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Circulation Research|November 1, 1987
Propagation of vasodilation in resistance vessels of the hamster: development and review of a working hypothesisS S Segal, B R DulingThe American Journal of Physiology|March 1, 1997
Acetylcholine induces conducted vasodilation by nitric oxide-dependent and -independent mechanismsM P Doyle, B R DulingJournal of Vascular Research|July 1, 1992
Access of blood-borne vasoconstrictors to the arteriolar smooth muscleM J Lew, B R DulingThe American Journal of Physiology|February 1, 1991
Ca2+ sensitivity of isolated arterioles from the hamster cheek pouchM R Hynes, B R DulingThe American Journal of Physiology|August 13, 1999
Permeation of the luminal capillary glycocalyx is determined by hyaluronanC B Henry, B R DulingMicrovascular Research|September 1, 1988
A study of the functional elements regulating capillary perfusion in striated muscleJ B Delashaw, B R DulingMicrovascular Research|May 1, 1989
Role of flow dispersion in the computation of microvascular flows by the dual-slit methodJ S Lee, B R DulingThe American Journal of Physiology|March 11, 1984
Effect of norepinephrine on penetrating arterioles of rat cerebral cortexR G Dacey, B R DulingMicrovascular Research|January 1, 1984
Distribution of capillary blood flow in the microcirculation of the hamster: an in vivo study using epifluorescent microscopyD H Damon, B R DulingThe American Journal of Physiology|November 1, 1984
Morphology of the constricted arteriolar wall: physiological implicationsJ E Greensmith, B R DulingPageof 16