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Microvascular Research|March 1, 1984
Occurrence of the "capillary contractility" phenomenon and its significance in the distribution of microvascular flow in frog skeletal muscleK Tyml, H Weigelt, D W LübbersMicrovascular Research|January 1, 1995
Microvascular response to ischemia, and endothelial ultrastructure, in disused skeletal muscleK Tyml, O Mathieu-Costello, E NobleJournal of Applied Physiology (Bethesda, Md. : 1985)|April 16, 1998
Capillary and arteriolar responses to local vasodilators are impaired in a rat model of sepsisK Tyml, J Yu, D G McCormackThe American Journal of Physiology|May 12, 1998
Local L-NAME decreases blood flow and increases leukocyte adhesion via CD18D J Mitchell, J Yu, K TymlMicrovascular Research|March 1, 1990
Microvascular response to ischemia, and tissue structure, in normal and atrophied skeletal muscleK Tyml, O Mathieu-Costello, C H BudreauMicrovascular Research|May 1, 1997
Evidence for K+ channels involvement in capillary sensing and for bidirectionality in capillary communicationK Tyml, H Song, P Munoz, et al.Advances in Experimental Medicine and Biology|January 1, 1989
Variation in axial velocity profile of red cells passing through a single capillaryC G Ellis, K Tyml, B K StrangMicrovascular Research|July 1, 1992
Distribution of red blood cell velocity in capillary network, and endothelial ultrastructure, in aged rat skeletal muscleK Tyml, O Mathieu-Costello, C H BudreauAmerican Journal of Physiology. Heart and Circulatory Physiology|April 25, 2000
Nitric oxide produced via neuronal NOS may impair vasodilatation in septic rat skeletal muscleN C Gocan, J A Scott, K TymlThe Journal of Clinical Investigation|November 1, 1994
Microvascular perfusion is impaired in a rat model of normotensive sepsisC Lam, K Tyml, C Martin, et al.Pageof 302