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Article
The effect of an acute increase in central blood volume on the response of cerebral blood flow to acute hypotension
Journal of Applied Physiology
  • Shigehiko Ogoh, Toyo University
  • Ai Hirasawa, Toyo University
  • Jun Sugawara, National Institute of Advanced Industrial Science and Technology
  • Hidehiro Nakahara, Morinomiya University of Medical Sciences
  • Shinya Ueda, Morinomiya University of Medical Sciences
  • J. Kevin Shoemaker, Western University
  • Tadayoshi Miyamoto, Morinomiya University of Medical Sciences
Document Type
Article
Publication Date
1-1-2015
URL with Digital Object Identifier
10.1152/japplphysiol.00277.2015
Abstract

Copyright © 2015 the American Physiological Society. The effect of an acute increase in central blood volume on the response of cerebral blood flow to acute hypotension. J Appl Physiol 119: 527-533, 2015. First published July 9, 2015; doi:10.1152/japplphysiol.00277.2015.-The purpose of the present study was to examine whether the response of cerebral blood flow to an acute change in perfusion pressure is modified by an acute increase in central blood volume. Nine young, healthy subjects voluntarily participated in this study. To measure dynamic cerebral autoregulation during normocapnic and hypercapnic (5%) conditions, the change in middle cerebral artery mean blood flow velocity was analyzed during acute hypotension caused by two methods: 1) thighcuff occlusion release (without change in central blood volume); and 2) during the recovery phase immediately following release of lower body negative pressure (LBNP; -50 mmHg) that initiated an acute increase in central blood volume. In the thigh-cuff occlusion release protocol, as expected, hypercapnia decreased the rate of regulation, as an index of dynamic cerebral autoregulation (0.236 ± 0.018 and 0.167 ± 0.025 P = 0.024). Compared with the cuff-occlusion release, the acute increase in central blood volume (relative to the LBNP condition) with LBNP release attenuated dynamic cerebral autoregulation (P = 0.009). Therefore, the hypercapnia-induced attenuation of dynamic cerebral autoregulation was not observed in the LBNP release protocol (P = 0.574). These findings suggest that an acute change in systemic blood distribution modifies dynamic cerebral autoregulation during acute hypotension.

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Citation Information
Shigehiko Ogoh, Ai Hirasawa, Jun Sugawara, Hidehiro Nakahara, et al.. "The effect of an acute increase in central blood volume on the response of cerebral blood flow to acute hypotension" Journal of Applied Physiology Vol. 119 Iss. 5 (2015) p. 527 - 533
Available at: http://works.bepress.com/kevin-shoemaker/78/