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Evidence for increased perfusion heterogeneity in skeletal muscle during reduced flow.

作者信息

Tyml K, Mikulash K

机构信息

Department of Medical Biophysics, University of Western Ontario, London, Canada.

出版信息

Microvasc Res. 1988 May;35(3):316-24. doi: 10.1016/0026-2862(88)90086-6.

Abstract

Recently, it has been demonstrated (D. Cousineau, C. P. Rose, D. Lamoureux, and C. A. Goresky, 1983, Cir. Res., 53, 719-730; K. Tyml, 1986, Microvasc. Res., 32, 84-98) that heterogeneity of microvascular flow depends on tissue metabolism. The objective of this study was to examine the possibility that, independent of metabolism, heterogeneity is also a function of flow. Using an intravital video-microscopic approach, we evaluated heterogeneity in the frog sartorius muscle at different flow rates while maintaining the muscle in the same exercised state. The flow was altered via partial aortal clamping. Exercised state was achieved by direct electrical stimulation. Heterogeneity of flow was evaluated in terms of the coefficient of variation (CV = SD/mean) computed from simultaneous measurements of red cell velocities in a capillary network. In addition to velocity analysis, the number of perfused capillaries crossing a 1-mm test line on the video monitor was counted. Among 10 networks from eight muscles, the overall preocclusion hyperemic velocity and CV were 0.42 +/- 0.15 SD mm/sec and 40 +/- 12%, respectively. The overall capillary count was 16.4 +/- 3.0 cap/mm. In all networks, increasing clamping reduced the mean hyperemic velocity and increased CV. For reductions to less than 50% of the preocclusion velocity, CV increased significantly (P less than 0.05), up to 88%. In 6 networks only, increasing clamping reduced capillary count, down to 10.2 cap/mm. This reduction was due to flow stoppages in capillaries situated randomly throughout the network. The data demonstrate for the first time that, for the same exercised state, heterogeneity of velocity depends on the mean velocity.(ABSTRACT TRUNCATED AT 250 WORDS)

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