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压力感受器对人窦房结的抑制作用:刺激强度、持续时间及压力变化速率的重要性。

Baroreflex inhibition of the human sinus node: importance of stimulus intensity, duration, and rate of pressure change.

作者信息

Eckberg D L

出版信息

J Physiol. 1977 Aug;269(3):561-77. doi: 10.1113/jphysiol.1977.sp011915.

Abstract
  1. Carotid baroreceptors were stimulated with electronically controlled neck suction in five healthy young men and pulse interval prolongation was measured. Timing of the onset of stimuli in relation to cardiac activity was held constant, and stimulus intensity, duration, and dP/dt were varied independently. 2. In the subjects studied, sinus node responses to neck suction were proportional to dP/dt. However, variations of stimulus dP/dt within or above the normal range for arterial dP/dt did not influence the magnitude of integrated baroreflex responses, or the earliest portion of baroreflex sinus node inhibition. 3. Carotid baroreflex responses were linear over a wide range which extended beyond the normal range for human systolic arterial pressures. 4. Saturation of the carotid baroreceptor-cardiac reflex occurred at distending pressures of about 160 mmHg. 5. The average baroreflex responses of the group studied were highly reproducible over time. 6. Baroreflex gain correlated very strongly with base line pulse interval. 7. The magnitude of baroreflex responses increased linearly with the duration of carotid sinus distension and reached a maximum level with stimuli lasting 0-5 sec or more. 8. The results demonstrate that carotid sinus transfer characteristics can be measured in normal man, and that human response patterns are strikingly similar to those observed earlier in experimental animals.
摘要
  1. 对5名健康年轻男性通过电子控制颈部抽吸刺激颈动脉压力感受器,并测量脉搏间期延长情况。刺激开始时间与心脏活动的关系保持恒定,刺激强度、持续时间和dP/dt独立变化。2. 在研究对象中,窦房结对颈部抽吸的反应与dP/dt成正比。然而,刺激dP/dt在动脉dP/dt的正常范围内或以上变化时,并不影响压力感受性反射综合反应的幅度,也不影响压力感受性反射窦房结抑制的最早部分。3. 颈动脉压力感受性反射在很宽的范围内呈线性,该范围超出了人体收缩期动脉压的正常范围。4. 颈动脉压力感受器 - 心脏反射在约160 mmHg的扩张压力下出现饱和。5. 所研究组的平均压力感受性反射反应随时间具有高度可重复性。6. 压力感受性反射增益与基线脉搏间期密切相关。7. 压力感受性反射反应的幅度随颈动脉窦扩张持续时间呈线性增加,在持续0 - 5秒或更长时间的刺激下达到最大水平。8. 结果表明,在正常人体中可以测量颈动脉窦传递特性,并且人体的反应模式与早期在实验动物中观察到的模式惊人地相似。

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