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Journal of Biomechanical Engineering|February 1, 1988
On the generalization of the Weinbaum-Jiji bioheat equation to microvessels of unequal size; the relation between the near field and local average tissue temperaturesM Zhu, S Weinbaum, L M Jiji, et al.The American Journal of Physiology|July 1, 1987
Significance of vessel size and type in vascular heat transferD E Lemons, S Chien, L I Crawshaw, et al.Journal of Biomechanical Engineering|August 1, 1997
A new fundamental bioheat equation for muscle tissue: Part I--Blood perfusion termS Weinbaum, L X Xu, L Zhu, et al.Journal of Biomechanical Engineering|February 1, 1987
A theoretical model for peripheral tissue heat transfer using the bioheat equation of Weinbaum and JijiW J Song, S Weinbaum, L M JijiJournal of Biomechanical Engineering|November 1, 1988
A combined macro and microvascular model for whole limb heat transferW J Song, S Weinbaum, L M Jiji, et al.Annals of Biomedical Engineering|July 14, 1998
1997 Whitaker Distinguished Lecture: Models to solve mysteries in biomechanics at the cellular level; a new view of fiber matrix layersS WeinbaumThe American Journal of Physiology|September 15, 2005
Defining the boundaries of physiological understanding: the benchmarks curriculum modelD E Lemons, J G GriswoldJournal of Biomechanical Engineering|August 1, 1981
Vesicle transport in arterial endothelium and the influence of mechanical factors on macromolecular permeabilityS Chien, S WeinbaumMicrovascular Research|October 21, 1999
A new view of Starling's hypothesis at the microstructural levelX Hu, S WeinbaumPageof 234