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Annual Review of Biomedical Engineering|July 12, 2001
Micro- and nanomechanics of the cochlear outer hair cellW E Brownell, A A Spector, R M Raphael, et al.Plos One|November 17, 2011
A two-compartment model of VEGF distribution in the mousePhillip Yen, Stacey D Finley, Marianne O Engel-Stefanini, et al.News in Physiological Sciences : an International Journal of Physiology Produced Jointly by the International Union of Physiological Sciences and the American Physiological Society|December 7, 2017
Role of Microvessels in Oxygen Supply to TissueMary L Ellsworth, Christopher G Ellis, Aleksander S Popel, et al.Microvascular Research|May 1, 1996
Oxygen tension profiles in isolated hamster retractor muscle at different temperaturesA Dutta, L Wang, H Meng, et al.Wiley Interdisciplinary Reviews. Systems Biology and Medicine|October 5, 2010
Systems biology of pro-angiogenic therapies targeting the VEGF systemFeilim Mac Gabhann, Amina A Qutub, Brian H Annex, et al.Journal of Cellular and Molecular Medicine|November 19, 2013
A systems biology view of blood vessel growth and remodellingElizabeth A Logsdon, Stacey D Finley, Aleksander S Popel, et al.IEEE Transactions on Bio-Medical Engineering|July 9, 1999
Canine sternal force-displacement relationship during cardiopulmonary resuscitationK G Gruben, H R Halperin, A S Popel, et al.Journal of Applied Physiology (Bethesda, Md. : 1985)|October 1, 1994
Capacity for red blood cell aggregation is higher in athletic mammalian species than in sedentary speciesA S Popel, P C Johnson, M V Kameneva, et al.The American Journal of Physiology|July 1, 1987
Quantitative analysis of arteriolar network architecture in cat sartorius muscleA Koller, B Dawant, A Liu, et al.The American Journal of Physiology|June 1, 1988
Distribution of vascular resistance in terminal arteriolar networks of cat sartorius muscleA S Popel, A Liu, B Dawant, et al.Pageof 35