實驗室指導教授及論文發表
Chih-Chung Huang was born in 1978 in Taiwan. He received the B.S., M.S., and Ph.D. degrees in Biomedical Engineering from Chung Yuan Christian University, Chung-Li, Taiwan, in 2002, 2003, and 2007. From 2006 to 2007, he worked at NIH Resource Center for Medical Ultrasonic Transducer Technology at the University of Southern California, Los Angeles, USA as a Visiting Researcher where he was engaged in research of high frequency ultrasound imaging and development of new acoustic methods for cataract diagnosis. In 2008, he joined the Department of Electrical Engineering, Fu Jen Catholic University, Taiwan as an Assistant Professor. In 2012, Dr. Huang was promoted as an Associate Professor. In 2013, he joined the Department of Biomedical Engineering, National Cheng Kung University, Taiwan. Currently, he is a Professor at Department of Biomedical Engineering. Dr. Huang was the Deputy Director of Medical Device Innovation Center, the Deputy Director of Technology Transfer & Business Incubation Center, the Strategic Planning Division Director of Research & Services Headquarters at National Cheng Kung University, Taiwan. He was the Secretary General of Taiwanese Society of Biomedical Engineering. His research interests include ultrasonic tissue characterization, blood flow measurement, high frequency ultrasound, and ultrasonic instrument for medical applications, etc. Dr. Huang was selected as a member of IFMBE Asia-Pacific Research Networking Fellowship as well as the ordinary member of CoS representative of Taiwanese Society of Biomedical Engineering of IFMBE affiliated Society. Dr. Huang is an associate editor for Medical Physics and Journal of Medical and Biological Engineering. He is a senior member of IEEE as well as the TPC member of IEEE IUS.
High Frequency Ultrasound Duplex Image, Doppler Flowmeter Design, Ultrasonic Tissue Characterization, Biomedical electronics, Hemodynamic Research, Biomedical Electronic Equipment Design, Acoustic Radiation Force Imaging, Blood Rheology, High Frequency Ultrasonic Transducer
Electronics, Introduction to Biomedical Engineering, Medical Electronics, Medical Imaging System, Signals and Systems, Lab Project, Microcontroller, Digital Image Process, Digital Signal Process, Medical Physics, Medical Instrumentation, Medical Ultrasound, Electric Circuits, Introduction of artificial intelligence
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Date of funding period | Title of project | Role | Finding resource |
2008/11/1~2009/10/31 | Study of Blood Rheological Properties Using High Frequency Ultrasonic Parameters and Statistical Models | PI | Ministry of Science and Technology, Taiwan |
2009/8/1~2012/7/31 | Development of high frequency ultrasonic measurement system for hemodynamic properties study from microvasculature - by using in vitro Couette flow and in vivo animal model | PI | Ministry of Science and Technology, Taiwan |
2010/8/1~2013/7/31 | Identification of soft tissue properties by high frequency acoustic radiation force technology | PI | Ministry of Science and Technology, Taiwan |
2010/8/1~2012/7/31 | Aging-in-place: Platform development and applications of ICT for elderly medicine and healthcare | PI | Fu Jen Catholic University, Taiwan |
2012/1/1~2013/10/31 | Ultrasound Epidural Anesthesia Positioning and Guiding System Development | Co-PI | Ministry of Science and Technology, Taiwan |
2012/8/1~2015/7/31 | Development of a high frequency ultrasound echocardiography for evaluating the regenerative cardiac function of zebrafish | PI | Ministry of Science and Technology, Taiwan |
2013/1/1~2014/12/31 | Core Circuit/ Electronics and ASIC Design in Medical Ultrasound Devices | Co-PI | Ministry of Science and Technology, Taiwan |
2013/8/1~2016/7/31 | Novel Ultrasound techniques and system for Carpal Tunnel Syndrome Diagnosis | PI | Ministry of Science and Technology, Taiwan |
2014/1/1~2014/12/31 | Novel Ultrasound techniques and system for Carpal Tunnel Syndrome Diagnosis | Co-PI | National Cheng Kung University, Taiwan |
2014/8/1~2016/7/31 | Development of Clinical Simulation and 3D Printing System for Echocardiography | Co-PI | Ministry of Science and Technology, Taiwan |
2014/8/1~2016/10/31 | Study of an all-digital and high-resolution transmit beamformer for high-frequency ultrasonic imaging system applications | Co-PI | Ministry of Science and Technology, Taiwan |
2015/8/1~2018/7/31 | Development of the multi-functions intravascular ultrasound elastography imaging system | PI | Ministry of Science and Technology, Taiwan |
2015/10/1~ 2022/9/30 | Early detection and treatment strategy of Alzheimer's disease: family history study. | Co-PI | Ministry of Science and Technology, Taiwan |
2015/3/1~2016/8/31 | High frequency elastography for micro-tissues characterization | PI | National Cheng Kung University, Taiwan |
2018/1/1~2021/12/31 | High frequency ultrafast ultrasound imaging for assessing the digital flexor tendon function | PI | National Health Research Institutes |
2018/8/1~2021/7/31 | Quantitative assessment of the viscoelastic properties for thin layer tissue by using guided wave technique | PI | Ministry of Science and Technology, Taiwan |
2018/8/1~2021/7/31 | High resolution ultrasound vector flow imaging for low and high blood flow velocities estimation | PI | Ministry of Science and Technology, Taiwan |
2018/8/1~2021/7/31 | Carotid artery stiffness detector | PI | Southern Taiwan Science Park |
2018/6/1~2020/5/31 | Automated analysis of the intravascular ultrasound image by artificial intelligence | PI | National Cheng Kung University Hospital |
2021/9/1~2024/8/31 | Characterization of arteriosclerosis by using duplex high frequency ultrasound arterial wall shear stress and pulse wave mappings: from small animal to human | PI | Ministry of Science and Technology, Taiwan |
2021/8/1~2022/7/31 | Development of an implantable high resolution ultrasound ultrafast imaging system for mouse brain blood flow mapping | PI | Ministry of Science and Technology, Taiwan |
2021/7/1~2022/6/30 | A Novel Therapeutic Device for Obstructive Sleep Apnea | PI | Ministry of Science and Technology, Taiwan |
2022/1/1~2024/12/1 | Development of a wearable ultrasound device to optimize the treatment of rotator cuff tear by characterizing dynamic properties of the shoulder tissues | PI | National Health Research Institutes |