中文 / English

http://web.nchu.edu.tw/~tsching/index.files/image004.jpg

程德勝 教授

生醫工程研究所 教授

電郵: tsching@nchu.edu.tw      電話: 04-22840733 (ext 633)        傳真: 04-22852422

地址: 402 台中市南區興大路145 (國立中興大學 應用科技大樓633)

Orcid Id: https://orcid.org/0000-0001-9796-9827

程德勝教授於1999年獲得香港理工大學義肢矯形學理學士學位(甲等榮譽畢業),並於2002年獲得香港理工大學生物醫學工程碩士學位,在2005年獲得英國史翠斯克萊德大學(University of Strathclyde)生物醫學工程博士學位。研究領域主要在於醫療儀器設計、生物感測器、生物電阻抗、生醫電子、生醫光電、非侵入性醫學診斷學、人工智慧物聯網健康照護和輔具科技。程德勝教授現任台灣國立中興大學生醫工程研究所教授。

學歷

·      英國史翠斯克萊德大學                   生物醫學工程博士

·      香港理工大學                           生物醫學工程碩士

·      香港理工大學                           義肢矯型學理學士(甲等榮譽畢業)

·      美國科羅拉多丹佛大學及醫療科學中心     創業家課程學習證書

·      中華民國生物醫學工程學會               醫學工程師證書

經歷

·      08/2023 – 迄今          國立中興大學 產學研鏈結中心產學推動組組長

·      08/2016 – 迄今          國立中興大學 生醫工程研究所教授

·      08/2021 – 迄今          國立暨南國際大學 電機工程學系合聘教授

·      11/2016 – 迄今          海外聯合招生委員會 諮詢顧問

·      08/2019 07/2023       國立中興大學 生醫工程研究所所長

·      06/2019 07/2019       越南胡志明市自然科學大學 物理與電子工程系客座教授

·      11/2016 10/2019       香港教育大學 健康與體育學系名譽教授

·      01/2016 12/2016       南開科技大學 創新育成中心輔導顧問

·      02/2015 07/2016       國立暨南國際大學 電機工程學系教授

·      05/2013 07/2016       海外聯合招生委員會 宣導組組長

·      09/2011 07/2016       國立暨南國際大學 通識教育中心自然科學組組長

·      08/2013 07/2015       國立暨南國際大學 光電科技碩士學位學程在職專班執行長

·      02/2012 07/2015       國立暨南國際大學 應用材料與光電工程學系合聘副教授

·      08/2011 01/2015       國立暨南國際大學 電機工程學系副教授

·      08/2008 07/2011       國立暨南國際大學 生物醫學科技研究所助理教授

·      02/2007 07/2008       亞洲大學 光電與通訊學系助理教授

·      02/2006 02/2007       英國史翠斯克萊德大學 生物醫學工程學系博士後研究

·      08/2005 12/2005       美國科羅拉多丹佛大學及醫療科學中心、英國工業貿易部  博士後研究

·      10/1999 04/2001       香港環宇復康中心 副義肢矯型師

實驗室簡介 [國立中興大學應用科技大樓662室、電話: 04-22840733662]

生醫儀表及感測器實驗室以即早發現高危險族群之疾病為理念,進行基礎及臨床研究,並用研究結果開發生醫儀器,進而達到非侵入式量測、診斷與治療之目的。

實驗室研究方向及設備

生物感測器及微流道研究設備

·       雕刻機(DGSHAPE DE-3; 雕刻解析度: 0.01mm/step);雷射雕割機(FLUX Beambox Pro; 50W CO2 Laser; 切割厚度: 0-12 mm; 雕刻速度: 0-300mm/s);蠟打印機(Xerox Color Qube 8880)

·       阻抗分析儀(Wayne Kerr WK6420C);阻抗分析儀(Microtest 6632);電化學儀(CHI627D);浸鍍機

·       石英晶體微天秤(Stanford Research Systems QCM200)

·       手持式等離子體發生器(Piezobrush® PZ3)

·       紫外光-可見光光譜儀(JASCO V-730)

 

電生理學、生物力學、人工智慧健康照護及輔具研究設備

·       機械手臂(Kinova Gen3 lite);肌電手環(Thalmic Labs)

·       超音波影像系統(Leltek LU700);攜帶式血氧濃度計

·       AR 3D智慧眼鏡(J-Reality J7EF Plus)

·       病人模擬器(AMPS-1);心電圖模擬器(KL-79106)

·       16通道生物電勢放大器(OpenBCI; CYTON + DAISY Biosensing Boards[16-channels])

·       多參數心電監護儀(/家用24小時連續實時監測心電圖、血壓、血氧、體溫、心率、呼吸等)

·       BioPac生理訊號多功能量測系統(MP150)

·       多功能生理訊號無線量測系統包括SpO2、血壓、EKG和呼吸頻率

·       數據收集裝置(LABQUEST 2)包括EKG傳感器、測角儀、握力計、測力板、比色計等

·       測角儀(Flexible Electrogoniometer Module, Biometrics ADU301)

·       紅外熱像儀(Agilent U5855A TrueIR);紅外熱像儀(FLIR TG165)

·       雷射模組(1550nm, 600mW)

 

一般研究設備

·       光功率計(THORLABS PM100D);光電二極管功率傳感器(THORLABS S122C, 700-1800nm, 40mW);熱功率傳感器(THORLABS S310C, 0.19-25 µm, 10W);積分球

·       4通道數位示波器;手持式數位存儲示波器(HDS2062M);高壓差分探頭(DP-100, PINTEK);函數產生器;數位電表;可程式電源供應器;Hoefer 300V電源(PS300-B)NI DAQ卡;FPGA

·       高溫恆溫烤箱;低溫恆溫烤箱(-20oC~100oC)-20oC冰箱;4oC冰箱;精密恆溫水槽(TKS WB212)

·       Laboratory Power Amplifier (LPA05)

·       微量滴管;微量天平;磁石攪拌器;pH meter; 真空機;空氣壓縮機(2HP);微型離心機;超聲波清洗機(Delta DC80H);渦旋混合器(VM-3000)SKF Shaft Alignment Tools (TMEA 1)

·       電腦(8GB顯示卡);電腦割字機;3D列印機;

·       UV曝光機(KVB-30D, KINSTEN)USB數位顯微鏡;深度感應相機(DS325)

·       取皮刀

期刊論文著作[*Corresponding author; #Equal Contributions]

[1]       Congo Tak Shing Ching#, Chien-Kai Wang, Pin-Chi Tang, Minh-Khue Ha, Chin Li, Hsuan-Ni Chiu, Fiona Yan-Dong Yao, Nguyen Chi Nhan#, Nguyen Van Hieu*, and Thien-Luan Phan*. Bioimpedance-Measurement-Based Non-Invasive Method for In Ovo Chicken Egg Sexing. Biosensors 2023; 13(4): 440. doi.org/10.3390/bios13040440 (SCI)

[2]       Thien Luan Phan#, Nguyen Van Hieu, Jing-Jenn Lin, Hsing-Ju Wu#, Pei-Yi Chu#, Chin-Sung Hsiao, Fiona Yan-Dong Yao, Yung-Kai Lin*, Congo Tak Shing Ching*. An enzyme-free interdigitated electrode for ketamine detection. Journal of the Chinese Institute of Engineers 2023; doi: 10.1080/02533839.2023.2204938 (SCI)

[3]       Ju-Yu Wu, Yuhling Wang, Congo Tak Shing Ching, Hui-Min David Wang, Lun-De Liao*. IoT-based wearable health monitoring device and its validation for potential critical and emergency applications. Frontiers in Public Health 2023; 11: 1188304. doi: 10.3389/fpubh.2023.1188304 (SCI)

[4]       Congo Tak Shing Ching, Pei-Yuan Lee, Nguyen Van Hieu, Hsin-Hung Chou, Fiona Yan-Dong Yao, Sha-Yen Cheng, Yung-Kai Lin*, Thien Luan Phan*. Real-time, Economical Identification of Microplastics Using Impedance-based Interdigital Array Microelectrodes and k-Nearest Neighbor Model. Biotechnology and Bioprocess Engineering 2022; https://doi.org/10.1007/s12257-022-0262-y (SCI)

[5]       Ju-Yu Wu, Congo Tak-Shing Ching, Hui-Min David Wang, Lun-De Liao*. Emerging Wearable Biosensor Technologies for Stress Monitoring and Their Real-World Applications. Biosensors 2022; 12(12): 1097. doi: 10.3390/bios12121097 (SCI)

[6]       Yung-Kai Lin#, Hsing-Ju Wu#, Nguyen Van Hieu,Pei-Yi Chu,Thi Vien Thao Do,Fiona Yan-Dong Yao,Thien Luan Phan*, Congo Tak Shing Ching*. A New Biorecognition-Element-Free IDμE Sensor for the Identification and Quantification of E. coli. Biosensors 2022; 12(8): 561 (SCI)

[7]       Wei-Chih Lien, Congo Tak-Shing Ching, Zheng-Wei Lai, Hui-Min David Wang, Jhih-Siang Lin, Yen-Chang Huang, Feng-Huei Lin*, Wen-Fong Wang*. Intelligent Fall-Risk Assessment Based on Gait Stability and Symmetry Among Older Adults Using Tri-Axial Accelerometry. Frontiers in Bioengineering and Biotechnology 2022; 10: 887269 (SCI)

[8]       Wei-Chih Lien#, Xin-Ran Zhou#, Ya-Jyun Liang, Congo Tak-Shing Ching, Chia-Yih Wang, Fu-I Lu, Huei-Cih Chang, Feng-Huei Lin*, Hui-Min David Wang*. Therapeutic potential of nanoceria pretreatment in preventing the development of urological chronic pelvic pain syndrome: Immunomodulation via reactive oxygen species scavenging and SerpinB2 downregulation. Bioengineering & Translational Medicine 2022; e10346 (SCI)

[9]       Su-Yu Liao, Jheng-Jia Jhuang, Jing-Jenn Lin, Congo Tak-Shing Ching*, You-Lin Wu. Ultraviolet Light Exposure Effect on the Nanoscale Current-Voltage Characteristics of Bare and Silicate Nanoparticle Incorporated 3-aminopropyltrimethylsiloxane Films Deposited Using a Focus Ion Beam-Milled Atomic Force Microscopy Tip. Applied Functional Materials 2021; 1: 31-39. doi.org/10.35745/afm2021v01.01.0005

[10]    Su-Yu Liao, Kai-Hsun Tsai, Jing-Jenn Lin, Congo Tak-Shing Ching*, You-Lin Wu*. Characterizations of a nanocomposite biochemical-sensing membrane of γ-APTES incorporated with silica nanoparticles prepared by Ultrasonic Liquid Atomizer Spray. Japanese Journal of Applied Physics 2021; 60: 101006 (SCI)

[11]    Su-Yu Liao, Jing-Jenn Lin, Congo Tak-Shing Ching, You-Lin Wu*. Cytotoxicity of ZnO Paper against Cancer Cells. Sensors and Materials 2021; 33: 3389-3397 (SCI)

[12]    Thien Luan Phan#, Nguyen Van Hieu, Tzong Shiun Li#, Ko-Chang Tsao#, Congo Tak Shing Ching*. Noninvasive and real-time in vivo characterization of Inflammation skin. Skin Research and Technology 2021; 00: 1-8 (SCI)

[13]    Yi-Tai Chen#, Nguyen Van Hieu, Thien Luan Phan#, Tzong Shiun Li#, Siang-Ru Chen, Congo Tak Shing Ching*. A Dynamic Joint Angle Measurement Device for an Active Hand Rehabilitation System. Journal of Healthcare Engineering 2021; 2021: 6688345 (SCI)

[14]    Su-Yu Liao, Jing-Jenn Lin, Congo Tak-Shing Ching, You-Lin Wu*. Effect of Biased Neighboring Wire on Polysilicon Wire Biosensors with Sensing Membrane of γ-APTES Mixed with Polydimethylsiloxane-Treated Silica Nanoparticles. ECS Journal of Solid State Science and Technology 2021; 10(2): 027003 (SCI)

[15]    Peng-Ta Liu, Ta-Sen Wei, Congo Tak-Shing Ching*. Quantitative Ultrasound Texture Analysis to Assess the Spastic Muscles in Stroke Patients. Applied Sciences 2020; 11: 11. doi.org/10.3390/app11010011 (SCI)

[16]    Wen-Chi Yang#, Su-Yu Liao, Thien Luan Phan#, Nguyen Van Hieu, Pei-Yi Chu, Chin-Chang Yi#, Hsing-Ju Wu, Kang-Ming Chang*, Congo Tak-Shing Ching*. An Immunosensor for the Detection of ULBP2 Biomarker. Micromachines 2020; 11: 568. doi.org/10.3390/mi11060568 (SCI)

[17]    Thien Luan Phan and Congo Tak-Shing Ching*. A Reusable Mask for Coronavirus Disease 2019 (COVID-19). Archives of Medical Research 2020; 51: 455-457 (SCI)

[18]    Wei-Li Hsu#, Carl PC Chen#, Mohammad Nikkhoo, Cheng-Feng Lin, Congo Tak-Shing Ching, Chi-Chien Niu and Chih-Hsiu Cheng*. Fatigue changes neck muscle control and deteriorates postural stability during arm movement perturbations in patients with chronic neck pain. The Spine Journal 2020; 20: 530-537 (SCI)

[19]    Kang-Ming Chang, Hao-Chen Xu, Congo Tak-Shing Ching* and Shing-Hong Liu*. Wireless Patrol Sign-In System with Mental Fatigue Detection. Journal of Healthcare Engineering 2018, Article ID 6419064, (SCIE)

[20]    Congo Tak-Shing Ching*, Su-Yu Liao, Teng-Yun Cheng, Chih-Hsiu Cheng, Tai-Ping Sun, Yan-Dong Yao, Chin-Sung Hsiao and Kang-Ming Chang*. A Mechanical Sensor Designed for Dynamic Joint Angle Measurement. Journal of Healthcare Engineering 2017; DOI: 10.1155/2017/8465212 (SCIE)

[21]    Kang-Ming Chang, Yu-Teng Chun, Sih-Huei Chen, Luo Lu, Hsiao-Ting Jannis Su, Hung-Meng Liang, Jayasree Santhosh, Congo Tak-Shing Ching* and Shing-Hong Liu*. The Evaluation of Physical Stillness with Wearable Chest and Arm Accelerometer during Chan Ding Practice. Sensors 2016; 16: 1126 (SCI)

[22]    Yen-Wei Pai#, Peiyuan F. Hsieh*,#, Hsin Tung, Chun-Ying Wu, Congo Tak-Shing Ching and Ming-Hong Chang. Prognosis of cerebral lipiodol embolism caused by transarterial chemoembolization. Neurological Research 2016; DOI: 10.1080/01616412.2016.1201928 (SCI)

[23]    Congo Tak-Shing Ching*, Nguyen van Hieu, Teng-Yun Cheng, Lin-Shien Fu, Tai-Ping Sun, Ming-Yen Liu, Su-Hua Huang* and Yan-Dong Yao. Liver Cancer Detection by a Simple, Inexpensive and Effective Immunosensor with Zinc Oxide Nanoparticles. Sensors 2015; 15: 29408–29418 (SCI)

[24]    Congo Tak-Shing Ching* and Jhih-Hao Chen. An Non-invasive, Bioimpedance-based 2-Dimensional Imaging System for Detection and Localization of Pathological Epithelial Tissues. Sensors and Actuators B: Chemical 2015; 206: 319–326 (SCI)

[25]    Congo Tak-Shing Ching* and Wei-Yi Chih. Design and evaluation of an affordable and programmable mobile device, capable of delivering constant current and high voltage electric pulses of different waveforms for biomedical and clinical applications. Sensors and Actuators B: Chemical 2014; 194: 361–370 (SCI)

[26]    Congo Tak-Shing Ching*, Kok-Khun Yong*, Yan-Dong Yao, Huan-Ting Shen, Shiu-Man Hsieh, Deng-Yun Jheng, Tai-Ping Sun, Hsiu-Li Shieh. A new approach for noninvasive transdermal determination of blood uric acid levels. International Journal of Nanomedicine 2014; 9: 3069–3076 (SCI)

[27]    Sheng-Yang Huang, Chia-Man Chou, Tsung-Han Chen, Pei-Chuen Chiou, Vincent K. S. Hsiao, Congo Tak-Shing Ching and Tai-Ping Sun. Enhanced Sensitivity Using Microfluidic, Interdigitated Microelectrode Based Capacitance Glucose Sensor Measured at 4 MHz. Journal of the Electrochemical Society 2014; 161: B102–B105 (SCI)

[28]    C.S. Hsiao, Y.J. Chiang, Likarn Wang, T.S. Ching. An Efficient Numerical Full-Vectorial Mode Solver Based on Fourier Series Expansion Method. IEEE Photonics Journal 2014; 6: 1-17 (SCI)

[29]    Congo Tak-Shing Ching*, Kang-Ming Chang, Yu-Lung Hung*, Chin-Kang Chen, Kok-Khun Yong, Yue-Xiu Jiang, Tai-Ping Sun* and Hsiu-Li Shieh. An array configuration to increase the performance of a biosensor. Sensors and Actuators B: Chemical 2013; 178: 465–472 (SCI)

[30]    Congo Tak-Shing Ching*, Yueh-Chi Chen, Li-Hua Lu, Peiyuan F. Hsieh, Chin-Sung Hsiao, Tai-Ping Sun*, Hsiu-Li Shieh and Kang-Ming Chang*. Characterization of the Muscle Electrical Properties in Low Back Pain Patients by Electrical Impedance Myography. Plos One 2013; 8: e61639 (SCI)

[31]    Congo Tak-Shing Ching*, Tai-Ping Sun, Wei-Ti Huang, Su-Hua Huang, Chin-Sung Hsiao and Kang-Ming Chang*. A circuit design of a low-cost, portable and programmable electroporation device for biomedical applications. Sensors and Actuators B: Chemical 2012; 166–167: 292–300 (SCI)

[32]    Congo Tak-Shing Ching*, Lin-Shien Fu, Tai-Ping Sun, Tzu-Hsiang Hsu and Kang-Ming Chang*. Use of electroporation and reverse iontophoresis for extraction of transdermal multibiomarkers. International Journal of Nanomedicine 2012; 7: 885–894 (SCI)

[33]    Kang-Ming Chang*,#, Shu-Yi Luo, Sih-Huei Chen, Tuan-PingWang, and Congo Tak-Shing Ching*,#. Body Massage Performance Investigation by Brain Activity Analysis. Evidence-Based Complementary and Alternative Medicine 2012; doi:10.1155/2012/252163 (SCI)

[34]    Kang-Ming Chang, Sih-Huei Chen, Hsin-Yi Lee, Tak-Shing Ching# and Chun-Lung Huang. A Wireless Accelerometer-Based Body Posture Stability Detection System and Its Application for Meditation Practitioners. Sensors 2012; 12: 17620–17632 (SCI)

[35]    Sih-Huei Chen, Congo Tak-Shing Ching and Kang-Ming Chang. Heart rate variability and pulse transit time performance of leg crossing on meditation practitioner. Scientific Research and Essays 2012; 7: 3179–3185

[36]    Congo Tak-Shing Ching*, Mei-Yun Chou, Siou-Jhen Jiang, Su-Hua Huang, Tai-Ping Sun, Wei-Hao Liu, and Chia-Ming Liu. Tissue electrical properties monitoring for the prevention of pressure sore. Prosthetics & Orthotics International 2011; 35: 392–400 (SCI)

[37]    Congo Tak-Shing Ching*, Jen-Wei Chang, Tai-Ping Sun, Hsiu-Li Shieh, Chun-Lang Tsai, Hsin-Wei Huang, Wei-Hao Liu, Chia-Ming Liu, Wei-Chung Yeh and Jia-Hao Li. An Amperometric Biosensor Array for Precise Determination of Homocysteine. Sensors and Actuators B: Chemical  2011; 152: 94–98 (SCI)

[38]    Congo Tak-Shing Ching*, Tzong-Ru Chou, Tai-Ping Sun and Shiow-Yuan Huang. Simultaneous, non-invasive and transdermal extraction of urea and homocysteine by reverse iontophoresis. International Journal of Nanomedicine 2011; 6: 417–423 (SCI)

[39]    Hung Y L, Ching T S*, Sun T P, Chien M Y, Chen C M, Jhan C W, Shieh H L. The Accuracy of Commercial Blood Uric Acid Meters on Blood Uric Acid Level Measurement. WebmedCentral Biomedical Engineering 2011; 2: WMC001778.

[40]    Chih-Kuei Lee, Congo Tak-Shing Ching*, Tai-Ping Sun, Chun-Lang Tsai, Wei Huang, Hsin-Hung Huang, Jen-Fu Kuo, Li-Hang Lai, Mei-Ya Chien, Hsin-Hui Tseng, Hui-Tzu Pan, Shiow-Yuan Huang, Hsiu-Li Shieh, Wei-Hao Liu, Chia-Ming Liu and Hsin-Wei Huang. Noninvasive and Transdermal Measurement of Blood Uric Acid Level in Human by Electroporation and Reverse Iontophoresis. International Journal of Nanomedicine 2010; 5: 343–349 (SCI)

[41]    Tai-Ping Sun#, Hsiu-Li Shieh, Congo Tak-Shing Ching*,#, Su-Hua Huang, Chia-Ming Liu, Wei-Hao Liu and Chung-Yuan Chen. Carbon Nanotube Composites for Glucose Biosensor Incorporated with Reverse Iontophoresis Function for Noninvasive Glucose Monitoring. International Journal of Nanomedicine 2010; 5: 343–349 (SCI)

[42]    Tai-Ping Sun#, Congo Tak-Shing Ching*,#, Chi-Sheng Cheng#, Su-Hua Huang, Yi-Juai Chen, Chin-Sung Hsiao, Ching-Haur Chang, Shiow-Yuan Huang, Hsiu-Li Shieh, Wei-Hao Liu, Chia-Ming Liu and Chung-Yuan Chen. The use of bioimpedance in the detection/screening of tongue cancer. Cancer Epidemiology 2010; 34: 207-211 (SCI)

[43]    Congo Tak-Shing Ching, Tai-Ping Sun*, Su-Hua Huang, Chin-Sung Hsiao, Ching-Haur Chang, Shiow-Yuan Huang, Yi-Juai Chen, Chi-Sheng Cheng, Hsiu-Li Shieh and Chung-Yuan Chen. A Preliminary Study of the Use of Bioimpedance in the Screening of Squamous Tongue Cancer. International Journal of Nanomedicine 2010; 5: 213-220 (SCI)

[44]    Congo Tak-Shing Ching*, Tai-Ping Sun, Su-Hua Huang, Hsiu-Li Shieh and Chung-Yuan Chen. A Mediated Glucose Biosensor Incorporated with Reverse Iontophoresis Function for Noninvasive Glucose Monitoring. Annals of Biomedical Engineering 2010; 38: 1548-1555 (SCI)

[45]    CTS Ching*, Y Buisson and P Connolly. The effect of pulsed bipolar DC current waveform on the simultaneous extraction of glucose and lactate by reverse iontophoresis. Sensors and Actuators B: Chemical 2008; 129: 504-509 (SCI)

[46]    CTS Ching* and P Connolly. Reverse Iontophoresis: A Non-Invasive Technique for Measuring Blood Lactate Level. Sensors and Actuators B: Chemical 2008; 129: 352-358 (SCI)

[47]    CTS Ching* and P Connolly. A Novel Diffusion Cell Ideal for the Study of Membrane Extraction/Permeation Processes and for Device/Sensor Development. Sensors and Actuators B: Chemical 2008; 129: 30-34 (SCI)

[48]    TS Ching and P Connolly*. Simultaneous transdermal extraction of glucose and lactate from human subjects by reverse iontophoresis. International Journal of Nanomedicine 2008; 3: 211-223 (SCI)

[49]    CTS Ching* and P Connolly. Reverse iontophoresis: a new approach to measure blood glucose level. Asian Journal of Health and Information Sciences 2007; 1:393-410

[50]    CTS Ching, I Camilleri and P Connolly*. A low-cost, programmable device for versatile current delivery in iontophoresis applications. Sensors and Actuators B: Chemical 2005; 106: 534-540 (SCI)

[51]    CTS Ching, DHK Chow*, FYD Yao and AD Holmes. Changes in nuclear composition following cyclic compression of the intervertebral disc in an in vivo rat-tail model. Medical Engineering & Physics 2004; 26: 587-594 (SCI)

[52]    CTS Ching, DHK Chow*, FYD Yao and AD Holmes. The effect of cyclic compression on the mechanical properties of the inter-vertebral disc: An in vivo study in a rat tail model. Clinical Biomechanics 2003; 18: 182-189 (SCI)

專利

[1]     鄭智修、林呈鳳、程德勝。回饋式頸部運動訓練之方法。中華民國專利,發明第I653076。專利核准日期:20193月。

[2]     鄭智修、程德勝、陳柏旭。頭頸姿勢監測之方法。中華民國專利,發明第I643096。專利核准日期:201812月。

[3]     孫台平、程德勝、鄭登允、陳宜黛、董佑翔、謝秀利。利用多波段分光測定葡萄糖濃度之方法。中華民國專利,發明第I597484。專利核准日期:20179月。

[4]     孫台平、陳宜黛、謝秀利、程德勝。以厚膜陶瓷基板技術製作耐高溫耐酸鹼陣列感測元件。中華民國專利,發明第I586961,專利核准日期:20176月。

[5]     孫台平、程德勝、謝中維、謝秀利。檢測茶葉農藥殘留之光譜分析法。中華民國專利,發明第I586953,專利核准日期:20176月。

[6]     程德勝、孫台平、許登翔。復健機械手系統。中華民國專利,發明第I577365,專利核准日期:20174月。

[7]     黃素華、程德勝、張清濠。非侵入式代謝產物偵測裝置。中華民國專利,發明第I571238,專利核准日期:20172月。

[8]     魏大森、章良渭、陳適卿、程德勝、陳友倫。脊椎側彎矯正器。中華民國專利,發明第M548527,專利核准日期:20179月。

[9]     程德勝、孫台平、曾獻民、安謙睿、李帛翰、陳志昊。智慧床。中華民國專利,發明第I561230,專利核准日期:201612月。

[10]    程德勝、孫台平、梁錦倫、鄭登允。電腦化扁平足診斷系統。中華民國專利,新型第M528494號,專利核准日期:20169月。

[11]    程德勝、孫台平、陳鵬文、黃鵬宇。大腸直腸癌的檢測方法。中華民國專利,發明第I498550,專利核准日期:20159月。

[12]    程德勝、孫台平、周宗儒。電阻抗式生物感測器及其製造方法。中華民國專利,發明第I486584號,專利核准日期:20156月。

[13]    程德勝、孫台平、王俊智。電流式生物感測器及其製作方法。中華民國專利,發明第I486586號,專利核准日期:20156月。

[14]    Tak-Shing Ching, Tai-Ping Sun, Chia-Ming Liu. Impedance analyzer. US patent filed: US9050017B2, issued date: Jun 2015.

[15]    Tai-Ping Sun, Tak-Shing Ching, Wei-Chung Yeh. Measurement device. US patent filed: US9151726B2, issued date: Oct 2015.

[16]    程德勝、孫台平、劉韋豪。檢測系統及資料處理裝置。中華民國專利,發明第I445951號,專利核准日期:20147月。

[17]    孫台平、程德勝、葉韋成。量測裝置。中華民國專利,發明第I445956號,專利核准日期:20147月。

[18]    程德勝、孫台平、劉家銘。阻抗分析儀、阻抗讀出裝置。中華民國專利,發明第I422837號,專利核准日期:20141月。

[19]    孫台平、陳鐘沅、謝秀利、程德勝。離子感測電路。中華民國專利,發明第I400888號,專利核准日期:20137月。

[20]    Tai-Ping Sun, Chung-Yuan Chen, Hsiu-Li Shieh, Tak-Shing Ching. Ion sensing circuit. US patent filed: US8425744B2, issued date: 23 Apr 2013.

研究計劃及經費

[1]     人工智慧調控之回授式經皮迷走神經電刺激器結合軟性機器人手套系統應用於中風後功能恢復。計畫主持人〔補助機構:國科會,計畫編號:112-2221-E-005 -042 -,經費:TWD 1,071,000 ~ USD 34,723〕,2023

[2]     開發可重複使用、低成本且可靠的指叉式微電極用於唾液中無創定量葡萄糖。計畫主持人〔院校合作,補助機構:秀傳醫療社團法人秀傳紀念醫院和國立中興大學,計畫編號:SRD-112024,經費:TWD 300,000 ~ USD 3,726〕,2023

[3]     非侵入性電阻抗雞胚性別鑑定技術之開發與驗證。共同主持人〔委託機構:國立中興大學,經費:TWD 1,000,000 ~ USD 33,010〕,2023

[4]     一種簡單、快速、低成本檢測水溶液中農藥的方法。共同主持人〔院校合作,補助機構:秀傳醫療社團法人秀傳紀念醫院和國立中興大學,計畫編號:SRD-111050,經費:TWD 250,000 ~ USD 8,105〕,2023

[5]     基於MEMS、微流體和電化學阻抗譜技術的粒線體萃取和活性分析儀的開發。計畫主持人〔補助機構:國科會,計畫編號:111-2221-E-005 -018 -,經費:TWD 858,000 ~ USD 28,322〕,2022

[6]     具感知能力的軟機器手套系統於中風患者手部復健的運用。共同主持人〔院校合作,補助機構:台中榮民總醫院和國立中興大學,計畫編號:TCVGH-NCHU1110108,經費:TWD 350,000 ~ USD 11,553〕,2022

[7]     用於表徵大腸桿菌的叉指式微電極傳感器。共同主持人〔院校合作,補助機構:秀傳醫療社團法人秀傳紀念醫院和國立中興大學,計畫編號:SRD-111050,經費:TWD 300,000 ~ USD 9,726〕,2022

[8]     開發可重複使用的阻抗電容指叉微電極用於快速識別酒精飲料中的迷姦藥品。共同主持人〔院校合作,補助機構:秀傳醫療社團法人秀傳紀念醫院和國立中興大學,計畫編號:SRD-109030,經費:TWD 300,000 ~ USD 9,726〕,2021

[9]     結合光學、電阻抗學技術和人工神經網絡的非侵入性系統對受精卵性別的識別之研究。計畫主持人〔補助機構:科技部,計畫編號:109-2313-B-005 -007 -,經費:TWD 695,000 ~ USD 24,116〕,2020

[10]    有感知的軟機器人手套系統開發用於中風患者手部復健和輔助運動。計畫主持人〔補助機構:科技部,計畫編號:108-2221-E-005 -025 -,經費:TWD 828,000 ~ USD 28,731〕,2019

[11]    遠距居家復健系統整合平台產品設計開發計畫。計畫主持人〔產學合作,委託機構:普皇科技有限公司,計畫編號:109D501,經費:TWD 200,000 ~ USD 6,920〕,2020

[12]    可撓式細胞存活率感測裝置開發及高通量篩選之應用。計畫主持人〔委託機構:國立中興大學,計畫編號:108ST001B,經費:TWD 1,500,000 ~ USD 52,050〕,2019

[13]    具整合體表電刺激與熱度感測之新型脊柱矯具矯治青少年原發脊柱側彎 (重點主題:A4) (2/2)。共同主持人〔補助機構:科技部,計畫編號:107-2218-E-371-001-,經費:TWD 1,914,000 ~ USD 66,415〕,2018

[14]    銀髮族智慧健康檢測系統之開發與臨床測試。共同主持人〔補助機構:科技部,計畫編號:106-2218-E-182 -007 -MY3,經費:TWD 4,840,000 ~ USD 167,948〕,2017~2020

[15]    具整合體表電刺激與熱度感測之新型脊柱矯具矯治青少年原發脊柱側彎 (重點主題:A4) (1/2)。共同主持人〔補助機構:科技部,計畫編號:106-2218-E-371 -001 -,經費:TWD 1,963,000 ~ USD 65,564〕,2017

[16]    高靈敏矩陣型同步性多重奈米免疫生物感測器暨讀出電路應用於早期胰臟癌篩檢系統之研發。計畫主持人〔補助機構:科技部,計畫編號:105-2221-E-005-089-,經費:TWD 859,000 ~ USD 27,225〕,2016

[17]    可攜帶/穿戴式的染敏太陽能電池驅動生醫感測技術(3/5)。共同主持人〔補助機構:科技部,計畫編號:104-2119-M-260 -001-,經費:TWD 4,000,000 ~ USD 127,137〕,2016

[18]    奈米壓印及生物感測技術應用產學聯盟(3/3)。共同主持人〔補助機構:科技部,計畫編號:105-2622-8-260-001-TE1,經費:TWD 1,600,000 ~ USD 50,710〕,2016

[19]    可攜帶/穿戴式的染敏太陽能電池驅動生醫感測技術(2/5)。共同主持人〔補助機構:科技部,計畫編號:104-2119-M-260 -001-,經費:TWD 4,000,000 ~ USD 129,824〕,2015

[20]    利用生物阻抗技術偵測表層組織病變暨二維成像系統研發。計畫主持人〔補助機構:科技部,計畫編號:104-2221-E-260-010-,經費:TWD 893,000 ~ USD 27,148〕,2015

[21]    非侵入性血糖監測系統之發展與臨床應用。計畫主持人〔院校合作,委託機構:埔里基督教醫院,經費:TWD 600,000 ~ USD 19,474〕,2015

[22]    奈米壓印及生物感測技術應用產學聯盟(2/3)。共同主持人〔補助機構:科技部,計畫編號:104-2622-E-260-001-,經費:TWD 2,270,000 ~ USD 73,675〕,2015

[23]    運用反向離子滲透法、電穿孔及生物感測器技術用於非侵入性甲狀腺髓質癌檢測。計畫主持人〔院校合作,補助機構:台中榮民總醫院和國立暨南國際大學,計畫編號:TCVGH-NCNU1047903,經費:TWD 270,000 ~ USD 8,763〕,2015

[24]    脫羧基凝血酶原(DCP)奈米免疫生物感測器暨讀出電路應用於早期肝癌篩檢系統之研發。計畫主持人〔補助機構:科技部,計畫編號:103-2221-E-260-003-,經費:TWD 815,000 ~ USD 26,452〕,2014

[25]    奈米材料免疫生物感測器應用於早期肝癌血液篩檢之研發。計畫主持人〔院校合作,補助機構:台中榮民總醫院和國立暨南國際大學,計畫編號:TCVGHNCNU1037904,經費:TWD 250,000 ~ USD 8,114〕,2014

[26]    可攜帶/穿戴式的染敏太陽能電池驅動生醫感測技術(1/5)。共同主持人〔補助機構:科技部,計畫編號:103-2119-M-260-001-,經費:TWD 4,000,000 ~ USD 129,824〕,2014

[27]    奈米壓印及生物感測技術應用產學聯盟(1/3)。共同主持人〔補助機構:科技部,計畫編號:103-2622-E-260-001-,經費:TWD 2,293,000 ~ USD 74,421〕,2014

[28]    結合恆功率物理動力與超靈敏生物感測器應用於非侵入式遠距新陳代謝物監測系統之研發。計畫主持人〔補助機構:科技部,計畫編號:102-2221-E-260-004-,經費:TWD 779,000~ USD 25,642〕,2013

[29]    結合電穿孔、反向離子滲透法與矩陣型尿酸生物感測器應用於非侵入式尿酸監測系统之研發。計畫主持人〔院校合作,委託機構:埔里基督教醫院,經費:TWD 600,000 ~ USD 19,750〕,2013

[30]    結合阻抗式及電流式之超高靈敏度生物感測器系统研發。計畫主持人〔院校合作,補助機構:台中榮民總醫院和國立暨南國際大學,計畫編號:TCVGH-NCNU1027901,經費:TWD 330,000 ~ USD 11,358〕,2013

[31]    雙功能奈米陣列型生醫感測元件及積體化讀取電路設計之研發(I)。共同主持人〔補助機構:科技部,計畫編號:102-2221-E-260-031-,經費:TWD 766,000 ~ USD 25,226〕,2013

[32]    基於貝氏原理的隨機 Van der Pol 系統辨識及其心跳模擬的應用。共同主持人〔補助機構:科技部,計畫編號:102-2221-E-260-021-,經費:TWD 490,000 ~ USD 16,137〕,2013

[33]    矩陣型阻抗式奈米CEACAM-6免疫生物感測器暨物理動力應用於非侵入式大腸直腸癌篩檢系統之研發。計畫主持人〔補助機構:科技部,計畫編號:101-2221-E-260-001-,經費:TWD 768,000 ~ USD 26,432〕,2012

[34]    矩陣型免疫生物感測器應用於大腸直腸癌早期血液篩檢之研發。計畫主持人〔院校合作,補助機構:台中榮民總醫院和國立暨南國際大學,計畫編號:TCVGH-NCNU-1017902,經費:TWD 300,000 ~ USD 9,635〕,2012

[35]    多功能高解析度奈米生醫感測元件及系統晶片之研發。共同主持人〔補助機構:科技部,計畫編號:101-2221-E-260-034-,經費:TWD 755,000 ~ USD 25,985〕,2012

[36]    同步性多重免疫生物感測器應用於膀胱癌尿液篩檢系統之研發。計畫主持人〔補助機構:科技部,計畫編號:100-2221-E-260-007-,經費:TWD 565,000 ~ USD 19,506〕,2011

[37]    矩陣型尿酸生物感測器及讀出電路系統之研發。計畫主持人〔院校合作,委託機構:埔里基督教醫院,經費:TWD 660,000 ~ USD 22,897〕,2011

[38]    利用生物阻抗技術偵測表層組織病變暨二維成像系統之研發。計畫主持人〔院校合作,補助機構:台中榮民總醫院和國立暨南國際大學,計畫編號:TCVGH-NCNU-1007906,經費:TWD 198,000 ~ USD 6,359〕,2011

[39]    非侵入式前列腺癌偵測系統之研發。計畫主持人〔補助機構:科技部,計畫編號:99-2221-E-260-004-,經費:TWD 667,000 ~ USD 21,422〕,2010

[40]    反向離子分析法與電穿孔技術結合免疫生物感測器應用於非侵入式卵巢癌監測之研究。計畫主持人〔院校合作,補助機構:台中榮民總醫院和國立暨南國際大學,計畫編號:TCVGH-NCNU-997901,經費:TWD 500,000 ~ USD 16,058〕,2010

[41]    生物電阻抗於壓力瘡之早期偵測與預防。計畫主持人〔院校合作,委託機構:埔里榮民醫院,計畫編號:99A019-1,經費:TWD 500,000 ~ USD 16,058〕,2010

[42]    建立即時性生物電阻抗觀測細胞生長型態之量測系統。子計畫主持人〔補助機構:教育部,計畫編號:99F033-3,經費:TWD 160,000 ~ USD 5,139〕,2010

[43]    非侵入式多重新陳代謝物遠距監測資料庫系統。子計畫主持人〔三年計畫,補助機構:國立暨南國際大學,經費:TWD 1,600,000 ~ USD 55,067〕,2010~2012

[44]    非侵入式同步性多重新陳代謝物監測系統研發。計畫主持人〔補助機構:科技部,計畫編號:98-2221-E-260-002-,經費:TWD 747,000 ~ USD 23,991〕,2009

[45]    應用生物電阻學進行非侵入性口腔癌診斷。計畫主持人〔院校合作,補助機構:台中榮民總醫院和國立暨南國際大學,計畫編號:TCVGH-NCNU-987908,經費:TWD 300,000 ~ USD 9,635〕,2009

[46]    全固態多功能差動對生醫感測器晶片及系統研發。共同主持人〔三年計畫,畫補助機構:科技部,計畫編號:98-2221-E-260-024-MY3,經費:TWD 2,859,000 ~ USD 91,822〕,2009~2012

[47]    非侵入性血液尿酸監測系統之發展與臨床應用。共同主持人〔院校合作,委託機構:埔里基督教醫院,計畫編號:98A032,經費:TWD 600,000 ~ USD 19,270〕,2009

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最後更新 2023 09 04