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延髓中缝神经元与猫呼吸运动模式的压力感受器调节

Medullary raphe neurones and baroreceptor modulation of the respiratory motor pattern in the cat.

作者信息

Lindsey B G, Arata A, Morris K F, Hernandez Y M, Shannon R

机构信息

Department of Physiology and Biophysics and Neuroscience Program, University of South Florida Health Sciences Center, Tampa, FL 33612-4799, USA.

出版信息

J Physiol. 1998 Nov 1;512 ( Pt 3)(Pt 3):863-82. doi: 10.1111/j.1469-7793.1998.863bd.x.

Abstract
  1. Perturbations of arterial blood pressure change medullary raphe neurone activity and the respiratory motor pattern. This study sought evidence for actions of baroresponsive raphe neurones on the medullary respiratory network. 2. Blood pressure was perturbed by intravenous injection of an alpha1-adrenergic receptor agonist, unilateral pressure changes in the carotid sinus, or occlusion of the descending aorta in thirty-six Dial-urethane-anaesthetized, vagotomized, paralysed, artificially ventilated cats. Neurones were monitored with microelectrode arrays in two or three of the following domains: nucleus raphe obscurus-nucleus raphe pallidus, nucleus raphe magnus, and rostral and caudal ventrolateral medulla. Data were analysed with cycle-triggered histograms, peristimulus time and cumulative sum histograms, cross-correlograms and spike-triggered averages of efferent phrenic nerve activity. 3. Prolongation of the expiratory phase and decreased peak integrated phrenic amplitude were most frequently observed. Of 707 neurones studied, 310 had altered firing rates during stimulation; changes in opposite directions were monitored simultaneously in fifty-six of eighty-seven data sets with at least two baroresponsive neurones. 4. Short time scale correlations were detected between neurones in 347 of 3388 pairs. Seventeen pairs of baroresponsive raphe neurones exhibited significant offset correlogram features indicative of paucisynaptic interactions. In correlated raphe-ventrolateral medullary neurone pairs with at least one baroresponsive neurone, six of seven ventrolateral medullary decrementing expiratory (E-Decr) neurones increased their firing rate during baroreceptor stimulation. Thirteen of fifteen ventrolateral medullary inspiratory neurones correlated with raphe cells decreased their firing rate during baroreceptor stimulation. 5. The results support the hypothesis that raphe neuronal assemblies transform and transmit information from baroreceptors to neurones in the ventral respiratory group. The inferred actions both limit and promote responses to sensory perturbations and match predictions from simulations of the respiratory network.
摘要
  1. 动脉血压的扰动会改变延髓中缝神经元的活动以及呼吸运动模式。本研究旨在寻找压力感受性中缝神经元对延髓呼吸网络作用的证据。2. 通过静脉注射α1-肾上腺素能受体激动剂、单侧颈动脉窦压力变化或在36只经二异丙基氟磷酸酯麻醉、迷走神经切断、麻痹并人工通气的猫中阻断降主动脉来扰动血压。使用微电极阵列在以下两个或三个区域监测神经元:中缝隐核-中缝苍白核、中缝大核以及延髓头端和尾端腹外侧。数据采用周期触发直方图、刺激时间直方图和累积和直方图、互相关图以及传出膈神经活动的触发平均放电进行分析。3. 最常观察到呼气期延长和膈神经综合峰峰值降低。在研究的707个神经元中,310个在刺激期间放电频率发生改变;在至少有两个压力感受性神经元的87个数据集中,有56个同时监测到了相反方向的变化。4. 在3388对神经元中,有347对检测到了短时间尺度的相关性。17对压力感受性中缝神经元表现出显著的偏移互相关图特征,表明存在少突触相互作用。在至少有一个压力感受性神经元的相关中缝-延髓腹外侧神经元对中,7个延髓腹外侧呼气递减(E-Decr)神经元中有6个在压力感受器刺激期间放电频率增加。15个与中缝细胞相关的延髓腹外侧吸气神经元中有13个在压力感受器刺激期间放电频率降低。5. 结果支持以下假设:中缝神经元集合将来自压力感受器的信息进行转换并传递给腹侧呼吸组中的神经元。推断的作用既限制又促进对感觉扰动的反应,并与呼吸网络模拟的预测相符。

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