Weinbaum S, Jiji L M, Lemons D E
Department of Mechanical Engineering, City College of the City University of New York, NY 10031.
J Biomech Eng. 1992 Nov;114(4):539-42. doi: 10.1115/1.2894108.
The microvascular organization and thermal equilibration of the primary and secondary arteries and veins that comprise the bleed off circulation to the muscle fibers from the parent countercurrent supply artery and veins are analyzed. The blood perfusion heat source term in the tissue energy equation is shown to be related to this vascular organization and to undergo a fundamental change in behavior as one proceeds from the more peripheral tissue, where the perfusion term is proportional to the Ta--Tv difference in the parent supply vessels, to the deeper tissue layers where the bleed off vessels themselves form a branching countercurrent system for each muscle tissue cylinder and the venous return temperature can vary between the local tissue temperature and Ta. The consequences of this change in behavior are examined for the Weinbaum-Jiji bioheat equation and a modified expression for the effective conductivity of perfused tissue is derived for countercurrent bleed off exchange.
分析了构成从母逆流供应动脉和静脉向肌肉纤维供血循环的一级和二级动脉及静脉的微血管组织和热平衡。组织能量方程中的血液灌注热源项被证明与这种血管组织有关,并且当从较外周组织(灌注项与母供应血管中的Ta - Tv差值成正比)向更深的组织层推进时,其行为会发生根本性变化,在更深的组织层中,供血血管本身为每个肌肉组织圆柱体形成一个分支逆流系统,静脉回流温度可在局部组织温度和Ta之间变化。针对Weinbaum-Jiji生物热方程研究了这种行为变化的后果,并推导了用于逆流供血交换的灌注组织有效导率的修正表达式。