基本信息
张翊  男    中国科学院深圳先进技术研究院
电子邮件: yi.zhang3@siat.ac.cn
通信地址: 南山区西丽大学城学苑大道1068号
邮政编码: 518055

招生信息

   
招生专业
083100-生物医学工程
招生方向
生物医学电子仪器,精密医疗器械,医疗微机电系统

工作经历

   

教授课程

BME 551: Introduction to Bio-MEMS and Nanotechnology

专利与奖励

   
专利成果
[1] 杨慧, 郝锐, 张翊. 一种微纳流控芯片及其制备方法与应用. CN: CN110975953B, 2021-08-24.

[2] 杨慧, 陈希, 陈思卉, 张翊. 一种流体驱动装置、流体驱动装置的制备方法及表面处理方法. CN: CN112691709A, 2021-04-23.

[3] 杨慧, 于子桐, 郝锐, 张翊. 基于微流控技术的多功能器官芯片、制备方法及其应用. CN: CN112574884A, 2021-03-30.

[4] 杨慧, 陈思卉, 陈希, 张翊. 一种微流控芯片、微流控芯片制备方法及核酸提取方法. CN: CN112481080A, 2021-03-12.

[5] 杨慧, 陈希, 张翊. 一种双层微孔芯片、双层微孔芯片制备方法及生物装置. CN: CN112452367A, 2021-03-09.

[6] 陈思卉, 陈希, 杨慧, 张翊. 一种微流控芯片及基于微流控芯片的全血分离方法. CN: CN111001451A, 2020-04-14.

[7] 陈思卉, 陈希, 杨慧, 张翊. 一种微流控芯片及基于微流控芯片的全血分离方法. CN: CN110918144A, 2020-03-27.

[8] 吴天准, 赵赛赛, 彭勃, 张翊. 神经刺激电极的硅胶封装设备. CN: CN209575514U, 2019-11-05.

[9] 吴天准, 赵赛赛, 彭勃, 张翊. 神经刺激电极、植入体、硅胶封装方法以及硅胶封装设备. CN: CN109675189A, 2019-04-26.

[10] 杨慧, 张翊. 微透镜阵列、光学检测装置及微透镜阵列制备方法. CN: CN108051876A, 2018-05-18.

出版信息

   
发表论文
[1] Liu, Qing, Yang, Liangtao, Zhang, Zhilin, Yang, Hui, Zhang, Yi, Wu, Jinglong. The Feature, Performance, and Prospect of Advanced Electrodes for Electroencephalogram. BIOSENSORS-BASELnull. 2023, 13(1): [2] 张翊. A Reversible Gel-Free Electrode for Continuous Noninvasive Electrophysiological Signals Monitoring. Journal of Materials Chemistry C[J]. 2023, [3] Liangtao Yang, Lu Gan, Zhenggan Zhang, Zhilin Zhang, Hui Yang, Yi Zhang, Jinglong Wu. Insight into the Contact Impedance between the Electrode and the Skin Surface for Electrophysical Recordings. ACS Omega[J]. 2022, [4] Yang, Liangtao, Liu, Qing, Zhang, Zhilin, Gan, Lu, Zhang, Yi, Wu, Jinglong. Materials for Dry Electrodes for the Electroencephalography: Advances, Challenges, Perspectives. ADVANCED MATERIALS TECHNOLOGIESnull. 2022, 7(3): http://dx.doi.org/10.1002/admt.202100612.
[5] 杨慧, 张翊, 顾国强, 张鹏程, 曾霖, 王煜烨. 结合微纳光学结构的微流控芯片实验室. 生命科学仪器[J]. 2021, 19(4): 4-13, http://lib.cqvip.com/Qikan/Article/Detail?id=00002FCOL33G7JP0MNDO5JP1MNR.
[6] Zeng, Qi, Xia, Kai, Zhang, Yi, Wu, Tianzhun. Well Controlled 3D Iridium Oxide/Platinum Nanocomposites with Greatly Enhanced Electrochemical Performances. ADVANCED MATERIALS INTERFACES[J]. 2019, 6(18): https://www.webofscience.com/wos/woscc/full-record/WOS:000474475100001.
[7] Yang, Hui, Zhang, Yi, Chen, Sihui, Hao, Rui. Micro-optical Components for Bioimaging on Tissues, Cells and Subcellular Structures. MICROMACHINES[J]. 2019, 10(6): https://doaj.org/article/2d4626e40ad2460cab0793e3c863b7b3.
[8] Zeng, Qi, Zhao, Saisai, Yang, Hangao, Zhang, Yi, Wu, Tianzhun. Micro/Nano Technologies for High-Density Retinal Implant. MICROMACHINES[J]. 2019, 10(6): https://doaj.org/article/3af16fc9190e45428aff1e412e5d9aed.
[9] Chen, Sihui, Hao, Rui, Zhang, Yi, Yang, Hui. Optofluidics in bio-imaging applications. PHOTONICS RESEARCH[J]. 2019, 7(5): 532-542, http://lib.cqvip.com/Qikan/Article/Detail?id=7002260996.
[10] Bayat, Niki, Zhang, Yi, Falabella, Paulo, Menefee, Roby, Whalen, John J, III, Humayun, Mark S, Thompson, Mark E. A reversible thermoresponsive sealant for temporary closure of ocular trauma. SCIENCE TRANSLATIONAL MEDICINE[J]. 2017, 9(419): https://www.webofscience.com/wos/woscc/full-record/WOS:000417196900003.
[11] Zhang, Jun, Zhang, Yi, Li, Yang, Chen, Ruimin, Shung, K Kirk, Richter, Grace, Zhou, Qifa. Correlation of IOP with Corneal Acoustic Impedance in Porcine Eye Model. BIOMED RESEARCH INTERNATIONAL[J]. 2017, 2017: https://doaj.org/article/63f70ede378a4d97863fe3a9b25001fe.
[12] Reboud, Julien, Wilson, Rab, Zhang, Yi, Ismail, Mohd H, Bourquin, Yannyk, Cooper, Jonathan M. Nebulisation on a disposable array structured with phononic lattices. LAB ON A CHIP[J]. 2012, 12(7): 1268-1273, http://dx.doi.org/10.1039/c2lc20705b.
[13] Bourquin, Yannyk, Wilson, Rab, Zhang, Yi, Reboud, Julien, Cooper, Jonathan M. Phononic Crystals for Shaping Fluids. ADVANCED MATERIALS[J]. 2011, 23(12): 1458-1462, http://dx.doi.org/10.1002/adma.201004455.
[14] Bourquin, Yannyk, Reboud, Julien, Wilson, Rab, Zhang, Yi, Cooper, Jonathan M. Integrated immunoassay using tuneable surface acoustic waves and lensfree detection. LAB ON A CHIP[J]. 2011, 11(16): 2725-2730, http://dx.doi.org/10.1039/c1lc20320g.

科研活动

   
科研项目
( 1 ) 老年痴呆病早期影像诊断与物理干预的新技术及设备研发, 参与, 省级, 2019-10--2024-09
( 2 ) 植入式医疗电子的高密度集成封装关键技术研发, 主持, 省级, 2019-03--2020-03
( 3 ) 高分辨率人造视网膜临床前研究, 参与, 部委级, 2019-01--2020-01