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Zhengtuo Zhao
zhaozt@ion.ac.cn
English, Chinese
Shanghai
University of Chinese Academy of Sciences
Life Sciences
  • 2015-09 to 2019-08 PhD in Biomedical Engineering: University of Texas at Austin
  • 2013-09 to 2015-05 Master's in Mechanical Engineering: University of Michigan-Dearborn
  • 2009-09 to 2013-07 Bachelor's in Energy and Power Engineering and Automation: Xi'an Jiaotong University
  • 2019-09 to 2020-09 - University of Texas at Austin/Rice University - Postdoctoral Researcher
  • 2020-11 to Present - Chinese Academy of Sciences, Center for Excellence in Brain Science and Intelligence Technology - Researcher, Group Leader, Doctoral Supervisor
Development and clinical application of long-term stable, ultra-high bandwidth implantable brain-machine interfaces
Large-scale electrophysiology applied to the pathology, diagnosis, and treatment of neurological diseases
Integrated flexible neural interface systems
  • Ultraflexible electrode arrays enable long-term, volumetric mapping of neural networks at the thousands-of-neuron scale, Zhao, Zhengtuo, Hanlin Zhu, Xue Li, LUAN, LAN, Xie, Chong, 2022
  • Parallel, minimally-invasive implantation of ultra-flexible neural electrode arrays, Zhao, Zhengtuo, Li, Xue, He, Fei, Wei, Xiaoling, Lin, Shengqing, Xie, Chong, 2019
  • Nanofabricated Ultraflexible Electrode Arrays for High-Density Intracortical Recording, Wei, Xiaoling, Luan, Lan, Zhao, Zhengtuo, Li, Xue, Zhu, Hanlin, Potnis, Ojas, Xie, Chong, 2018
  • Nanoelectronic Coating Enabled Versatile Multifunctional Neural Probes, Zhao, Zhengtuo, Luau, Lan, Wei, Xiaoling, Zhu, Hanlin, Li, Xue, Lin, Shengqing, Siegel, Jennifer J, Chitwood, Raymond A, Xie, Chong, 2017
  • Ultraflexible nanoelectronic probes form reliable, glial scar-free neural integration, Luan, Lan, Wei, Xiaoling, Zhao, Zhengtuo, Siegel, Jennifer J, Potnis, Ojas, Tuppen, Catherine A, Lin, Shengqing, Kazmi, Shams, Fowler, Robert A, Holloway, Stewart, Dunn, Andrew K, Chitwood, Raymond A, Xie, Chong, 2017
  • On-chip porous microgel generation for microfluidic enhanced VEGF detection, Zhengtuo Zhao, Mohammad Ali Al-Ameen, Kai Duan, Gargi Ghosh, Joe Fujiou Lo, 2015
  • Compact, non-invasive frequency domain lifetime differentiation of collagens and elastin, Liu, Rui, Zhao, Zhengtuo, Zou, Luwei, Fang, Qiyin, Chen, Lin, Argento, Alan, Lo, Joe F., 2015
Brain-Machine Interface Clinical Application Implantable Long-Term Stable Ultra-High Bandwidth Neural Interface Biocompatibility Signal Stability Deep Learning Neural Signal Decoding

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