職稱:副教授
電子郵件:cheyuntu.edu.tw
電話:02-33665653
辦公室:應用力學館419室
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  • 國立臺灣大學  應用力學研究所  博士  2013
  • 國立臺灣大學  醫學工程學研究所  碩士  2008
  • 國立臺灣大學  機械工程學系  學士  2006
  • 副教授 國立臺灣大學 應用力學研究所 (2023年8月起迄今)
  • 助理教授 國立臺灣大學 應用力學研究所 (2019年2月至2023年7月)
  • 博士後研究員 美國密西根大學 生醫工程學系 (2018年4月至2019年1月)
  • 博士後研究員 美國賓州州立大學 機械與核子工程學系 (2017年1月至2018年4月)
  • 博士後研究員 國立臺灣大學 醫學院醫學系骨科 (2013年9月至2016年10月)
  • 實習生 工業技術研究院 生醫與醫材研究所 (2010年7月至2010年8月 & 2011年4月至2011年9月)

黏彈性力學
固體力學
生物力學
超音波影像
運動醫學
動態系統與最佳控制

  1. 於2013年6月1日榮獲中華民國斐陶斐榮譽學會國立臺灣大學分會之榮譽會員
  2. 107年度科技部補助赴國外從事博士後研究獎學金
  3. 國立臺灣大學新聘特殊優秀人才獎勵 (108年2月1日至109年1月31日、109年2月1日至110年1月31日、110年2月1日至111年1月31日,共三年)
  4. 參加國際研討會10th International Multi-Conference on Engineering and Technology Innovation 2021榮獲Best Paper Award (Honorable Mention)
  5. 長年擔任超音波領域之知名國際學術期刊Ultrasound in Medicine and Biology的論文審查委員,並獲邀加入該期刊的Editorial Board Membership (2021年1月1日起迄今)
  1. Che-Yu Lin*, Ke-Vin Chang, Yi-Chung Shu. Effect of platelet gel on tendon and ligament healing for humans in vivo: a narrative review. Submitted.
  2. Che-Yu Lin*, Yi-Ju Chou. Burger’s model is not just a viscoelastic liquid model but a model for both viscoelastic liquids and solids. Submitted.
  3. Wei-Ting Wu, Che-Yu Lin, Yi-Chung Shu, Peng-Chieh Shen, Ting-Yu Lin, Ke-Vin Chang, Levent Özçakar (2023). The potential of ultrasound radiomics in carpal tunnel syndrome diagnosis: a systematic review and meta-analysis. Diagnostics, vol.13, no.20, pp.3280.
  4. Chun-Ting Liu, Jiashing Yu, Min-Hsuan Lin, Kai-Hsiang Chang, Che-Yu Lin, Nai-Chen Cheng, Po-I Wu, Chun-Wei Huang, Pin-Yu Zhang, Min-Tzu Hung, Yu-Sheng Hsiao (2023). Biophysical electrical and mechanical stimulations for promoting chondrogenesis of stem cells on PEDOT: PSS conductive polymer scaffolds. Biomacromolecules, vol.24, no.8, pp.3858-3871.
  5. Yi-Chung Shu, Yu-Cheng Lo, Hsiao-Chi Chiu, Lan-Rong Chen, Che-Yu Lin, Wei-Ting Wu, Levent Özçakar, Ke-Vin Chang (2023). Deep learning algorithm for predicting subacromial motion trajectory: dynamic shoulder ultrasound analysis. Ultrasonics, vol.134, pp.107057.
  6. Wei-Ting Wu, Che-Yu Lin, Yi-Chung Shu, Lan-Rong Chen, Levent Özçakar, Ke-Vin Chang (2023). Subacromial motion metrics in painful shoulder impingement: a dynamic quantitative ultrasonography analysis. Archives of Physical Medicine and Rehabilitation, vol.104, no.2, pp.260-269.
  7. Jia-Chi Wang, Yi-Chung Shu, Che-Yu Lin, Wei-Ting Wu, Lan-Rong Chen, Yu-Cheng Lo, Hsiao-Chi Chiu, Levent Özçakar, Ke-Vin Chang (2023). Application of deep learning algorithms in automatic sonographic localization and segmentation of the median nerve: a systematic review and meta-analysis. Artificial Intelligence in Medicine, vol.137, pp.102496.
  8. Che-Yu Lin* (2023). Rethinking and researching the physical meaning of the standard linear solid model in viscoelasticity. Mechanics of Advanced Materials and Structures. Has been published online but not yet published in a volume and issue.
  9. Che-Yu Lin*, Wei-Chun Chen (2023). How complex viscoelastic behaviors within a viscoelastic three-layer structure affect the measurement accuracy of ultrasound viscoelastic creep imaging. Mechanics of Advanced Materials and Structures, vol.30, no.10, pp.2064-2086.
  10. Che-Yu Lin* (2022). Treatment effect of platelet gel on reconstructing bone defects and nonunions: a review of in vivo human studies. International Journal of Molecular Sciences, vol.23, no.19, pp.11377.
  11. Che-Yu Lin*, Yi-Cheng Chen, Chin Pok Pang, Tung-Han Yang (2022). Measurement accuracy of ultrasound viscoelastic creep imaging in measuring the viscoelastic properties of heterogeneous materials. Advances in Technology Innovation, vol.7, no.4, pp.229-241. (This paper is awarded one of the best papers as an honorable mention in the 10th International Multi-Conference on Engineering and Technology Innovation 2021)
  12. Che-Yu Lin*, Yi-Cheng Chen, Chen-Hsin Lin, Ke-Vin Chang (2022). Constitutive equations for analyzing stress relaxation and creep of viscoelastic materials based on standard linear solid model derived with finite loading rate. Polymers, vol.14, no.10, pp.2124.
  13. Che-Yu Lin, Pei-Yu Chen, Shin-Han Wu, Yio-Wha Shau, Chung-Li Wang (2022). Biomechanical effects of plastic heel cup on plantar fasciitis patients evaluated by ultrasound shear wave elastography. Journal of Clinical Medicine, vol.11, no.8, pp.2150.
  14. Che-Yu Lin, Chia-Ching Chou, Lan-Rong Chen, Wei-Ting Wu, Po-Cheng Hsu, Tung-Han Yang, Ke-Vin Chang (2022). Quantitative analysis of dynamic subacromial ultrasonography: reliability and influencing factors. Frontiers in Bioengineering and Biotechnology, vol.10, pp.830508.
  15. Fang-Jung Chen, Yu-Sheng Hsiao, I-Hsiang Liao, Chun-Ting Liu, Po-I Wu, Che-Yu Lin, Nai-Chen Cheng, Jiashing Yu (2021). Rational design of a highly porous electronic scaffold with concurrent enhancement in cell behaviors and differentiation under electrical stimulation. Journal of Materials Chemistry B, vol.9, no.37, pp.7674-7685.
  16. Che-Yu Lin*, Jiunn-Horng Kang (2021). Mechanical properties of compact bone defined by the stress-strain curve measured using uniaxial tensile test: a concise review and practical guide. Materials, vol.14, no.15, pp.4224.
  17. Che-Yu Lin*, Siang-Rong Lin (2021). Investigating the accuracy of ultrasound viscoelastic creep imaging for measuring the viscoelastic properties of a single-inclusion phantom. International Journal of Mechanical Sciences, vol.199, pp.106409.
  18. Che-Yu Lin*, Ke-Vin Chang (2021). Effects of loading and boundary conditions on the performance of ultrasound compressional viscoelastography: a computational simulation study to guide experimental design. Materials, vol.14, no.10, pp.2590.
  19. Ke-Vin Chang, Wei-Ting Wu, Yi-Hsiang Chiu, Che-Yu Lin (2021). Letter to editor: comment on reliability of real-time sonoelastography in the diagnosis of supraspinatus tendinopathy. Ultrasound Quarterly, vol.37, no.1, pp.75-76.
  20. Che-Yu Lin* (2020). Ramp-creep ultrasound viscoelastography for measuring viscoelastic parameters of materials. Materials, vol.13, no.16, pp.3593.
  21. Ke-Vin Chang, Wei-Ting Wu, Jeng Chen, Che-Yu Lin (2020). Strain ratio of ultrasound elastography for the evaluation of tendon elasticity. Korean Journal of Radiology, vol.21, no.3, pp.384-385.
  22. Che-Yu Lin* (2020). Alternative form of standard linear solid model for characterizing stress relaxation and creep: including a novel parameter for quantifying the ratio of fluids to solids of a viscoelastic solid. Frontiers in Materials, vol.7, pp.11.
  23. Seyedali Sadeghi, Che-Yu Lin, Daniel H Cortes (2018). Narrowband shear wave generation using sinusoidally modulated acoustic radiation force. IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control, vol.66, no.2, pp.264-272.
  24. Seyedali Sadeghi, Che-Yu Lin, Dov A Bader, Daniel H Cortes (2018). Evaluating changes in shear modulus of elbow ulnar collateral ligament in overhead throwing athletes over the course of a competitive season. Journal of Engineering and Science in Medical Diagnostics and Therapy, vol.1, no.4, pp.041008.
  25. Chueh-Hung Wu, Che-Yu Lin, Ming-Yen Hsiao, Yu-Hsuan Cheng, Wen-Shiang Chen, Tyng-Guey Wang (2018). Altered stiffness of microchamber and macrochamber layers in the aged heel pad: shear wave ultrasound elastography evaluation. Journal of the Formosan Medical Association, vol.117, no.5, pp.434-439.
  26. Che-Yu Lin, Seyedali Sadeghi, Dov A Bader, Daniel H Cortes (2018). Ultrasound shear wave elastography of the elbow ulnar collateral ligament: reliability test and a preliminary case study in a baseball pitcher. Journal of Engineering and Science in Medical Diagnostics and Therapy, vol.1, no.1, pp.011004.
  27. Che-Yu Lin*, Hung-Jui Chuang, Daniel H Cortes (2017). Investigation of the optimum heel pad stiffness: a modeling study. Australasian Physical & Engineering Sciences in Medicine, vol.40, pp.585-593.
  28. Che-Yu Lin, Chueh-Hung Wu, Levent Özçakar (2017). Restoration of heel pad elasticity in heel pad syndrome evaluated by shear wave elastography. American Journal of Physical Medicine & Rehabilitation, vol.96, no.5, pp.e96.
  29. Che-Yu Lin, Pei-Yu Chen, Yio-Wha Shau, Hao-Chih Tai, Chung-Li Wang (2017). Spatial-dependent mechanical properties of the heel pad by shear wave elastography. Journal of Biomechanics, vol.53, pp.191-195.
  30. Che-Yu Lin, Pei-Yu Chen, Yio-Wha Shau, Chung-Li Wang (2017). An artifact in supersonic shear wave elastography. Ultrasound in Medicine & Biology, vol.43, no.2, pp.517-530.
  31. Ming-Yen Hsiao, Yi-Ching Chen, Che-Yu Lin, Wen-Shian Chen, Tyng-Guey Wang (2015). Reduced patellar tendon elasticity with aging: in vivo assessment by shear wave elastography. Ultrasound in Medicine & Biology, vol.41, no.11, pp.2899-2905.
  32. Che-Yu Lin, Chen-Chiang Lin, Yang-Chen Chou, Pei-Yu Chen, Chung-Li Wang (2015). Heel pad stiffness in plantar heel pain by shear wave elastography. Ultrasound in Medicine & Biology, vol.41, no.11, pp.2890-2898.
  33. Che-Yu Lin, Yio-Wha Shau, Chung-Li Wang, Jiunn-Horng Kang (2015). Modeling and analysis of the viscoelastic response of the ankle ligament complex in inversion ankle sprain. Annals of Biomedical Engineering, vol.43, pp.2047-2055.
  34. Che-Yu Lin, Jiunn-Horng Kang, Chung-Li Wang, Yio-Wha Shau (2015). Relationship between viscosity of the ankle joint complex and functional ankle instability for inversion ankle sprain patients. Journal of Science and Medicine in Sport, vol.18, no.2, pp.128-132.
  35. Che-Yu Lin, Yio-Wha Shau, Chung-Li Wang, Huei-Ming Chai, Jiunn-Horng Kang (2013). Quantitative evaluation of the viscoelastic properties of the ankle joint complex in patients suffering from ankle sprain by the anterior drawer test. Knee Surgery, Sports Traumatology, Arthroscopy, vol.21, pp.1396-1403.
  36. Gin-Shin Chen, Che-Yu Lin, Jong Seob Jeong, Jonathan M Cannata, Win-Li Lin, Hsu Chang, K Kirk Shung (2012). Design and characterization of dual-curvature 1.5-dimensional high-intensity focused ultrasound phased-array transducer. IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control, vol.59, no.1, pp.150-155.

Note: The asterisk * right to the name Che-Yu Lin indicates that Prof. Che-Yu Lin is the corresponding author of that paper.

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