康晓洋

  • 职称:青年副研究员

  • 职务:无

  • 电子邮箱:xiaoyang_kang@fudan.edu.cn

  • 办公地点:新金博大厦406室

  • 电话:021-65641242

  • 个人网页/课题组主页:https://www.researchgate.net/profile/Xiao_Yang_Kang

  • 研究方向

  • 招生专业

  • 授课情况

  • 科研项目

  • 代表性论文和著作

  • 教育工作经历

  • 学术兼职

  • 获奖情况

  • 生物医学微机电器件与系统;

  • 神经工程与脑机交互研究;可应用于植入式/穿戴式刚性、柔性与软性神经接口器件,神经假体与神经康复,人机交互、意念控制、人工智能等领域。

  • 可应用于植入式/穿戴式刚性、柔性与软性神经接口器件,神经假体与神经康复,人机交互、意念控制、人工智能等领域。


  • 研究生课程:《神经网络与人工智能》、《智能生物医疗电子器件》、《脑机接口》

  • 国家自然科学基金青年科学基金项目,神经接口器件微纳制造中的软性可拉伸行为及控制技术研究,2020.01-2022.12。

  • 上海市青年科技英才扬帆计划项目,面向瘫痪康复的柔软性可植入神经接口器件关键技术研究,2019.05-2022.04。

  • 上海市“科技创新行动计划”生物医药领域科技支撑项目,基于FPC与MEMS工艺的光遗传学可植入新型光神经接口器件研究,2019.04-2022.03。

  • G. Schiavone, X. Y. Kang (共一), F. Fallegger, J. Gandar, G. Courtine, S.P. Lacour, Guidelines to Study and Develop Soft Electrode Systems for Neural Stimulation, Neuron 108(2) (2020) 238-258.

  • G. Schiavone, F. Fallegger, X. Y. Kang (共二), B. Barra, N. Vachicouras, E. Roussinova, I. Furfaro, S. Jiguet, I. Se??ez, S. Borgognon, A. Rowald, Q. Li, C. Qin, E. B?zard, J. Bloch, G. Courtine, M. Capogrosso, S.P. Lacour, Soft, Implantable Bioelectronic Interfaces for Translational Research, Adv Mater 32(17) (2020).

  • L. Li, J.H. Zheng, J. Chen, Z.B. Luo, Y. Su, W. Tang, X. Gao, Y.T. Li, C.J. Cao, Q.H. Liu, X. Y. Kang, L. Wang, H. Li, Flexible Pressure Sensors for Biomedical Applications: From Ex Vivo to In Vivo, Adv Mater Interfaces 7(17) (2020).

  • X. Y. Kang, J. Q. Liu, H. C. Tian, B. Yang, et al., Sputtered iridium oxide modified flexible parylene microelectrodes array for electrical recording and stimulation of muscles,Sensors and Actuators B: Chemical, 225(2016) 267-78. IF=5.401

  • X. Y. Kang, J. Q. Liu, H. C. Tian, B. Yang, Y. N. Nuli, and C. S. Yang, Self-Closed Parylene Cuff Electrode for Peripheral Nerve Recording, Journal of Microelectromechanical Systems, vol. 24, pp. 319-332, 2015. IF=2.124

  • X. Y. Kang, J.Q. Liu, H.C. Tian, C. Zhang, B. Yang, Y. NuLi, et al., Controlled activation of iridium film for AIROF microelectrodes, Sensors and Actuators B: Chemical, 190(2014) 601-11. IF=5.401

  • X. Y. Kang, J.Q. Liu, H.C. Tian, B. Yang, Y.N. NuLi, C.S. Yang, Optimization and electrochemical characterization of RF-sputtered iridium oxide microelectrodes for electrical stimulation, Journal of Micromechanics and Microengineering, 24(2014). IF=1.794

  • X. Y. Kang, J. Q. Liu, H. C. Tian, B. Yang, H. Y. Zhu, Y. N. Nuli, et al., Surgical suture inspired wire microelectrodes implant for enhancing functional electrical stimulation,Microsystem Technologies, vol. 21, pp. 611-617, 2015. IF=1.195

  • X. Y. Kang, J. Q. Liu, H. C. Tian, B. Yang, Y. N. Nuli, and C. S. Yang, Fabrication and Electrochemical Comparison of SIROF-AIROF-EIROF Microelectrodes for Neural Interfaces, 2014 36th Annual International Conference of the IEEE Engineering In Medicine and Biology Society (EMBC), pp. 478-481, 2014.

  • X. Y. Kang, J.Q. Liu, H.C. Tian, J.C. Du, B. Yang, H.Y. Zhu, et al., “Fabrication and Degradation Characteristic Of Sputtered Iridium Oxide Neural Microelectrodes for Fes Application”, 2014 IEEE 27th International Conference on Micro Electro Mechanical Systems (MEMS), (2014) 616-9.

  • G. Schiavone, F. Wagner, F. Fallegger, X. Y. Kang, N. Vachicouras, B. Barra, M. Capogrosso, J. Bloch, G. Courtine, S. Lacour, Long-term functionality of a soft electrode array for epidural spinal cord stimulation in a minipig model, 2018 40th Annual International Conference of the IEEE Engineering in Medicine and Biology Society (EMBC), pp. 1432-1435, 2018.

  • BW Ji, X. Y. Kang, et al., Photoelectric neural interface combining wire-bonding μleds with iridium oxide microelectrodes for optogenetics, 2017 IEEE 30th International Conference on Micro Electro Mechanical Systems (MEMS).

  • HC Tian, JQ Liu, X. Y. Kang, et al., Enhanced Flexible Tubular Microelectrode with Conducting Polymer for Multi-Functional Implantable Tissue-Machine Interface,Scientific Reports, 2016, 6 :26910. IF=4.259

  • B Ji, M Wang, X. Y. Kang, et al., Flexible Optoelectric Neural Interface Integrated Wire-Bonding $\mu $ LEDs and Microelectrocorticography for Optogenetics, IEEE Transactions on Electron Devices 64 (5), 2017, 2008-2015. IF=2.605

  • H.C. Tian, J.Q. Liu, X. Y. Kang, Q. He, B. Yang, X. Chen, et al., Flexible multi-channel microelectrode with fluidic paths for intramuscular stimulation and recording,Sensors and Actuators A: Physical, 228(2015) 28-39. IF=2.499

  • H.C. Tian, J.Q. Liu, X. Y. Kang, D.X. Wei, C. Zhang, J.C. Du, et al., Biotic and abiotic molecule dopants determining the electrochemical performance, stability and fibroblast behavior of conducting polymer for tissue interface, RSC Advance, 4(2014) 47461-71. IF=3.108

  • HC Tian, JQ Liu, X. Y. Kang, et al., Implantable multi-functional flexible microelectrode combining electrical and chemical interface, 2016 IEEE 29th International Conference on Micro Electro Mechanical Systems (MEMS).

  • J.Q. Liu, Y.F. Rui, X. Y. Kang, B. Yang, X. Chen, C.S. Yang, A Novel Transdermal Power Transfer Device for the Application of Implantable Microsystems, Micromachines-Basel, 6(2015) 396-408. IF=1.833

  • H.C. Tian, J.Q. Liu, X. Y. Kang, D.X. Wei, C. Zhang, J.C. Du, et al., Poly (3,4-ethylenedioxythiophene) / Graphene Oxide Composite Coating for Electrode-Tissue Interface, 2014 36th Annual International Conference of the IEEE Engineering In Medicine And Biology Society (EMBC), (2014) 1571-4.

  • H.C. Tian, J.Q. Liu, D.X. Wei, X. Y. Kang, C. Zhang, J.C. Du, et al., Graphene oxide doped conducting polymer nanocomposite film for electrode-tissue interface,Biomaterials, 35(2014) 2120-9. IF=8.402

  • LJ Tang, MH Wang, HC Tian, X. Y. Kang, et al., Progress in Research of Flexible MEMS Microelectrodes for Neural Interface, Micromachines 8 (9), 2017, 281. IF=1.833

  • L.Y. Zhang, J.Q. Liu, B. Yang, X. Y. Kang, S.D. Jiang, J.B. Mei, et al., Optimized fabrication of micropipette using laser micromachining process and application in functional electrical stimulation of muscle tissue, Microelectronic Engineering, 103(2013) 131-6. IF=1.806

  • C. Zhang, J.Q. Liu, H.C. Tian, X. Y. Kang, J.C. Du, Y.F. Rui, et al., Implantable electrode array with platinum black coating for brain stimulation in fish, Microsystem Technologies, 21(2015) 139-45. IF=1.195

  • H.C. Tian, J.Q. Liu, J.C. Du, X. Y. Kang, C. Zhang, B. Yang, et al., Flexible Intramuscular Micro Tube Electrode Combining Electrical and Chemical Interface, 2014 36th Annual International Conference of the IEEE Engineering In Medicine and Biology Society (EMBC), (2014) 6949-52.

  • G. Jie, L. Jingquan, Y. Bin, Z. Guanghui, X. Y. Kang, T. Hongchang, et al., Low-Voltage Transient/Biodegradable Transistors Based on Free-Standing Sodium Alginate Membranes, Electron Device Letters, IEEE, 36(2015) 576-8. IF=3.048

  • G. Jie, L. Jingquan, Y. Bin, Z. Guanghui, T. Longjun, T. Hongchang, X. Y. Kang, et al., Biodegradable Junctionless Transistors With Extremely Simple Structure, Electron Device Letters, IEEE, 36(2015) 908-10. IF=3.048

  • MH Wang, BW Ji, XW Gu, HC Tian, X. Y. Kang, et al., Direct electrodeposition of Graphene enhanced conductive polymer on microelectrode for biosensing application,Biosensors and Bioelectronics 99 (2018), 99-107. IF=7.780

  • MH Wang, K Nikaido, Y Kim, BW Ji, HC Tian, X. Y. Kang, et al., Flexible cylindrical neural probe with graphene enhanced conductive polymer, 2017 IEEE 30th International Conference on Micro Electro Mechanical Systems (MEMS).

  • JQ Liu, HC Tian, X. Y. Kang, MH Wang, B Yang, Flexible MEMS Microelectrodes for Neural Interface, The 7th International Multidisciplinary Conference on Optofluidics 2017.

  • C Zhang, J Liu, H Tian, X. Y. Kang, Y Rui, B Yang, H Zhu, C Yang, Control of swimming in crucian carp: stimulation of the brain using an implantable wire electrode, 2013 8th IEEE International Conference on Nano/Micro Engineered and Molecular Systems (NEMS).

  • 康晓洋,田鸿昌,李德昌,《微装配与MEMS仿真导论》,西安电子科技大学出版社,ISBN. 9787560624884,2011。

  • Liu JQ., Tian HC., Kang XY., Wang MH. (2018) Electrodes for Nerve Recording and Stimulation. In: Huang QA. (eds) Micro Electro Mechanical Systems. Micro/Nano Technologies. Springer, Singapore

  • 2018年9月28日-今,复旦大学工程与应用技术研究院,青年副研究员

  • 2016年10月1日-2018年9月30日,瑞士洛桑联邦理工学院,博士后

  • 2010年9月1日-2016年9月30日,上海交通大学,博士

  • 2006年9月1日-2010年6月30日,西安电子科技大学,学士

  • 中国人工智能学会人机混合智能专委会,委员、副秘书长。