。

奖励与荣誉

2025,中国体视学学会磁共振成像分会年会优秀论文(Top5%)(袁群然)

2025,中国生物医学工程大会优秀论文竞赛二等奖(桑宛萱)

2024,中国生物医学工程大会优秀论文竞赛一等奖(王顺景)

2024,清华大学航院2023-2024年度“优秀新生导师”

2023,清华大学先进工作者

2023,清华大学航院2022-2023年度“优秀新生导师”

2022,磁共振兼容脑起搏器入选“中国2022年度重要医学进展”

2022,日内瓦国际发明展银奖

2021,磁共振兼容脑起搏器入选国家“十三五”科技创新成就展

2019,清华大学先进工作者

2019,清华大学航院2018-2019年度“优秀新生导师”

2018,国家科学技术进步一等奖

2017,纽伦堡国际发明展金奖

2015,北京市科学技术奖一等奖

2015,中国生物医学工程学会黄家驷生物医学工程奖一等奖

2015,清华大学十大优秀博士后

2013,清华大学优秀博士论文

2012,中国高校十大科技进展

学术成果

(1) Jianxun Ren#; Changqing Jiang#; Wei Zhang#; Louisa Dahmani#; Lunhao Shen; Feng Zhang; Shenshen Li; Changgeng He; Yilin Yin; Xiaoxuan Fu; Jianting Huang; Yang Long; Dantong Liu; Yi Guo; Yiming Liu; Shujun Xu; Fangang Meng; Jianguo Zhang; Danhong Wang; Luming Li*; Hesheng Liu*; Circuit Response to Neuromodulation Characterized with Simultaneous Deep Brain Stimulation and Precision Neuroimaging in Humans, Nature Neuroscience, 2026. https://doi.org/10.1038/s41593-026-02228-w.

(2) Jianxun Ren#*, Wei Zhang#, Louisa Dahmani, Evan M. Gordon, Shenshen Li, Ying Zhou, Yang Long, Jianting Huang, Yafei Zhu, Ning Guo, Changqing Jiang, Feng Zhang, Yan Bai, Wei Wei, Yaping Wu, Alan Bush, Matteo Vissani, Luhua Wei, Carina R. Oehrn, Melanie A. Morrison, Ying Zhu, Chencheng Zhang, Qingyu Hu, Yilin Yin, Weigang Cui, Xiaoxuan Fu, Ping Zhang, Weiwei Wang, Gong-Jun Ji, Ji He, Kai Wang, Dongsheng Fan, Zhaoxia Wang, Teresa Kimberley, Simon Little, Philip A. Starr, Robert Mark Richardson, Luming Li, Meiyun Wang*, Danhong Wang*, Nico U. F. Dosenbach, Hesheng Liu*. Parkinson's Disease as a Somato-Cognitive Action Network Disorder. Nature, 2026:36.

(3) Xuan Zhang; Huiling Yu; Changqing Jiang; Yue Shao; Bo Li; Xiaoyan Li; Changqing Chen; Zhuoer Liu; Pengfei Yang; Xi-Qiao Feng*; Luming Li*; Huajian Gao*; Mechanics Meets Neurology: Mechanobiomaterial Studies on Brain Diseases and Neuromodulation, European Journal of Mechanics A-Solids, 2026, 116:105857.

(4) Linze Li*; Changqing Jiang*; Electrodeposited Coatings for Neural Electrodes: A Review, Biosensors & Bioelectronics, 2025, 282:117492.

(5) Shunjing Wang; Ru Ma; Qunran Yuan; Hongda Li; Changqing Jiang*; Efficient, Robust and Accurate CNN Predictor for Neuronal Activation in Directional Deep Brain Stimulation, IEEE Transactions on Neural Systems and Rehabilitation Engineering, 2025, 33:1685-1694.

(6) Boya Xu; Changqing Jiang*; Peishan Li; Wanxuan Sang; Luming Li; Multifactorial Analysis of MRI Gradient Safety for Active Implantable Medical Devices: Coil Design, Implant Trajectories, and Scan Configurations, Physics in Medicine and Biology, 2025, 70(20):205025.

(7) Hongda Li; Shunjing Wang; Xuesong Luo; Changqing Jiang*; Boyang Zhang*; Versatile Neural Activation Predictor with Axon Structure Tailoring Capability Enabling Personalized Neuromodulation Computation, IEEE Transactions on Neural Systems and Rehabilitation Engineering, 2025, 33:3986-3997.

(8) Linze Li*; Changqing Jiang*; Luming Li; A Comparative Study on the Effect of Substrate Structure on Electrochemical Performance and Stability of Electrodeposited Platinum and Iridium Oxide Coatings for Neural Electrodes, Micromachines, 2024, 15(1):70.

(9) Tiangang Long; Changqing Jiang*; Luming Li; Electromagnetic Modeling of the Implantable Electrode for Transfer Function Calibration in MRI RF-Induced Heating Assessment, IEEE Journal of Electromagnetics RF and Microwaves in Medicine and Biology, 2024, 8(3):259-264.

(10) Tiangang Long; Changqing Jiang*; Qunran Yuan; Wanxuan Sang; Xuesong Luo; Luming Li; Translational Excitation Strategy for Scaled Transfer Function Measurement of Medical Implants, IEEE Transactions on Instrumentation and Measurement, 2024, 73:6007910.

(11) Wanxuan Sang; Zhiwen Xiao; Tiangang Long; Changqing Jiang*; Luming Li; Automatic Reconstruction of Deep Brain Stimulation Lead Trajectories from CT Images Using Tracking and Morphological Analysis, IEEE Transactions on Neural Systems and Rehabilitation Engineering, 2024, 32:4014-4021.

(12) Tiangang Long; Changqing Jiang*; Wanxuan Sang; Yiyuan Gu; Jianqi Ding; Luming Li*; Constructing a Digital Twin of the Birdcage Coil in an MR Scanner by B1+ Map Matching: For Radio Frequency Heating Evaluation of Implantable Medical Devices, IEEE Transactions on Instrumentation and Measurement, 2022, 71:6006909.

(13) Yanan Sui; Huiling Yu; Chen Zhang; Yue Chen; Changqing Jiang; Luming Li*; Deep Brain-Machine Interfaces: Sensing and Modulating the Human Deep Brain, National Science Review, 2022, 9:nwac212.

(14) Linze Li; Changqing Jiang*; Wanru Duan; Zhiyan Wang; Feng Zhang; Changgeng He; Tiangang Long; Luming Li*; Electrochemical and Biological Performance of Hierarchical Platinum-Iridium Electrodes Structured by a Femtosecond Laser, Microsystems & Nanoengineering, 2022, 8(1):96.

(15) Linze Li; Changqing Jiang*; Luming Li*; Hierarchical Platinum-Iridium Neural Electrodes Structured by Femtosecond Laser for Superwicking Interface and Superior Charge Storage Capacity, Bio-Design and Manufacturing, 2022, 5(1):163-173.

(16) Linze Li; Changqing Jiang*; Hanchen Wang; Huimin Xie; Luming Li*; A Mechanical Analysis Informed Fractography Study on Load-Specific Fatigue Behaviors of Pt-Ir Coils Used in Implantable Medical Leads, Journal of the Mechanical Behavior of Biomedical Materials, 2021, 116:104364.

(17) Feng Zhang#; Changqing Jiang#*; Yichao Li; Xiaoyue Niu; Tiangang Long; Changgeng He; Jianqi Ding; Linze Li; Luming Li*; Investigation of Artifacts and Optimization in Proton Resonance Frequency Thermometry Towards Heating Risk Monitoring of Implantable Medical Devices in Magnetic Resonance Imaging, IEEE Transactions on Biomedical Engineering, 2021, 68(12):3638-3646.

(18) Changgeng He; Feng Zhang; Linze Li; Changqing Jiang*; Luming Li*; Measurement of Lead Localization Accuracy Based on Magnetic Resonance Imaging, Frontiers in Neuroscience, 2021, 15:632822.

(19) Yue Chen; Chen Gong; Ye Tian; Natasza Orlov; Jianguo Zhang; Yi Guo; Shujun Xu; Changqing Jiang; Hongwei Hao; Wolf-Julian Neumann; Andrea A. Kühn; Hesheng Liu*; Luming Li*; Neuromodulation Effects of Deep Brain Stimulation on Beta Rhythm: A Longitudinal Local Field Potential Study, Brain Stimulation, 2020, 13(6):1784-1792.

(20) Yuxiang Yan#; Louisa Dahmani#; Jianxun Ren#; Lunhao Shen; Xiaolong Peng; Ruiqi Wang; Changgeng He; Changqing Jiang; Chen Gong; Ye Tian; Jianguo Zhang; Yi Guo; Yuanxiang Lin; Shijun Li; Meiyun Wang*; Luming Li*; Bo Hong*; Hesheng Liu*; Reconstructing Lost BOLD Signal in Individual Participants Using Deep Machine Learning, Nature Communications, 2020, 11(1).

(21) Lunhao Shen#; Changqing Jiang#; Catherine S. Hubbard; Jianxun Ren; Changgeng He; Danhong Wang; Louisa Dahmani; Yi Guo; Yiming Liu; Shujun Xu; Fangang Meng; Jianguo Zhang; Hesheng Liu*; Luming Li*; Subthalamic Nucleus Deep Brain Stimulation Modulates 2 Distinct Neurocircuits, Annals of Neurology, 2020, 88(6):1178-1193.