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猫气道阻塞期间膈神经活动和呼吸压力的时间进程。

Time course of phrenic activity and respiratory pressures during airway occlusion in cats.

作者信息

Siafakas N M, Chang H K, Bonora M, Gautier H, Milic-Emili J, Duron B

出版信息

J Appl Physiol Respir Environ Exerc Physiol. 1981 Jul;51(1):99-108. doi: 10.1152/jappl.1981.51.1.99.

Abstract

The morphology of integrated ("moving time average") phrenic electroneurograms (EPHR) and of tracheal (Ptr) and transdiaphragmatic (Pdi) pressure waves during occluded inspirations was studied in eight anesthetized cats breathing air and various hypercapnic and hypoxic mixtures. The shape of the rising part of EPR-, Ptr-, and Pdi-time profiles varied between animals (from convex to concave), but in each animal it remained virtually unchanged by hypoxia and hypercapnia. The shape of the Ptr and Pdi occlusion waves reflected the shape of EPHR. The relationship of EPHR to Pdi and Ptr did not change with chemical drive. It is concluded that central inspiratory activity (CIA) (as reflected by EPHR and its mechanical transforms Pdi and Ptr) increases in amplitude with stimulation of breathing but that the profile of CIA remains essentially unchanged. However, substantial differences in the time course development of phrenic activity, Pdi, and Ptr exist between cats. The fixed interrelationships among EPHR, Pdi, and Ptr indicate a proportional increase in activity among all inspiratory muscles with increased chemical drive.

摘要

在八只吸入空气以及各种高碳酸血症和低氧混合气体的麻醉猫中,研究了阻塞性吸气期间整合(“移动时间平均值”)膈神经电图(EPHR)以及气管压力(Ptr)和跨膈压力(Pdi)波的形态。EPR、Ptr和Pdi时间曲线上升部分的形状在不同动物之间有所不同(从凸形到凹形),但在每只动物中,低氧和高碳酸血症对其几乎没有影响。Ptr和Pdi阻塞波的形状反映了EPHR的形状。EPHR与Pdi和Ptr的关系不会因化学驱动而改变。得出的结论是,中枢吸气活动(CIA)(如EPHR及其机械转换形式Pdi和Ptr所反映的)随着呼吸刺激而振幅增加,但CIA的轮廓基本保持不变。然而,猫之间膈神经活动、Pdi和Ptr的时间进程发展存在显著差异。EPHR、Pdi和Ptr之间固定的相互关系表明,随着化学驱动增加,所有吸气肌肉的活动呈比例增加。

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