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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, 1994
A fiber matrix model for the growth of macromolecular leakage spots in the arterial intimaY Huang, D Rumschitzki, S Chien, et al.Journal of Biomechanical Engineering|February 1, 1991
A mathematical model for the receptor mediated cellular regulation of the low density lipoprotein metabolismF Yuan, S Weinbaum, R Pfeffer, et al.Tissue Engineering. Part C, Methods|July 29, 2009
Monitoring collagen transcription by vascular smooth muscle cells in fibrin-based tissue constructsJustin S Weinbaum, Jie Qi, Robert T TranquilloJournal of Biomechanical Engineering|August 1, 1981
Diffusion of macromolecules across the arterial wall in the presence of multiple endothelial injuriesR Pfeffer, P Ganatos, A Nir, et al.Journal of Biomechanical Engineering|November 1, 1984
Theory and experiment for the effect of vascular microstructure on surface tissue heat transfer--Part II: Model formulation and solutionL M Jiji, S Weinbaum, D E LemonsJournal of Biomechanical Engineering|February 1, 1990
An evaluation of the Weinbaum-Jiji bioheat equation for normal and hyperthermic conditionsC K Charny, S Weinbaum, R L LevinJournal of Biomechanical Engineering|November 1, 1984
Theory and experiment for the effect of vascular microstructure on surface tissue heat transfer--Part I: Anatomical foundation and model conceptualizationS Weinbaum, L M Jiji, D E LemonsThe American Journal of Physiology|December 1, 1995
A diffusion wake model for tracer ultrastructure-permeability studies in microvesselsB M Fu, F E Curry, S WeinbaumThe American Journal of Physiology|April 1, 1997
A fiber matrix model for the filtration through fenestral pores in a compressible arterial intimaY Huang, D Rumschitzki, S Chien, et al.Pageof 171