Biography

Prof. Dayong Gao

University of Washington, USA

Origincell Endowed Professor of Engineering


Email: [email protected]


Qualifications

1991 Ph.D., Concordia University, Canada

1983 B.Sc., University of Science and Technology of China (USTC)


Previous Employment

2004-present Professor and Origincell Endowed Professorship of Engineering, Department of Mechanical Engineering, University of Washington, WA, USA

2003-2004 Professor and Baxter-Healthcare Chair in Engineering, Department of Mechanical Engineering and Center for Biomedical Engineering, University of Kentucky, Lexington, KY

2003-2004 Adjunct Professor, Department of Surgery, College of Medicine, University of Kentucky, Lexington, KY

2002-2003 Professor and University Alumni Professorship, Department of Mechanical Engineering and Center for Biomedical Engineering, University of Kentucky, Lexington, KY

2001-2004 Adjunct Professor, Department of Physiology, College of Medicine, University of Kentucky, Lexington, KY

1998-2002 Associate Professor, Department of Mechanical Engineering and Center for Biomedical Engineering, University of Kentucky, Lexington, KY


Publications (Selected)

  1. Ma, R., Peng, J., Ren, S., Shu, Z., & Gao, D. (2025). Development of a 3-in-1 multifunctional cell processing system and optimization of cell type-dependent protocols for CPA addition/removal. International Communications in Heat and Mass Transfer, 161, 108511.
  2. Novokhodko, A., Du, N., Hao, S., Wang, Z., Shu, Z., Ahmad, S., & Gao, D. (2024). Predicting the Impact of Polysulfone Dialyzers and Binder Dialysate Flow Rate on Bilirubin Removal. Bioengineering, 11(12), 1262.
  3. Ma, C., Wang, K., Gao, D., & Zhao, G. (2024). Highly sensitive and selective flexible anisotropic strain sensor based on liquid metal/conductive ink for wearable applications. Composites Part B: Engineering, 281, 111538.
  4. Ahmad, S., Novokhodko, A., Liou, I. W., Smith, N. C., Carithers, R. L., Reyes, J., ... & Gao, D. (2024). Development and First Clinical Use of an Extracorporeal Artificial Multiorgan System in Acute-on-Chronic Liver Failure Patients. ASAIO Journal, 10-1097.
  5. Shao, G., Tang, H., Ren, S., Creason, S. A., Faisal, S., Gao, D., ... & Hinds, B. J. (2023). Dialysate regeneration via urea photodecomposition with TiO2 nanowires at therapeutic rates. Artificial Organs, 47(7), 1174-1183.
  6. Li, S., Li, C., Khan, M. I., Liu, J., Shi, Z., Gao, D., ... & Ding, W. (2023). Microneedle array facilitates hepatic sinusoid construction in a large-scale liver-acinus-chip microsystem. Microsystems & Nanoengineering, 9(1), 75.
  7. Sekar, P. K., Liang, X. M., Jin, Y., Zhou, X., Hu, M., Wu, Y., & Gao, D. (2023). Comprehensive multiparameter evaluation of platelet function using a highly sensitive membrane capacitance sensor. Biosensors and Bioelectronics, 228, 115192.
  8. Wang, Z., Ren, S., Shu, Z., Ma, R., & Gao, D. (2022). Screening and optimization of cryoprotective agents (CPAs) for electromagnetic heating of cryopreserved biomaterials. Cryobiology, 109, 16.
  9. Shen, L., Qin, X., Wang, M., Gao, D., Ouyang, X., & Zhao, G. (2022). Combining cooling enhancement and trehalose dehydration to enable scalable volume cryopreservation of red blood cells with low concentration of glycerol. Advanced Engineering Materials, 24(11), 2200835.
  10. Gao, B., Shu, Z., Ren, S., & Gao, D. (2022). Biobanking: a foundation of life-science research and advancement. Biosafety and Health, 4(5), 285-289.
  11. Ren, S., Shu, Z., Pan, J., Wang, Z., Ma, R., Peng, J., ... & Gao, D. (2022). Single-mode electromagnetic resonance rewarming for the cryopreservation of samples with large volumes: A numerical and experimental study. Biopreservation and Biobanking, 20(4), 317-322.
  12. Shao, G., Tang, H., Ren, S., Creason, S. A., Gao, D., Ratner, B. D., & Hinds, B. J. (2022). Dialysate regeneration with urea selective membrane coupled to photoelectrochemical oxidation system. Advanced Materials Interfaces, 9(13), 2102308.
  13. Jiang, J., Qi, F., Du, H., Xu, J., Zhou, Y., Gao, D., & Qiu, B. (2022). Super-resolution reconstruction of 3t-like images from 0.35 t MRI using a hybrid attention residual network. IEEE Access, 10, 32810-32821.
  14. Ren, S., Shu, Z., Wang, Z., Jin, Y., Ma, R., Hao, S., ... & Gao, D. (2021). Successful Vitreous Cryopreservation of Rabbit Jugular Vein Using Magnetic Nanoparticles Enhanced Single_mode Electromagnetic Resonance Rewarming System. Cryobiology, 103, 173-174.


Profile Details

https://www.me.washington.edu/facultyfinder/dayong-gao

https://scholar.google.co.uk/citations?user=7bcOPBcAAAAJ&hl=en

https://www.researchgate.net/scientific-contributions/Dayong-Gao-39173230

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