研究团队 合作研究员 辅助中心

张垒

仪器仪表中心主任
Ph.D.
脑科学与脑医学仪器技术研究与产品开发;植入式脑机接口系统集成。
教育经历

2010-2015 华中科技大学生命科学与技术学院,生物医学工程,博士

2006-2010 华中科技大学生命科学与技术学院,生物信息技术,本科

工作经历

2019-至今,北京脑科学与类脑研究所,仪器仪表中心,主任

2015-2019,长飞光纤光缆股份有限公司,研发中心/国家重点实验室,高级工程师,医疗项目组负责人

研究概述

脑科学研究离不开新技术新仪器的发展。仪器仪表中心根据脑科学研究的前沿需求开展仪器技术研究和装置开发。还可支持针对脑疾病研究与诊疗需求,进行临床技术研究与医疗器械开发转化。此外,承担了北京脑科学与类脑研究所全植入式脑机接口系统集成任务。


发表文章

发表文章,增加

*First author, # Corresponding author

1. Shi, W.*, Huang, H.*, Sun, X., Jia, Q., Zhou, Y., Zhu, M., Tian, M., Li, Z., Zhang, Z., Wang, T. A., Zhang, L.#, A Miniaturized Implantable Telemetry Biosensor for the Long-Term Dual-Modality Monitoring of Core Temperature and Locomotor Activity. Bioengineering, 12(6), 673. (2025)

2. Di R., Du Q., Xie Y., Lu Y., Gao W., Zhang, L., Qi X., Fan Y., Li J., Wang F., Chen S., Chen T. #, A mechano-resistance mechanism in skin adapts to terrestrial locomotion, Cell, 188 (21): 5797-5808. (2025)

3. Pang, R.*, Sang, H.*, Yi, L., Gao, C., Xu, H., Wei, Y. #, Zhang, L. #, Sun, J. #, Working memory load recognition with deep learning time series classification. Biomedical optics express, 15(5), 2780–2797. (2024)

4. Du, Y., Qi, X., Zhang, L. Yang Y., Chen T. #, Calcium influx-induced lytic cell death disrupts skin immune homeostasis. Cell Discov 9, 124 (2023).

5. Lin, S.*, Wang, D.*, Sang, H.*, Xiao, H., Yan, K., Wang, D., Zhang, Y., Yi, L., Shao, G., Shao, Z., Yang, A.#, Zhang, L.#, Sun, J.#, Predicting poststroke dyskinesia with resting-state functional connectivity in the motor network. Neurophotonics, 10(2), 025001. (2023)

6. Qu, S., Zhu, Q., Zhou, H., Gao, Y., Wei, Y., Ma, Y., Wang, Z., Sun, X., Zhang, L., Yang, Q., Kong, L., & Zhang, L., EasyFlyTracker: A Simple Video Tracking Python Package for Analyzing Adult Drosophila Locomotor and Sleep Activity to Facilitate Revealing the Effect of Psychiatric Drugs. Frontiers in behavioral neuroscience, 15, 809665. (2022)

7. Zhang L.*, Chen K.*, Wang S., Chen S., Niu S., Wang Z. #, Du P., Synthesis of percolative hyperelastic conducting composite and demonstrations of application in wearable strain sensors. Mater. Lett., 233: 306-309.(2018)

8. Li Y.*, Zhang L.*, Long K., Gong H. #, Lei H. #, 2018. Real-time monitoring prefrontal activities during online video game playing by functional near-infrared spectroscopy. J. Biophotonics, 11(9):e201700308.(2018)

9. 张垒、邓勇、骆清铭,近红外光谱分析技术实用手册,第10章:近红外光谱在脑功能研究中的应用,机械工业出版社出版. (2016)

10. Gao C., Zhang L., Luo D., Liu D., Gong H. #, PFC Activity Pattern During Verbal WM Task in Healthy Male and Female Subjects: A NIRS Study. Advances in Experimental Medicine and Biology, 923.(2016)

11. Zhang L., Sun J., Sun B., Luo Q., Gong H. #,. Studying hemispheric lateralization during a stroop task through near-infrared spectroscopy-based connectivity. J. Biomed. Opt., 19(5):057012.(2014)

12. Sun B., Zhang L., Gong H., Sun J., Luo Q. #, Detection of optical neuronal signals in the visual cortex using continuous wave near-infrared spectroscopy. Neuroimage, 87: 190-198.(2014)

13. Zhang L., Sun J., Sun B., Luo Q., Gong H. #, Studying hemispheric lateralization during a Stroop task by near-infrared spectroscopy. Proc. SPIE 8928, Optical Techniques in Neurosurgery, Neurophotonics, and Optogenetics, 892814.(2014)

14. Zhang L.*, Sun J.*, Sun B., Gao C., Gong H. #, Detecting bilateral functional connectivity in the prefrontal cortex during a stroop task by near-infrared spectroscopy. J. Innov. Opt. Health Sci. 6, 1350031.(2013)

15. Sun J., Sun B., Zhang L., Luo Q., Gong H. #, Correlation between hemodynamic and electrophysiological signals dissociates the neural correlates of conflict detection and resolution in a stroop task: a simultaneous near-infrared spectroscopy and event-related potential study. J. Biomed. Opt., 18(9):096014.(2013)

16. Zhang Z.*, Sun B.*, Gong H., Zhang L., Sun J., Wang B., Luo Q. #, A fast neuronal signal-sensitive continuous-wave near-infrared imaging system. Rev. Sci. Instrum., 83, 094301.(2012)

17. Wang B., Xu G., Tian Q., Sun J., Sun B., Zhang L., Luo Q. #, Gong H., Difference between the vastus lateralis and gastrocnemius lateralis in the assessment ability of breakpoints of muscle oxygenation for aerobic capacity indices during an incremental cycling exercise. J. Sport. Sci. Med., 11, 606-613.(2012)



11 granted invention patents and 14 utility model patents; participation in drafting one industry standard for Brain-Machine Interface medical devices.