THE MECHANICAL EFFECTS OF CONTRACTIONS ON BLOOD-FLOW TO THE MUSCLE

被引:24
|
作者
NAAMANI, R
HUSSAIN, SNA
MAGDER, S
机构
[1] ROYAL VICTORIA HOSP,DIV CRIT CARE,MONTREAL,PQ H3A 1A1,CANADA
[2] MCGILL UNIV,MEAKINS CHRISTIE LABS,MONTREAL,PQ,CANADA
关键词
SKELETAL MUSCLE; DIAPHRAGM; GASTROCNEMIUS; MUSCLE CONTRACTIONS; ELECTRICAL STIMULATION;
D O I
10.1007/BF00854966
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
To determine whether muscle contractions can increase muscle blood flow independently from metabolic factors, we isolated the vasculature of the left diaphragm or gastrocnemius muscle of anesthetized and mechanically ventilated dogs. Arterial blood flow was controlled with a constant pressure source and the arterial pressure (P-a) was decreased in steps to obtain pressure-flow relationships (P-Q). The local vasculatures were maximally dilated with nitroprusside [mean (SD) 114.0 (32.0)mu g . min(-1)], adenosine [1.43(0.41) mmol . I-1. min(-1)], and acetylcholine [1.43(0.41) mmol . I-1. min(-1)] and the P-Q with and without spontaneous contractions (n = 6), stimulated twitches (n = 12, 2-4 Hz), or tetanic trains (n = 7, 25 Hz) in the diaphragm and stimulated twitches (n = 6, 2-4 Hz), or tetanic contractions (n = 6, 12-16 trains) in the gastrocnemius were compared. The pressure axis intercept decreased (P < 0.5) with spontaneous contractions in the diaphragm and the slope did not change. At P-a of 13.3 kPa, flow increased from 36.2 (34.9) to 43.9 (38.2) ml . min(-1). 100 g(-1) (P < 0.05). During twitch contractions, the slope and intercept of the P-Q were not significantly different from vasodilatation alone, but the flow at a pressure of 13.3 kPa increased slightly. In the gastrocnemius (n = 6), continuous and intermittent tetanic contractions did not affect P-e or flow at P, of 100 mmHg (n = 6). Furthermore, increasing venous pressure to 6.7 kPa did not affect flow in this muscle. We conclude that the muscle pump has only a small direct effect on muscle blood flow and its main effect is to reduce venous pressures.
引用
收藏
页码:102 / 112
页数:11
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