Feasibility of using apparent thermophysical properties to incorporate the effect of blood perfusion in estimation of temperature in tissues

Author:

SHURRAB Mohammed1,WANG Haidong1,FUKUNAGA Takanobu1,KURATA Kosaku1,TAKAMATSU Hiroshi1

Affiliation:

1. Department of Mechanical Engineering, Kyushu University

Publisher

Japan Society of Mechanical Engineers

Subject

Engineering (miscellaneous),Instrumentation,General Materials Science,Atomic and Molecular Physics, and Optics

Reference32 articles.

1. Baish, J. W., Heat transport by countercurrent blood vessels in the presence of an arbitrary temperature gradient, Journal of Biomechanical Engineering, Vol. 112, No. 2 (1990), pp.207-211.

2. Bowman, M. F., The simultaneous measurement of thermal conductivity, thermal diffusivity, and perfusion in small volumes of tissue, Journal of Biomechanical Engineering, Vol. 106, No. 3 (1984), pp.192-197.

3. Chato, J. C., Heat transfer to blood vessels, ASME Journal of Biomechanical Engineering, Vol. 102, No. 2 (1980), pp.110-118.

4. Chen, M. M., and Holmes, K. R., Microvascular contributions in tissue heat transfer, Annals of the New York Academy of Sciences, Vol. 335, No. 1 (1980), pp.137-150.

5. Chosy, S. G., Nakada, S. Y., Lee, F. T., and Warner, T. F., Monitoring renal cryosurgery: predictors of tissue necrosis in swine, The Journal of urology, Vol. 159, No. 4 (1998), pp.1370-1374.

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