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延髓尾端腹外侧神经元是负责交感神经放电10赫兹节律的网络组成部分。

Caudal ventrolateral medullary neurons are elements of the network responsible for the 10-Hz rhythm in sympathetic nerve discharge.

作者信息

Barman S M, Orer H S, Gebber G L

机构信息

Department of Pharmacology, Michigan State University, East Lansing 48824.

出版信息

J Neurophysiol. 1994 Jul;72(1):106-20. doi: 10.1152/jn.1994.72.1.106.

Abstract
  1. This is the first study to show that caudal ventrolateral medullary (CVLM) neurons play an important role in governing the 10-Hz rhythm in sympathetic nerve discharge (SND). Spike-triggered averaging showed that the naturally occurring discharges of 66 of 246 CVLM neurons located 0-2.5 mm rostral to the obex, 4-4.25 mm lateral to the midline, and within 2 mm of the ventral surface were correlated to the 10-Hz rhythm in inferior cardiac SND of 17 urethan-anesthetized cats. 2. Frequency domain analysis was used to characterize further the relationships between SND and the discharges of 45 CVLM neurons with activity correlated to the 10-Hz rhythm in inferior cardiac nerve activity. The autospectra of the discharges of 22 of these neurons contained a sharp peak near 10 Hz (corresponding to the peak in the autospectra of SND), although the mean firing rate of these neurons was only 5.9 +/- 0.5 (SE) spikes/s. The peak coherence value relating the 10-Hz discharges of these CVLM neurons and the inferior cardiac nerve was 0.42 +/- 0.03. The autospectra for the other 23 CVLM neurons did not contain a peak near 10 Hz. Their mean firing rate was 2.3 +/- 0.5 spikes/s, and the peak coherence value relating their discharges to the 10-Hz rhythm in SND was 0.08 +/- 0.01. The coherence value was significantly different than zero in all but three cases. 3. Importantly, spike-triggered averaging and coherence analysis demonstrated that CVLM neurons with activity correlated to the 10-Hz rhythm did not have activity correlated 1:1 to the cardiac-related rhythm in SND of baroreceptor-innervated cats. Also, their discharges were not correlated to the irregular 2- to 6-Hz oscillations in SND of baroreceptor-denervated cats. These data support the hypothesis that different pools of brain stem neurons generate the 10-Hz rhythm and the 2- to 6-Hz oscillations (or cardiac-related rhythm) in SND. 4. Despite the fact that CVLM neurons with activity correlated to the 10-Hz rhythm did not have activity correlated 1:1 to the cardiac-related rhythm in SND, these neurons were influenced by baroreceptor afferent nerve activity. First, their firing rates could be decreased (n = 12) or increased (n = 2) during the pressor response induced by inflating a balloon in the aorta (aortic obstruction). Second, on occasion, the discharges of CVLM neurons and the 10-Hz rhythm in SND were entrained to a harmonic of the heart rate.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 这是第一项表明尾侧腹外侧延髓(CVLM)神经元在调控交感神经放电(SND)的10赫兹节律中起重要作用的研究。触发脉冲平均法显示,在17只经乌拉坦麻醉的猫中,位于闩前方0 - 2.5毫米、中线外侧4 - 4.25毫米以及腹侧面2毫米范围内的246个CVLM神经元中,有66个的自然放电与心脏下神经SND的10赫兹节律相关。2. 频域分析用于进一步表征SND与45个CVLM神经元放电之间的关系,这些神经元的活动与心脏下神经活动的10赫兹节律相关。其中22个神经元放电的自谱在10赫兹附近有一个尖峰(与SND自谱中的峰值相对应),尽管这些神经元的平均放电频率仅为5.9±0.5(标准误)次/秒。这些CVLM神经元10赫兹放电与心脏下神经之间的峰值相干值为0.42±0.03。另外23个CVLM神经元的自谱在10赫兹附近没有峰值。它们的平均放电频率为2.3±0.5次/秒,其放电与SND中10赫兹节律之间的峰值相干值为0.08±0.01。除三例之外,相干值均显著异于零。3. 重要的是,触发脉冲平均法和相干分析表明,活动与10赫兹节律相关的CVLM神经元在压力感受器支配的猫中其活动与SND中与心脏相关的节律并非1:1相关。而且,它们的放电与压力感受器去神经支配的猫中SND的2至6赫兹不规则振荡也不相关。这些数据支持这样的假说,即不同的脑干神经元池产生SND中的10赫兹节律和2至6赫兹振荡(或与心脏相关的节律)。4. 尽管活动与10赫兹节律相关的CVLM神经元在SND中其活动与与心脏相关的节律并非1:1相关,但这些神经元受压力感受器传入神经活动的影响。首先,在主动脉内充气球囊(主动脉阻塞)诱发的升压反应期间,它们的放电频率可能降低(n = 12)或增加(n = 2)。其次,偶尔CVLM神经元的放电和SND中的10赫兹节律会被夹带至心率的谐波。(摘要截断于400字)

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