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分级吸气抑制:流速的特定影响

Graded inspiratory inhibition: specific effects of flow rate.

作者信息

Baker J P, Remmers J E, Younes M K

出版信息

J Appl Physiol Respir Environ Exerc Physiol. 1979 Apr;46(4):669-74. doi: 10.1152/jappl.1979.46.4.669.

Abstract

The effect of inspiratory flow rate on graded inspiratory inhibition was examined in barbiturate-anesthetized paralyzed cats normally ventilated by a phrenic-driven servorespirator. Periodically, the animals were inflated, for a single breath, by a constant-flow volume ramp begun at one of several delays following phrenic onset. The phrenic activity during these volume-ramp test inflations was compared with phrenic activity in the absence of volume feedback. The relation between volume and phrenic inhibition was determined for two different flow rates. Inhibition of phrenic activity began when volume above functional residual capacity (FRC) exceeded a time-dependent threshold and, beyond this threshold, continued in a graded fashion. The threshold for the first detectable inhibition declined as inspiratory time progressed both in intact animals and in pneumotaxic-lesioned animals when phrenic activity reached an apneustic plateau. Inspiratory inhibition was associated with similar lung volume above FRC regardless of whether volume resulted from high or low flow rates, suggesting that the processing of the receptor feedback information offsets flow effects on receptor firing.

摘要

在由膈神经驱动的伺服呼吸器正常通气的巴比妥麻醉麻痹猫中,研究了吸气流量对分级吸气抑制的影响。定期地,在膈神经起始后的几个延迟之一开始时,通过恒流容积斜坡对动物进行单次充气。将这些容积斜坡测试充气期间的膈神经活动与无容积反馈时的膈神经活动进行比较。确定了两种不同流量下容积与膈神经抑制之间的关系。当高于功能残气量(FRC)的容积超过一个时间依赖性阈值时,膈神经活动的抑制开始,并且超过该阈值后,以分级方式持续。当膈神经活动达到长吸平台期时,无论是完整动物还是脑桥呼吸调整中枢损伤的动物,首次可检测到抑制的阈值都随着吸气时间的延长而下降。无论容积是由高流量还是低流量产生的,吸气抑制都与高于FRC的相似肺容积相关,这表明受体反馈信息的处理抵消了流量对受体放电的影响。

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