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投射至猫颈交感干的节前神经元的呼吸相关活动模式。

Respiratory-related activity patterns in preganglionic neurones projecting into the cat cervical sympathetic trunk.

作者信息

Boczek-Funcke A, Dembowsky K, Häbler H J, Jänig W, Michaelis M

机构信息

Physiologisches Institut, Christian-Albrechts-Universität zu Kiel, FRG.

出版信息

J Physiol. 1992 Nov;457:277-96. doi: 10.1113/jphysiol.1992.sp019378.

Abstract
  1. Activity in 233 single sympathetic preganglionic neurones that project to the superior cervical ganglion was analysed with respect to central components of respiration (phrenic nerve discharge) and to the afferent feedback generated by mechanical events occurring with ventilation in anaesthetized and artificially ventilated cats. 2. The activity in ninety-one neurones was modulated during the respiratory cycle in two ways: directly by the central inspiratory drive, and indirectly by ventilation-related blood pressure changes, acting via the systemic baroreceptors. The direct influence was prominent in vagotomized animals or those with a raised respiratory drive, and consisted of an inspiratory increase in activity and decreases of activity in early inspiration and postinspiration. The indirect influence (excitation due to baroreceptor unloading) usually dominated in normocapnic cats with intact vagus nerves. This population of neurones showed both similar reflex responses and a similar respiratory modulation of activity as postganglionic neurones supplying hindlimb skeletal muscle. 3. Sixty-one neurones discharged exclusively, or almost exclusively, during central inspiration. This discharge pattern neither depended on the integrity of vagal nor baroreceptor afferents. The activity of these neurones was abolished during hyperventilation and enhanced during hypercapnia. In the latter state, a small activation was often seen in stage II expiration. 4. In normocapnia the remainder of neurones (n = 81) exhibited no, or no pronounced, respiratory modulation of activity, except three neurones which showed a prominent expiratory pattern being of central and not of reflex origin. They were not a homogeneous population and included neurones exhibiting reflex responses similar to those of postganglionic neurones supplying hindlimb skin (n = 36), neurones responding to light (n = 4), and others (n = 41). 5. It is concluded that distinct types of thoracic preganglionic neurone differ with respect to respiratory modulation of their activity stemming from both central and reflex sources. Thus, the temporal profile of activity in these neurones in relation to respiration is another functional characteristic which can be used to distinguish between populations of sympathetic neurones.
摘要
  1. 分析了233个投射至上颈神经节的单根交感神经节前神经元的活动,这些活动与呼吸的中枢成分(膈神经放电)以及麻醉并人工通气的猫在通气时机械事件产生的传入反馈有关。2. 91个神经元的活动在呼吸周期中以两种方式受到调节:直接受中枢吸气驱动的影响,以及间接受通气相关血压变化的影响,后者通过全身压力感受器起作用。直接影响在迷走神经切断的动物或呼吸驱动增强的动物中较为突出,表现为活动在吸气时增加,在吸气早期和吸气后活动减少。间接影响(由于压力感受器卸载引起的兴奋)通常在迷走神经完整的正常碳酸血症猫中占主导。这群神经元表现出与供应后肢骨骼肌的节后神经元相似的反射反应和相似的活动呼吸调节。3. 61个神经元仅在中枢吸气期间放电,或几乎仅在中枢吸气期间放电。这种放电模式既不依赖于迷走神经传入纤维的完整性,也不依赖于压力感受器传入纤维。这些神经元的活动在过度通气时被消除,在高碳酸血症时增强。在后一种状态下,在呼气第二阶段常可见到轻微激活。4. 在正常碳酸血症状态下,其余神经元(n = 81)的活动没有或没有明显的呼吸调节,除了三个表现出明显呼气模式的神经元,其模式为中枢性而非反射性起源。它们不是一个同质群体,包括表现出与供应后肢皮肤的节后神经元相似反射反应的神经元(n = 36)、对光有反应的神经元(n = 4)以及其他神经元(n = 41)。5. 得出的结论是,不同类型的胸段节前神经元在其活动的呼吸调节方面存在差异,这种调节源于中枢和反射来源。因此这些神经元活动与呼吸相关的时间特征是另一个功能特性,可用于区分交感神经元群体。

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