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Am J Physiol Regul Integr Comp Physiol 289: R554-R562, 2005. First published April 21, 2005; doi:10.1152/ajpregu.00004.2005
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COMPARATIVE AND EVOLUTIONARY PHYSIOLOGY

Sympathetic {alpha}-adrenergic regulation of blood flow and volume in hamsters arousing from hibernation

P. G. Osborne,1 J. Sato,2 N. Shuke,2 and M. Hashimoto1

1Department of Physiology and 2Department of Radiology, Asahikawa Medical University School of Medicine, Asahikawa, Japan

Submitted 5 January 2005 ; accepted in final form 28 March 2005

Mammals arousing from hibernation display pronounced regional heterothermy, where the thoracic and head regions warm faster than the abdominal and hindlimb regions. We used laser-Doppler flowmetry to measure peripheral hind foot blood flow during hibernation and arousal and gamma imaging of technetium-labeled albumin to measure whole blood volume distribution in hamsters arousing from hibernation. It was discovered that the hibernating hamster responds to physical but not to sound or hypercapnic stimulation with rapid, 73% reduction of hind foot blood flow. Hind foot blood flow vasoconstriction was maintained from the onset of arousal until late in arousal when rectal temperature was rapidly increased. {alpha}-Adrenergic blockade early in arousal increased hind foot blood flow by 700%, suggesting that vasoconstriction was mediated by activation of sympathetic tone. Gamma imaging revealed that, by the early phase of arousal from hibernation, the blood volume of the body below the liver is greatly reduced, whereas blood volumes of the thorax and head are much greater than corresponding volumes in anesthetized hamsters. As arousal progresses and cardiac activity increases and regional heterothermy develops, this regional blood volume distribution is largely maintained; however, blood volume slowly decreases in the thoracic region and slowly increases in the shoulder and head regions. The rapid increase in rectal temperature, characteristic of mid- to late- arousal phases, is probably mediated, in part, by reduction of adrenergic tone on abdominal and hindlimb vasculature. Warm blood then moves into the hind body, produces an increase in temperature, blood flow, and blood volume in the hind body and compensatory reductions of blood volume in the neck, head, and thoracic regions.

laser-Doppler flowmetry; gamma imaging; torpor; vasoconstriction



Address for reprint requests and other correspondence: M. Hashimoto, Dept. of Physiology, Asahikawa Medical Univ. School of Medicine, Asahikawa, 078–8510 Japan (e-mail: mhashi{at}asahikawa-med.ac.jp)







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