Arthur Fuk-Tat Mak
Affiliations: | Hong Kong Polytechnic University (Hong Kong) | ||
The Chinese University of Hong Kong, Hong Kong, Hong Kong |
Area:
Biomechanics, Tissue Engineering, Rehabilitation EngineeringGoogle:
"Arthur Fuk-Tat Mak" OR "Arthur FT Mak"Bio:
https://www.proquest.com/openview/6dad3ec20750a330e990ffb3d4064be5/1
Parents
Sign in to add mentorLeon M. Keer | grad student | 1980 | Northwestern (E-Tree) | |
(Fracture Mechanics of the PMMA/Cancellous Bone Interface) | ||||
Jack L. Lewis | grad student | 1980 | Northwestern (E-Tree) | |
Van C. Mow | post-doc | 1980-1983 | RPI (E-Tree) |
Children
Sign in to add traineeEric WC Tam | grad student | The Hong Kong Polytechnic University (E-Tree) | |
Singwan Wong | grad student | University of Illinois, Chicago (E-Tree) | |
Yifei Yao | grad student | Cleveland Clinic (E-Tree) | |
Yong-ping Zheng | grad student | The Hong Kong Polytechnic University (E-Tree) | |
Man Sang Wong | grad student | 2000 | Hong Kong Polytechnic University (Hong Kong) (E-Tree) |
Terry Kwok Keung Koo | grad student | 2002 | Hong Kong Polytechnic University (Hong Kong) (Physics Tree) |
Shan Sun | grad student | 2002 | Hong Kong Polytechnic University (Hong Kong) (Physics Tree) |
Zongbin Liu | grad student | 2010 | Hong Kong Polytechnic University (Hong Kong) (Physics Tree) |
Raymond Tong | post-doc | Chinese University of Hong Kong (E-Tree) | |
Ming Zhang | post-doc | The Hong Kong Polytechnic University (Neurotree) |
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Publications
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Yang H, Yao Y, Li H, et al. (2018) Promoting intracellular delivery of sub-25 nm nanoparticles via defined levels of compression. Nanoscale |
Wang Y, Zhang X, Huang H, et al. (2017) Osteocalcin expressing cells from tendon sheaths in mice contribute to tendon repair by activating Hedgehog signaling. Elife. 6 |
Yao Y, Mak AF. (2016) Strengthening of C2C12 mouse myoblasts against compression damage by mild cyclic compressive stimulation. Journal of Biomechanics |
Wong SW, Yao Y, Hong Y, et al. (2016) Preventive Effects of Poloxamer 188 on Muscle Cell Damage Mechanics Under Oxidative Stress. Annals of Biomedical Engineering |
Lau EO, Lo CY, Yao Y, et al. (2016) Aortic Baroreceptors Display Higher Mechanosensitivity than Carotid Baroreceptors. Frontiers in Physiology. 7: 384 |
Yao Y, Da Ong LX, Li X, et al. (2016) Effects of Biowastes Released by Mechanically Damaged Muscle Cells on the Propagation of Deep Tissue Injury: A Multiphysics Study. Annals of Biomedical Engineering |
Hong Y, Yao Y, Wong S, et al. (2016) Change in viability of C2C12 myoblasts under compression, shear and oxidative challenges. Journal of Biomechanics |
Yao Y, Lacroix D, Mak AF. (2016) Effects of oxidative stress-induced changes in the actin cytoskeletal structure on myoblast damage under compressive stress: confocal-based cell-specific finite element analysis. Biomechanics and Modeling in Mechanobiology |
Yao Y, Xiao Z, Wong S, et al. (2015) The effects of oxidative stress on the compressive damage thresholds of C2C12 mouse myoblasts: implications for deep tissue injury. Annals of Biomedical Engineering. 43: 287-96 |
Wong SW, Sun S, Cho M, et al. (2015) H2O2 Exposure Affects Myotube Stiffness and Actin Filament Polymerization. Annals of Biomedical Engineering. 43: 1178-88 |