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Overview
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Chief

WEI-LING CHEN 

Curriculum Vitae

  • Educational Background

​National Cheng Kung University, Biomedical Engineering. Doctorate Degree.

National Cheng Kung University, Institute of Biomedical Engineering. Master's Degree.

National Cheng Kung University, Mechanical Engineering. Bachelor's Degree. 

  • Professional Experience

    2023- Now Department of Biomedical Engineering,Taipei Veterans General Hospital. Senior Technical Specialist. 

​2020- 2023 Food and Drug Administration, Ministry of Health and Welfare. Senior Technical Specialis.

2018- 2020 Originals & Enterprises, Kaohsiung Veterans General Hospital. Deputy director.

2013- 2020 Department of Biomedical Engineering, Kaohsiung Veterans General Hospital. Medical Administrator.

  • Major awards and honors

  1. 2019- Geneva International Invention Exhibition-Renal Dialysis Tube Monitoring System and Wearable Device that can monitor the tube【Silver Award】

  2. 2019- Geneva International Invention Exhibition-Test Tube Mixer 【Bronze Award】

  3. 2018- 12th Shengming Cup Application Design Competition Silver Award Lynncast-dialysis fistula wear care plan

  4. 2018- 21ICMMB2018 (International Conference on Mechanics in Medicine and Biology) Oral Award Best Paper Award-Feasibility of hemodialysis patient care using sensors embedded in personalized 3D printing cast

  5. 2018- The 15th National Innovation Award, Academic Research Innovation Award, Smart Medical and Health Care Group-Integrated Arteriovenous Fistula Wearable Device for Detecting Failure of Arteriovenous Fistula with Audio Technology

  6. 2018- iEAN Germany Nuremberg Invention Exhibition【Gold Award】(Dialysis patients care system wearable device)

  7. 2018- Taiwan Innovation Technology Expo-Renal Dialysis Tube Monitoring System and Wearable Device【Bronze Award】

  8. 2016- Kaohsiung International Invention Exhibition-Smart Grill【Gold Medal】

  9. 2016- Taipei International Invention Exhibition-Evaluation method of vascular access function of dialysis fistula 【Silver Award】

  10. 2016- Taipei International Invention Exhibition Bronze Medal-Device for judging the narrowing of dialysis fistula【Bronze Award】

  • ​Patents

  1. Evaluation method of vascular access function of renal dialysis fistula, invention patent of the Republic of China, [Invention No. I484939]. May 21, 2015 to June 17, 2032.

  2. Method and device for judging diseases and evaluating therapeutic effects of diseases based on the sound of blood flow, Republic of China invention patent, [Invention No. I 498099]. September 1, 2015 to May 26, 2033.

  3. The device for judging the narrowing of renal dialysis fistula, a new patent of the Republic of China, has been approved [New Model No. M 5077389]. September 1, 2015 to April 8, 2025.

  4. Appropriate Pressure Hemostatic Device, New Patent of the Republic of China, [New Model No. M 447209]. February 21, 2013 to June 18, 2022.

  5. Intelligent pressure-adaptive tourniquet and hemostasis method, Republic of China invention patent, [Invention No. I 533835]. May 21, 2016 to September 8, 2031.

  6. Using audio signals to determine the detection device for the narrowing of fluid pipelines, computer program products and computer readable media, Republic of China invention patent, [Invention No. 1 572327 ]. March 1, 2017 to September 30, 2034.

  7. The program product that can obtain the degree of fistula narrowing by audio technology and the computer-readable medium that stores the program product, Republic of China invention patent, [Invention No. I 618054 No]. March 11, 2018 to January 15, 2037.

  8. Combined blood collection tube shaker seat, New Patent of the Republic of China, [New Model No. M 565604]. August 21, 2018 to March 26, 2028.

  9. Drainage monitoring system, New Patent of the Republic of China [New Model No. M 565008]. August 11, 2018 to May 20, 2028.

  10. Using audio and blood flow signals to judge the effectiveness of fistula narrowing treatment and the wearable device for detecting audio and blood flow signals, Republic of China invention patent, [Invention No. I 689286]. April 1, 2020 to November 28, 2038.

  • ​Publications

  1. Chen WL, Lin CH, Yang TL, Lin CW, Kan CD. Custom-designed sensors embedded 3D-printed wearable device for improving the hemodialysis-related vascular dysfunction detection. Technol Health Care. 2023 Feb 23. doi: 10.3233/THC-235000. Epub ahead of print. PMID: 36872813.

  2. Chen WL, Lee Y, Yang TL, Kan CD*. Advantages of 3D printing schemes for surgical planning pertaining to type II aortic dissection thoracic endovascular aortic repairs. Asian J Surg. 2022 Mar 31:S1015-9584(22)00302-5. doi: 10.1016/j.asjsur.2022.03.060. Epub ahead of print. PMID: 35370068. (SCI;  2021 IF=2.808; Surgery; Ranking 88/212)

  3. Wu JX, Pai CC, Kan CD*, Chen PJ, Chen WL, Lin CH*, Chest X-ray Image Analysis with Combining 2D and 1D Convolutional Neural Network based Classifier for Rapid Cardiomegaly Screening, IEEE ACCESS,vo.10, pp. 47824-47836, 2018. (SCI 2021, IF=3.476, COMPUTER SCIENCE, Ranking 79/164, Q2)

  4. Lin CH, Wu JX, Kan CD*, Chen PY, Chen WL, Arteriovenous Shunt Stenosis Assessment Based on Empirical Mode Decomposition and 1D- Convolutional Neural Network: Clinical Trial Stage, Biomedical Signal Processing and Control, 2021 April; 66:102461. (SCI 2021, IF=5.076, ENGINEERING BIOMEDICAL, Ranking 30/98, Q2).

  5. Lin CH, Kan CD, Chen WL, Mai YC, Chen YS. An adaptive frequency - Voltage control model for extracorporeal supporting flow regulation in an extracorporeal membrane oxygenation system. Intelligent Decision Technologies.2021;15(2):221-230.https://doi.org/10.3233/IDT-200018. (ESCI)

  6. Wang WJ, Kan CD, Chen CY, Meng YY, Wang JN, Chen WL, Chen CH, Li WP. Synthetic Poly(lactic-co-glycolic Acid) Microvesicles as a Feasible Carbon Monoxide-Releasing Platform for Cancer Treatment. Membranes (Basel). 2021 Oct 26;11(11):818. doi: 10.3390/membranes11110818. PMID: 34832047; PMCID: PMC8625701. (SCI 2021, IF=4.562, POLYMER SCIENCE, Ranking 21/90, Q1).

  7. 甘宗旦、陳維聆、林佳勳、許喬博、張睿智、魏崢、謝世榮、許俊傑(2021)。創建多元醫學併大體模擬實境手術— 建立開放式胸腹主動脈修復置換模擬手術情境及學習成效初探。教學實踐研究,1(2),29-51。doi:10.7007/JSoTL.202106_1(2).0002.

  8. Kan CD, Chen WL, Lin CH, Hsu CP, Chang JC, Wei J, Hsieh SR, Shue JJ, Cadaveric open vascular surgery training program on the learning of intensive vascular surgical skills for junior vascular surgeons. Acad. J. Educ. Res. 2020 Dec., 8(12): 500-508. (ESCI)

  9. Jieh-Neng Wang, Wei-Ling Chen, Chung-Dann Kan, Ching Chou Pai, Chia-Hung Lin, Jian-Xing Wu, Neng-Sheng Pai., Rapid in vitro evaluation of hemodynamic performances of customized handmade trileaflet-valved condits using Duffing-Holmes-based sef-synchronization dynamic errors, The Journal of Engineering, 2021; 1-12, DOI: 10.1049/tje2.12077. (ESCI)

  10. Yang TL, Lin CH, Chen WL, Lin HY, Su CS, and Liang CK. Hash Transformation and Machine Learning-based Decision-Making Classifier Improved the Accuracy Rate of Automated Parkinson’s Disease Screening. IEEE Transactions on Neural Systems and Rehabilitation Engineering. 2019 Oct;28(1):72-82. (SCI 2021, IF=4.528, REHABILITATION, Ranking 10/68).

  11. Tsung-Lung Yang, Ping-Ju Kan, *Chia-Hung Lin, Hsin-Yu Lin, Wei-Ling Chen, and Her-Terng Yau, Using Polar Expression Features and Nonlinear Machine Learning Classifier for Automated Parkinson’s Disease Screening, IEEE Sensors Journal, 20(1), pp.501-514, 2020. (SCI 2021, IF=4.325, INSTRUMENTS & INSTRUMENTATION, Ranking 14/64, Q1).

  12. Chia-Hung Lin, Neng-Sheng Pai, Chung-Dann Kan, Pi-Yun Chen, Wei-Ling Chen, Chih-Hsien Li, Yi-Hsun Chen, Smart Drainage Monitoring System Establishment: Case Study in Pleural Effusion Drainage and its Application, Sensors and Materials, 31(11), pp.3409-3423, 2019. (SCI 2021, IF=0.879, INSTRUMENTS & INSTRUMENTATION, Ranking 59/64, Q4).

  13. Chen AD, Wei-Ling Chen, Chung-Dann Kan*, Optimizing decision-making strategies in managing superficial femoral artery occlusive disease. J Chin Med Assoc. 2019 Aug 26. doi: 10.1097/JCMA.0000000000000179. (SCI 2021, IF=3.396, MEDICINE, GENERAL & INTERNAL, Ranking 71/172, Q2).

  14. Chia-Hung Lin, Chung-Dann Kan, Wei-Ling Chen, Yi-Chen Mai, Ying-Shin Chen, “An Adaptive Frequency–Voltage Control Model for Extracorporeal Supporting Flow Regulation in an Extracorporeal Membrane Oxygenation System”, Intelligent Decision Technologies: An International Journal, article in press, 2019. (ESCI)

  15. Chia-Hung Lin*, Chung-Dann Kan*, Wei-Ling Chen, and Ping-Tzan Huang, “Application of Two-Dimensional Fractional-Order Convolution and Bounding Box Pixel Analysis for Rapid Screening of Pleural Effusion,” J Xray Sci Technol. 2019;27(3):517-535. (SCI 2021 IF=2.442, INSTRUMENTS & INSTRUMENTATION; 34/64, Q3)

  16. Chia-Hung Lin, Wei-Ling Chen, Chung-Dann Kan, “Inflow and outflow stenoses screening on biophysical experimental arteriovenous graft using big spectral data and bidirectional associative memory Machine learning model”, IET Cyber-Physical Systems: Theory & Applications, vol. 4(2), pp. 139-147, 2019. (ESCI)

  17. Chia-Hung Lin, Chung-Dann Kan, Jieh-Neng Wang, Wei-Ling Chen, and Pi-Yun Chen, Cardiac Arrhythmias Automated Screening using Discrete Fractional-Order Integration Process and Meta Learning based Intelligent Classifier, IEEE Access ,vol 6,pp. 52652-52667, 2018, (SCI 2021, IF=3.476,COMPUTER SCIENCE, Ranking 79/164, Q2)

  18. Wei-Ling Chen, Tsung- Lung Yang, Po-Lei Lee, Chung-Dann Kan, "Feasibility of Smart Hemodialysis Patient Care Using Sensors Embedded in Personalized 3D Printing Cast,” Journal of Mechanics in Medicine and Biology, Vol.19(1): 1940017-1940025, 2019. (SCI 2021, IF=0.883, ENGINEERING, BIOMEDICAL, Ranking 94/98, Q4)

  19. Chia-Hung Lin, Chung-Dann Kan, Wei-Ling Chen, and Ping-Tzan Huang, Application of two-dimensional fractional-order convolution and bounding box pixel analysis for rapid screening of pleural effusion. J Xray Sci Technol. 2019;27(3):517-535. doi: 10.3233/XST-180473. PMID: 30958323. (SCI 2021, IF=2.442, INSTRUMENTS & INSTRUMENTATION, Ranking 34/64, Q3)

  20. Chia-Hung Lin, Chung-Dann Kan, Wei-Ling Chen, Yi-Chen Mai, Ying-Shin Chen, “An Adaptive Frequency–Voltage Control Model for Extracorporeal Supporting Flow Regulation in an Extracorporeal Membrane Oxygenation System”, Intelligent Decision Technologies: An International Journal, article in press, 2019. (ESCI)

  21. Chien-Ming Li, Yueh-Ren Ho, Wei-Ling Chen, Chia-Hung Lin, Ming-Yu Chen, and Yong-Zhi Chen, “Nasogastric Tube Dislodgment Detection in Rehabilitation Patients Based on Fog Computing with Warning Sensors and Fuzzy Petri Net”, Sensors and Materials, Vol. 31, No. 1 (2019) 117–130. (SCI 2021, IF=0.879, INSTRUMENTS & INSTRUMENTATION, Ranking 59/64, Q4)

  22. Chung-Dann Kan, Jieh-Neng Wang, Wei-Peng Li, Shao-Hsien Lin, Wei-Ling Chen, Ya-Ping Hsu, Chen-Sheng Yeh, “Clinical ultrasound stimulating angiogenesis following drug-release from polymersomes on the ischemic zone for peripheral arterial occlusive disease”, Nanomedicine: Nanotechnology, Biology, and Medicine, 14, 2205-2213, 2018. (SCI 2021, IF=6.458, MEDICINE, RESEARCH & EXPERIMENTAL, Ranking 36/139, Q2)

  23. Cheng-Hsien Chiang, Ming-Long Yeh, Tin-Kan Hung, Wei-Ling Chen, Chung Dann Kan*, “Fixation Study of Single and Double stent grafts for endovascular aortic repair”, Journal of Mechanics in Medicine and Biology, 2018; 18(4):1-12. (SCI 2021, IF=0.883, ENGINEERING, BIOMEDICAL, Ranking 94/98, Q4)

  24. Chen WL, Yang TL, Kan CD. Amplifying art of valve design by science. J Thorac Cardiovasc Surg. 2018 Oct;156(4):1639-1641. doi: 10.1016/j.jtcvs.2018.05.034. PMID: 30248800. (SCI 2021, IF=6.439, SURGERY, Ranking 15/211, Q1)

  25. Chen WL, Lin CH, Wang JN, Lu PJ, Chan MY, Wu JT, Kan CD. Assistive Technology using Regurgitation Fraction and Fractional-Order Integration to Assess Pulmonary Valve Insufficiency for Pre-surgery Decision Making and Post-surgery Outcome Evaluation. Biomed Signal Process Control. 2018 May;44:247-257. (SCI 2021, IF=5.076, ENGINEERING, BIOMEDICAL, Ranking 30/98)

  26. Chung-Dann Kan*, Wei-Ling Chen, Chia-Hung Lin, Jieh-Neng Wang, Pong-Jeu Lu, Ming-Yao Chan, and Jui-Te Wu, “Customized Handmade Pulmonary Valved Conduit Reconstruction for Children and Adult Patients Using Meta-Learning Based Intelligent Model,” IEEE ACCESS,vo.6, pp.21381-21396, 2018. (SCI 2021, IF=3.476, COMPUTER SCIENCE, Ranking 79/164, Q2)

  27. Chen WL, Kan CD, Lin CH, Mai YC. Generalized Regression Estimator Improved the Accuracy Rate of Estimated Dialysis Accesses Stenotic Condition on In-Vitro Arteriovenous Graft Experimental Model. IEEE ACCESS. 2018 Feb;6:10381-10391.(SCI 2021, IF=3.476, COMPUTER SCIENCE, Ranking 79/164)

  28. Chung-Dann Kan*, Jieh-Neng Wang, Wei-Ling Chen, Pong-Jeu Lu, Ming-Yao Chan, Chia-Hung Lin, Wan-Chin Hsieh, “Applicability of the handmade ePTFE trileaflet-valved conduits for pulmonary valve reconstruction: An ex vivo and in vivo study, ” The Journal of Thoracic and Cardiovascular Surgery, 155(2):765-774.e3,2018. (SCI 2021, IF=6.439, SURGERY, Ranking 15/211, Q1).

  29. Chung-Dann Kan*, Wei-Ling Chen, Chia-Hung Lin*, Jieh-Neng Wang, Pong-Jeu Lu, Ming-Yao Chan,, Jui-Te Wu, “Handmade trileaflet valve design and validation for Pulmonary valved conduit reconstruction using taguchi method and cascade correlation machine learning model” IEEE ACCESS,vo.6, pp.7088-7099, 2018. (SCI 2021, IF=3.476, COMPUTER SCIENCE, Ranking 79/164, Q2)

  30. Kan CD, Chen WL, Lin CH, Wu MJ, Mai YC. Substitution-rate based screening model to assess stenosis progression in experimental stenotic arteriovenous grafts. Technol Health Care. 2017 Oct 23;25(5):887-902. (SCI 2021, IF=1.205, ENGINEERING, BIOMEDICAL, Ranking 93/98, Q4).

  31. Wei-Ling Chen, Chung-Dann Kan, Chia-Hung Lin, Ying-Shin Chen, Yi-Chen Mai, “Hypervolemia Screening in Predialysis Healthcare for Hemodialysis Patients Using Fuzzy Color Reason Analysis,” International Journal of Distributed Sensor Networks, January 2017 (SCI 2021, IF=1.938, COMPUTER SCIENCE, Ranking 124/164, Q3).

  32. Wei-Ling Chen, Chung-Dann Kan, Chia-Hung Lin, “Assessment of inflow and outflow stenoses using big spectral data and radial-based colour relation analysis on in vitro arteriovenous graft biophysical experimental model,” IET Cyber-Phys. Syst., Theory Appl., pp. 1-10, 2017. (ESCI)

  33. Chung-Dann Kan, Wei-Ling Chen, Chia-Hung Lin, Ying-Shin Chen, “Predictable capability control scheme for oxgen-exchange blood flow regulation in an extracorporeal membrane oxygenation system”, IET The institution Engineering and Techmology, 11(6), 155-162, 2017. (ESCI)

  34. Ping-Tzan Hung, Tau-Lang Jong, Chien-Ming Li, Wei-Ling Chen, Chia-Hung Lin, “Integrating flexible sensor virtual self-organizing DC grid model with cloud computing for blood leakage detection during hemodialysis”,IEEE Transactions on biomedical circuits and system, 11(4):784-793, 2017. (SCI 2021, IF=5.234, ENGINEERING, BIOMEDICAL, Ranking 28/98, Q2).

  35. Chia-Hung Li*, Chung-Dann Kan*, Wei-Ling Chen, Ming-Jui Wu, Fan-Ming Yu, “An equivalent astable multivibrator model to assess flow instability and dynafuncation risk in in-vitro stenotic arteriovenous grafts”, Technol Health Care, 2016, 24:295-308. (SCI 2021, IF=1.205, ENGINEERING, BIOMEDICAL, Ranking 93/98, Q4).

  36. Cheng-Hsien Chiang, Ming-Long Yeh, Wei-Ling Chen, Chung Dann Kan*, “Apparatus for Comparison of Pullout Forces for various Thoracic Stent Grafts at Varying Neck Angulations and Oversizes,” Annals of Vascular Surgery, Vol. 31, pp. 196-204, 2016. (SCI 2021, IF=1.607, SURGERY, Ranking 160/211, Q4).

  37. Chung-Dann Kan, Wei-Ling Chen, Chia-Hung Lin, Pong-Jeu Lu, and Yi-Chun Du, “Optimal Flow Adjustment of Veno-Venoarterial (VVA) ExtraCorporeal Membrane Oxygenation with an Adaptive Prediction Model: Cannula Sizes Screening and Pump Speeds Estimation, ”IET Science, Measurement & Technology, Vol. 10(3), pp. 177-184, 2016. (SCI, IF=0.954, ISSN 1751-8822)

  38. Wei-Ling Chen, Chung-Dann Kan, Fan-Ming Yu, Yi-Chen Mai, and Chia-Hung Lin “Life-Threatening Complication Detection During Hemodialysis Using Fractional Order Infr-Gap Decision-Making, ”International Decision Technologies: An International Journal, November 2016 . (ESCI, ISSN 1875-8843).

  39. Wei-Ling Chen, Chung-Dann Kan, Rui-Hung Kao, “Numerical evaluation and experimental validation of vascular access stenosis estimation,” Technology and Health Care, 24, S245-S252, 2016. (SCI 2021, IF=1.205, ENGINEERING, BIOMEDICAL, Ranking 93/98, Q4).

  40. Chia-Hung Lin, Wei-Ling Chen, Chung-Dann Kan, Yi-Chun Du, “Hemodialysis Arteriovenous Shunts Dysfunction Screening with a Fractional-order Feature and Non-cooperative Game Based Decision-making Model, ” Universal Journal Medical Science, 3(2): 45-54, 2015. (ESCI)

  41. Chia-Hung Lin, Wei-Ling Chen, Chien-Ming Li, Ming-Jui Wu, Ping-Tzan Huang, Ying-Shin Chen, “Assistive technology using integrated flexible sensor and virtual alarm unit for bold leakage detection during dialysis therapy, ” Healthcare Technology Letters, pp.1-7, 2015. (ESCI)

  42. Ming-Jui Wu, Wei-Ling Chen, Chung-Dann Kan, Fan-Ming Yu, Su-Chin Wang, Hsiu-Hui Lin, and Chia-Hung Lin, “Dysfunction Screening in Experimental Arteriovenous Grafts for Hemodialysis Using Fractional-order Extractor and Color Relation Analysis, ”Cardiovascular Engineering & Technology 6(4):463-73, 2015. (SCI 2021, IF=2.305, CARDIAC & CARDIOVASCULAR SYSTEMS, Ranking 105/143, Q3)

  43. Wei-Ling Chen, Yu-Hsuan Lin, Chung-Dann Kan, Fan-Ming Yu, and Chia-Hung Lin, “Assessment of Flow Instabilities in In-Vitro Stenotic Arteriovenous Grafts Using an Equivalent Astable Multivibrator, ”IET Science, Measurement & Technology, Vol. 9, No. 6, September 2015, pp. 709-716 (SCI 2021, IF=1.517, ENGINEERING, Ranking 215/276, Q4).

  44. Yi-Chun Du, Wei-Ling Chen, Chia-Hung Lin, Chung-Dann Kan, and Ming-Jui Wu, “Residual Stenosis Estimation of Arteriovenous Graft Using a Dual-Channel Phonoangiography with Fractional-Order Features, ”IEEE Journal of Biomedical and Health Informatics, Vol. 19, No. 2, Match 2015, pp. 590-600 (SCI 2021, IF=7.021, COMPUTER SCIENCE, Ranking 23/164, Q1).

  45. Po-Hsun Sung, Chung-Dann Kan, Wei-Ling Chen, Ling-Sheng Jang and Jhing-Fa Wang, “Hemodialysis Vascular Access Stenosis Detection Using Auditory Spectro-Temporal Features of Phonoangiography,” Medical & Biological Eng & Computing, 53(5), 393-403, 2015. (SCI 2021, IF=3.079, COMPUTER SCIENCE, Ranking 62/113, Q3).

  46. Rui-Hung Kao, Wei-Ling Chen, Tzong-Shyng Leu, Tainsong Chen and Chung Dann Kan*, “Numerical Simulation of Blood Flow in Double-Barreled Cannon EVAR and its Clinical Validation, Journal of Vascular Medicine &Surgery, 2:4, 2014.

  47. Wei-Ling Chen, Chung-Dann Kan, Chia-Hung Lin, and Tainsong Chen, “A Rule-based Decision-Making Diagnosis System to Evaluate Arteriovenous Shunt Stenosis for Hemodialysis Treatment of Patients Using Fuzzy Petri Nets, ” IEEE Journal of Biomedical and Health Informatics, Vol. 18, No. 2, March 2014, pp. 703-713. (SCI 2021, IF=7.021, COMPUTER SCIENCE, Ranking 23/164, Q1).

  48. Wei-Ling Chen, Chung-Dann Kan, Chia-Hung Lin, Arteriovenous Shunt Stenosis Evaluation Using a fractional-Order Fuzzy Petri Net Based Screening System for Long-Term Hemodialysis Patients . Journal of Biomedical Science and Engineering, 7,258-275, 2014. (SCI 2021, IF=3.079, COMPUTER SCIENCE, Ranking 62/113, Q3).

  49. Yi-Chun Du, Chung-Dann Kan, Wei-Ling Chen, and Chia-Hung Lin, “Estimation of Residual Stenosis for an Arteriovenous Shunt Using a Flexible Fuzzy Classifier, ”IEEE Computing in Science & Engineering, Vol. 16, No. 6, November-December 2014, pp. 80-91 (SCI 2021, IF=2.152, COMPUTER SCIENCE, Ranking 82/113, Q3).

  50. Wei-Ling Chen, Chia-Hung Lin, Tainsong Chen, Pei-Jarn Chen, and Chung-Dann Kan, “Stenosis Detection Using Burg Method with Autoregressive Model for Hemodialysis Patients, ”Journal of Medical and Biological Engineering, Vol. 33, No. 4, September 2013, pp. 356-362 (SCI 2021, IF=2.213, ENGINEERING, Ranking 75/98, Q4).

  51. Wei-Ling Chen, Tainsong Chen, Chia-Hung Lin, Pei-Jarn Chen, and Chung-Dann Kan, “Phono-angiography with a Fractional Order Chaotic System-A Novel and Simple Algorithm in Analyzing Residual Arteriovenous Access Stenosis, ”Medical & Biological Engineering & Computing, Vol. 51, No. 9, September 2013, pp. 1011-1019 (SCI 2021, IF=3.079, COMPUTER SCIENCE, Ranking 62/113, Q3).

​​​[Conference]

  1. Wei-Ling Chen, Tsung-Lung Yang, Chung-Dann Kan, Multi-Sensor Wearable 3D-Printed Medical Device for Early Detection of Hemodialysis Access Dysfunction, 11th International MultiConference on Engineering and Technology Innovation 2022. IMETI2022 conference will take place from October 28 to November 01, 2022 in Kaohsiung, Taiwan.

  2. Wei-Ling Chen, Chung-Dann Kan, Tsung-Lung Yang, Accurate thoracic endovascular repair for acute Type A aortic dissection using 3D surgical plan to perform covered seal tri-stents, TSBME 2021 held in National Chung Hsing University, Taichung, Taiwan on November 19 - November 20, 2021

  3. Wei-Ling Chen, Tsung-Lung Yang, Chung-Dann Kan, 創建醫學3D 互動擬真教學-以心 臟血管疾病修復手術為例, TSBME 2021 held in National Chung Hsing University, Taichung, Taiwan on November 19 - November 20, 2021.

  4. Yi Lee, Wei-Ling Chen, ChungDann Kan, Accurate thoracic endovascular repair for acute Type A aortic dissection — an encouraging success, [ASVS2021 Eposter]

  5. Wei-Ling Chen, Chung-Dann Kan, Simulation-based training Program on the Learning of Open Vascular Surgery Repair for junior Vascular Surgeons, The 22nd Congress of the Asian Society for Vascular Sugery

  6. Wei-Ling Chen, Jieh-Neng Wang, Chen-Sheng Yeh, Chung-Dann Kan*, “Cilostazol-loaded Fe3O4-embedded PLGA of angiogenesis mechanism study on in-vivo PAD animal model,” The 9th WACBE World Congress on Bioengineering, 2019.

  7. Wei-Ling Chen, Chung-Dann Kan, “Using on-demand, multi-sensor wearable 3D-printed medical device for hemodialysis patient care,” 41th Biomedical engineering conference 2019, Berlin.

  8. Wei-Ling Chen, Chung-Dann Kan, “Using utrasound stimulating cilostazol-loaded Fe3O4-embedded PLGA polymersomes ofangiogenesis mechanism study on in-vivo PAOD animal model,” 26th Assembly of Advanced Material congress. 2019, June 10-13.

  9. Wei-Ling Chen, Tsung-Lung Yang, Chung-Dann Kan*, “Feasibility of hemodialysis Patient Care Using Sensors Embedded in A Personalized 3D Printed Cast ”, International Conference on Mechanics in Medicine and Biology 2018

  10. Wei-Ling Chen, Tsung-Lung Yang, Chung-Dann Kan*, “Evaluating the Feasibility of Holistic Hemodialysis Patient Care Using Sensors Embedded in A Personalized 3D Printed Cast” Sensors & Actuators Congress. Sweden, 2018.

  11. Wei-Ling Chen, Chung-Dann Kan*, “In Vitro Hemodynamic Evaluation of Right Ventricle Pulmonary Artery Continuity Reconstruction through a Trileaflet Expanded Polytetrafluoroethylene Valved Conduit”, Conf Proc IEEE Eng Med Biol Sco. Honolulu, 2018.

  12. Wei-Ling Chen, Chung-Dann Kan*, “Using Cell-Seeded Electrospun Patch for Myocardial Injury:In-Vitro and in Rat Model”, Conf Proc IEEE Eng Med Biol Sco. Honolulu, 2018.

  13. Wei-Ling Chen, Chiu-Chin Wu, Chung-Dann Kan*, “In Vitro Evaluation of Hemodynamic Performance for Right Ventricular Outflow Tract Reconstruction with Trileaflet ePTFE Valved Conduit”, World Congress on Medical Physics and Biomedical Engineering. Jue, 2018. DOI: 2018. 10.1007/978-981-10-9035-6_96.

  14. Wei-Ling Chen, Yi-Chen Mai, Chia-Hung Lin, Chung-Dann Kan*, " Fractional-order dynamic errors for analyzing residual arteriovenous access stenosis ", Machine Learning and Cybernetics (ICMLC), Jeiu, South Korea. July, 2016. DOI: 10.1109/ICMLC.2016.7860914.

  15. Wei-Ling Chen, Chiu-Chin Wu, Chung-Dann Kan*, "Using Medical Device Wearable to imporve Hemodialysis Patient's Live and Access the Holistic Health", IOP Conf. Series: Materials Science and Engineering 209(2017)012105 doi:10.1088/1757-899X/209/1/012105.

  16. Wei-Ling Chen, Bing-Feng Hung, Ming-Long Yeh, Chung Dann Kan*, “Mechanical Performances of Endovascular Aneurysm Repair Strategies with Main Aortic and Chimmy Grafts”, Conf Proc IEEE Eng Med Biol Sco. 2016 Aug:2016:4145-4148. Doi:10.1109/EMBC.2016.7591639.

  17. Wei-Ling Chen, Chung-Dann Kan*, Rui-Hung Kao, “Numerical Evaluation and Experimental Validation of Arteriovenous Access Stenosis Estimation,” International Conference on Biomedical Engineering Innovation, 2015, Taiwan, Kaohsiung.

  18. Wei-Ling Chen, Chung-Dann Kan*, Chia-Hung Lin, “Dysfunction Screening in Experimental Arteriovenous Grafts for Hemodialysis Using Inflow and Outflow Hemodynamic Game Analysis,” World Congress on Medical Physics and Biomedical Engineering, IFMBE Proceedings, Volume 51, 2015, pp 309-317, Toronto, Canada.

  19. Wei-Ling Chen, Chung-Dann Kan*, Chia-Hung Lin, “Assessment of Flow Instabilities for Stenotic Arteriovenous Grafts in Experimental Study,” International Conference on Advanced Information Technology and Application, 2014, Hong Kong.

  20. Wei-Ling Chen, Yi-Chun Du, Chia-Hung Lin, Chung-Dann Kan*, and Ming-Jui Wu, “Adaptive Network-Based Fuzzy Inference System for Arteriovenous Shunt Stenosis Screening in Long-Term Hemodialysis Treatment of Patients,” International Symposium on Computer, Consumer and Control, pp832-835, 2014,Taiwan; Taichung.

  21. Wei-Ling Chen, Chung-Dann Kan*, You-xuan Lin, Fong-Ming Yu, “Comparison phonography signal with hemodynamic parameters in different degree of stenosis in experimental study,” 9th Asian Pacific Conference on Medical and Biological Engineering, 2014, Tainan, Taiwan.

  22. Wei-Ling Chen, Chia-Hung Lin, Tainsong Chen, Chung-Dann Kan*, “The feasibility of Application Phonoangiography with Fractional Order Chaotic System in Arteriovenous Shunt Stenosis Detection”, IEEE ICOT, pp 123-126, 2013, Tainan; Taiwan.

  23. Wei-Ling Chen, Tzong-ShyngLeu, Chung-Dann Kan*, Numerical Simulation of Blood Flow crossing the Aortic arch, IEEE ICOT, pp119-122, 2013, Tainan; Taiwan.

  24. Wei-Ling Chen, Chia-Hung Lin, Tainsong Chen, Chung-Dann Kan, “Evaluation of Arteriovenous Shunt Stenosis in Hemodialysis Patients by using the Burg Method for Autoregressive Modeling”, Information technology in Medicine and Education (ITME), Vol.2, pp 560-564, 2012, Hokkaido; Japan.

  25. Wei-Ling Chen, Chung-Dann Kan, Yi-Chun Du, and Tainsong Chen. Spectral bruit analysis for evaluation of arteriovenous shunt in patientswith End-stage renal disease. The 5th World congress on bioengineering, 2011, Taiwan, Tainan.

[Book/ Chapter]

Wei-Ling Chen, Tsung-Lung Yang, Jieh-Neng Wang and Chung-Dann Kan, Application of Three-Dimensional Printing in Surgical Planning for Medical Application, DOI: http://dx.doi.org/10.5772/intechopen.109472

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