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Wu Ting
{'en': 'wuting(at)cibr.ac.cn', 'zh': 'wuting(at)cibr.ac.cn', 'de': 'wuting(at)cibr.ac.cn'}
English, Chinese
Beijing
Chinese Institute for Brain Research, Beijing
Brain Science and Anthropology
  • 2019 - Ph.D.: New York University
  • 2010 - Master's: Xi'an Jiaotong University
  • 2007 - Bachelor's: Xi'an Jiaotong University
  • 2021.9 - Present - Beijing Institute of Brain Science and Brain-like Research - Young Scholar
  • 2019-2021 - New York University Neuroscience Center, Dr. Roozbeh Kiani's Lab - Postdoctoral Researcher
  • 2010-2013 - Institute of Microelectronics, Chinese Academy of Sciences - RF/Analog IC Engineer
Development of novel multimodal neural interfaces
Biocompatibility and long-term stability of invasive neural interfaces
Signal acquisition chips and systems for invasive brain-computer interfaces
  • Anomalous sensitivity enhancement of nano-graphitic electrochemical micro-sensors with reducing the operating voltage, Cuniberto E, You KD, Alharbi A, Huang Z, Wu T, Kiani R, Shahrjerdi D, 2021
  • Nano-engineering the material structure of preferentially oriented nano-graphitic carbon for making high-performance electrochemical micro-sensors, Cuniberto E, Alharbi A, Wu T, Huang Z, Sardashti K, You KD, Kisslinger K, Taniguchi T, Watanabe K, Kiani R, Shahrjerdi D, 2020
  • Quantitative principles for precise engineering of sensitivity in graphene electrochemical sensors, Wu T, Alharbi A, Kiani R, Shahrjerdi D, 2019
  • Low-frequency noise in irradiated graphene FETs, Wu T, Abdullah A, Takashi T, Watanabe K, Shahrjerdi D, 2018
  • Experimental study of the detection limit in dual-gate biosensors using ultrathin silicon transistors, Wu T, Alharbi A, You KD, Kisslinger K, Stach EA, Shahrjerdi D, 2017
  • Hybrid CMOS-graphene sensor array for subsecond dopamine detection, Nasri B, Wu T, Alharbi A, You KD, Gupta M, Sebastian SP, Kiani R, Shahrjerdi D, 2017
  • Effects of single vacancy defects on 1/f noise in graphene/h-BN FETs, Wu T, Alharbi A, Taniguchi T, Watanabe K, Shahrjerdi D, 2018
  • Heterogeneous integrated CMOS-graphene sensor array for dopamine detection, Nasri B, Wu T, Alharbi A, Gupta M, RanjitKumar R, Sebastian S, Wang Y, Kiani R, Shahrjerdi D, 2017
  • A hybrid CMOS-graphene integrated sensing platform for subsecond dopamine detection, Wu T, Nasri B, Alharbi A, Kiani R, Shahrjerdi D, 2017
  • Glucose sensing using dual-gated BioFETs with 5nm-thick silicon body, Wu T, Afzali A, You KD, Kisslinger K, Stach E, Shahrjerdi D, 2017
  • An integrated multi-electrode carbon microfiber sensor platform for subsecond dopamine detection, Wu T, Nasri B, Alharbi A, Bang S, Patel A, Liu B, Kiani R, Shahrjerdi D, 2016
  • The human body and millimeter-wave wireless communication systems: interactions and implications, Wu T, Rappaport TS, Collins CM, 2015
Neural Interfaces Multimodal Biocompatibility Stability Brain-Computer Interfaces Signal Acquisition Chips Systems Neuroscience Nanotechnology

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