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耦合振荡器系统中一种不寻常的相位行走形式。

An unusual form of phase walk in a system of coupled oscillators.

作者信息

Gebber Gerard L, Das Mahasweta, Barman Susan M

机构信息

Department of Pharmacology and Toxicology, Michigan State University, East Lansing, MI 48824-1317, USA.

出版信息

J Biol Rhythms. 2004 Dec;19(6):542-50. doi: 10.1177/0748730404268053.

Abstract

The authors describe an unusual form of phase walk (i.e., a progressive change in phase angle between coupled oscillators) using the 10-Hz rhythmic discharges of the inferior cardiac and vertebral postganglionic sympathetic nerves (CN and VN, respectively) in hypercapnic, baroreceptor-denervated, and vagotomized cats anesthetized with urethane. Unlike phase walk ascribable to weakened coupling (desynchronization of oscillators), the phase walk of VN 10- Hz activity relative to CN10-Hz activity 1) recurred on the time scale of the respiratory cycle, 2) was bidirectional with CN-VN phase angle increasing during expiration and decreasing during inspiration, and 3) occurred over a range equivalent to one-half the period of the 10-Hz rhythm rather than a full cycle. Moreover, this form of phase walk occurred during strong coupling of the 10-Hz oscillators, as reflected by CN-VN coherence values approaching 1.0. The authors propose that the bidirectional phase walk reflects a state of strong coupling of the 10-Hz oscillators controlling the CN and VN, the angle of which is reset from cycle to cycle by the continuously changing level of activity in their respiratory inputs. In addition, the data demonstrate that frequency and amplitude modulation of sympathetic nerve discharge can be independently regulated by respiratory inputs.

摘要

作者利用在高碳酸血症、压力感受器去神经支配且迷走神经切断的、用乌拉坦麻醉的猫中,心脏下神经和椎旁节后交感神经(分别为CN和VN)10赫兹的节律性放电,描述了一种不寻常的相位游走形式(即耦合振荡器之间相位角的渐进变化)。与归因于耦合减弱(振荡器去同步)的相位游走不同,VN 10赫兹活动相对于CN 10赫兹活动的相位游走:1)在呼吸周期的时间尺度上反复出现;2)是双向的,CN-VN相位角在呼气时增加,在吸气时减小;3)发生在相当于10赫兹节律周期一半的范围内,而不是一个完整周期。此外,这种相位游走形式发生在10赫兹振荡器的强耦合期间,这由CN-VN相干值接近1.0反映出来。作者提出,双向相位游走反映了控制CN和VN的10赫兹振荡器的强耦合状态,其角度在每个周期通过其呼吸输入中不断变化的活动水平而重置。此外,数据表明交感神经放电的频率和幅度调制可由呼吸输入独立调节。

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