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人体动态运动期间颈动脉压力反射的重置

Resetting of the carotid arterial baroreflex during dynamic exercise in humans.

作者信息

Norton K H, Boushel R, Strange S, Saltin B, Raven P B

机构信息

Department of Integrative Physiology and Cardiovascular Research Institute, University of North Texas Health Science Center, Fort Worth, Texas 76107-2609, USA.

出版信息

J Appl Physiol (1985). 1999 Jul;87(1):332-8. doi: 10.1152/jappl.1999.87.1.332.

Abstract

Recent investigations have demonstrated that at the onset of low-to-moderate-intensity leg cycling exercise (L) the carotid baroreflex (CBR) was classically reset in direct relation to the intensity of exercise. On the basis of these data, we proposed that the CBR would also be classically reset at the onset of moderate- to maximal-intensity L exercise. Therefore, CBR stimulus-response relationships were compared in seven male volunteers by using the neck pressure-neck suction technique during dynamic exercise that ranged in intensity from 50 to 100% of maximal oxygen uptake (VO(2 max)). L exercise alone was performed at 50 and 75% VO(2 max), and L exercise combined with arm (A) exercise (L + A) was performed at 75 and 100% VO(2 max). O(2) consumption and heart rate (HR) increased in direct relation with the increases in exercise intensity. The threshold and saturation pressures of the carotid-cardiac reflex at 100% VO(2 max) were >75% VO(2 max), which were in turn >50% VO(2 max) (P < 0.05), without a change in the maximal reflex gain (G(max)). In addition, the HR response value at threshold and saturation at 75% VO(2 max) was >50% VO(2 max) (P < 0.05) and 100% VO(2 max) was >75% VO(2 max) (P < 0.07). Similar changes were observed for the carotid-vasomotor reflex. In addition, as exercise intensity increased, the operating point (the prestimulus blood pressure) of the CBR was significantly relocated further from the centering point (G(max)) of the stimulus-response curve and was at threshold during 100% VO(2 max). These findings identify the continuous classic rightward and upward resetting of the CBR, without a change in G(max), during increases in dynamic exercise intensity to maximal effort.

摘要

近期研究表明,在低至中等强度的腿部骑行运动(L)开始时,颈动脉压力反射(CBR)会按照与运动强度的直接关系进行经典性重调。基于这些数据,我们推测在中等至最大强度的L运动开始时,CBR也会进行经典性重调。因此,在7名男性志愿者中,通过使用颈部加压 - 颈部抽吸技术,在强度范围为最大摄氧量(VO₂max)的50%至100%的动态运动过程中,比较了CBR刺激 - 反应关系。单独进行L运动时的强度为VO₂max的50%和75%,L运动与手臂(A)运动相结合(L + A)时的强度为VO₂max的75%和100%。耗氧量和心率(HR)随着运动强度的增加而直接升高。在VO₂max为100%时,颈动脉 - 心脏反射的阈值和饱和压力>VO₂max的75%,而VO₂max的75%又>VO₂max的50%(P < 0.05),最大反射增益(G(max))无变化。此外,在VO₂max为75%时,阈值和饱和时的HR反应值>VO₂max的50%(P < 0.05),在VO₂max为100%时>VO₂max的75%(P < 0.07)。颈动脉 - 血管运动反射也观察到类似变化。此外,随着运动强度增加,CBR的工作点(刺激前血压)明显从刺激 - 反应曲线的中心点(G(max))进一步右移,并且在VO₂max为100%时处于阈值。这些发现表明,在动态运动强度增加至最大努力的过程中,CBR持续进行经典性的向右向上重调,而G(max)无变化。

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