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去大脑猫交感神经放电、R-R间期及动脉收缩压的频谱分析

Spectral analysis of sympathetic discharge, R-R interval and systolic arterial pressure in decerebrate cats.

作者信息

Montano N, Lombardi F, Gnecchi Ruscone T, Contini M, Finocchiaro M L, Baselli G, Porta A, Cerutti S, Malliani A

机构信息

Istituto Ricerche Cardiovascolari, Medicina Interna, Università di Milano, Italy.

出版信息

J Auton Nerv Syst. 1992 Aug;40(1):21-31. doi: 10.1016/0165-1838(92)90222-3.

DOI:10.1016/0165-1838(92)90222-3
PMID:1401724
Abstract

In 19 decerebrate and artificially ventilated cats, we analyzed, with a power spectral methodology, the variability simultaneously present in R-R interval and in thoracic preganglionic sympathetic outflow. R-R interval was characterized, as already described in humans and other experimental preparations, by two rhythmic components occurring at a frequency of about 0.1 Hz (low-frequency, LF) and at one corresponding to respiratory rate (high-frequency, HF) which, in these experiments, was set at 0.32 Hz. Two similar rhythmic components were also present in the sympathetic discharge. Arterial pressure changes were produced by aorta or vena cava flow obstruction in order to produce reflex responses in sympathetic activity. Reflex sympathetic excitations induced an increase in the LF component of both R-R interval and sympathetic discharge variabilities, while the HF components were simultaneously reduced. In contrast, reflex sympathetic inhibitions were accompanied by a decrease in LF components of both variability signals, while the HF components were simultaneously increased. A significant and positive correlation was found between changes in impulse activity and the amplitude of LF component of either R-R interval or sympathetic discharge variabilities. These data support the hypothesis that the low-frequency component of R-R variability can be used as a marker of sympathetic modulation.

摘要

在19只去大脑并进行人工通气的猫身上,我们采用功率谱方法分析了R-R间期和胸段节前交感神经传出同时存在的变异性。如在人类和其他实验准备中所描述的那样,R-R间期的特征是存在两个节律成分,一个频率约为0.1Hz(低频,LF),另一个对应呼吸频率(高频,HF),在这些实验中,呼吸频率设定为0.32Hz。交感神经放电中也存在两个类似的节律成分。通过阻断主动脉或腔静脉血流来产生动脉血压变化,以便在交感神经活动中产生反射反应。反射性交感神经兴奋会导致R-R间期和交感神经放电变异性的低频成分增加,而高频成分同时减少。相反,反射性交感神经抑制则伴随着两个变异性信号低频成分的减少,而高频成分同时增加。在冲动活动的变化与R-R间期或交感神经放电变异性的低频成分幅度之间发现了显著的正相关。这些数据支持以下假设,即R-R变异性的低频成分可作为交感神经调制的标志物。

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