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肢体运动对呼吸深度和频率调节的影响。

The effect of limb movements on the regulation of depth and rate of breathing.

作者信息

Agostoni E, D'Angelo E

出版信息

Respir Physiol. 1976 Jul;27(1):33-52. doi: 10.1016/0034-5687(76)90016-5.

Abstract

In anesthetized dogs and rabbits passive or active limb movements (1) shifted to the left the relationship between tidal volume (Vt) and inspiratory time (Ti), (2) lowered the relationship between expiratory time (Te) and Ti and decreased its slope, and (3) increased the output to the inspiratory muscles (Vt/Ti). These effects increased with increasing the frequency of movements. Similar effects were obtained after vagotomy. When the stimulus was started during expiration. Te was shorted in spite of the previous unaffected Ti, Arterial PCO2 during exercise was similar (active movements) or below (passive movements) control value. Since other chemical and physical humoral factors do not seem involved, the whole increase of ventilation should be produced by neurogenic stimuli. The time course of Te, Ti and VT/Ti at the onset and at the offset of limb movements indicates an abrupt and a slow component in the neurogenic drive. A single contraction of the limb during expiration of inspiration affected the timing and the VT/Ti of 3-8 breaths.

摘要

在麻醉的狗和兔子身上,被动或主动的肢体运动:(1)使潮气量(Vt)与吸气时间(Ti)之间的关系向左移动;(2)降低呼气时间(Te)与Ti之间的关系并减小其斜率;(3)增加对吸气肌的输出(Vt/Ti)。这些效应随着运动频率的增加而增强。迷走神经切断术后也得到了类似的效应。当在呼气期间开始刺激时,尽管之前Ti未受影响,但Te缩短。运动期间的动脉PCO2与对照值相似(主动运动)或低于对照值(被动运动)。由于似乎没有涉及其他化学和物理体液因素,通气的整体增加应该是由神经源性刺激产生的。肢体运动开始和结束时Te、Ti和VT/Ti的时间进程表明神经源性驱动中存在一个突然的和一个缓慢的成分。在吸气或呼气期间肢体的单次收缩影响3 - 8次呼吸的时间和VT/Ti。

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