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猫中支配肌肉、皮肤和盆腔器官的交感神经元活动的呼吸调节。

Respiratory modulation of the activity in sympathetic neurones supplying muscle, skin and pelvic organs in the cat.

作者信息

Boczek-Funcke A, 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 Apr;449:333-61. doi: 10.1113/jphysiol.1992.sp019089.

Abstract
  1. The respiratory-related modulation of activity in neurones of the lumbar sympathetic outflow to skeletal muscle, skin and pelvic organs was investigated in anaesthetized, paralysed and artificially ventilated cats, using single- and multi-unit recordings. The activity of the neurones was analysed with respect to the phrenic nerve discharge under various experimental conditions. 2. Neurones tentatively classified as muscle vasoconstrictor and visceral vasoconstrictor neurones exhibited two activity peaks, one caused by baroreceptor unloading during the declining phase of the second order blood pressure waves and a respiratory drive-dependent peak in parallel with inspiration. The two peaks were separated by depressions of activity in early inspiration and post-inspiration. After cutting vagus and buffer nerves the activity peak during inspiration remained and was followed and sometimes preceded by a depression of activity. 3. The majority of the neurones tentatively classified as cutaneous vasoconstrictor neurones exhibited no respiratory modulation in their activity. Others exhibited an activity peak in expiration, an activity peak in inspiration, or a respiratory profile similar to that in muscle vasoconstrictor neurones. During increased respiratory drive (induced by hypercapnia) some neurones with unmodulated activity changed to an inspiratory or an expiratory pattern. Neurones discharging predominantly in inspiration projected preferentially to hairless skin. 4. Neurones which were tentatively classified as sudomotor neurones discharged predominantly in early expiration. 5. Some preganglionic neurones which were tentatively classified as motility-regulating neurones discharged during expiration. The majority of these neurones disclosed no respiratory modulation of their activity. 6. The study shows that different types of neurone of the lumbar sympathetic system exhibit distinct patterns of respiratory modulation in their activity. We conclude that the type and degree of central coupling between respiratory system and sympathetic nervous system may vary according to the destination of the sympathetic neurones.
摘要
  1. 在麻醉、麻痹并进行人工通气的猫身上,采用单单位和多单位记录法,研究了腰交感传出神经至骨骼肌、皮肤和盆腔器官的神经元活动的呼吸相关调制。在各种实验条件下,根据膈神经放电情况分析了神经元的活动。2. 初步分类为肌肉血管收缩神经元和内脏血管收缩神经元的神经元表现出两个活动峰值,一个是在二级血压波下降阶段由压力感受器卸载引起的,另一个是与吸气平行的呼吸驱动依赖性峰值。这两个峰值被吸气早期和吸气后活动的抑制所分隔。切断迷走神经和缓冲神经后,吸气时的活动峰值仍然存在,随后有时先于活动抑制出现。3. 初步分类为皮肤血管收缩神经元的大多数神经元在活动中未表现出呼吸调制。其他神经元表现出呼气时的活动峰值、吸气时的活动峰值,或与肌肉血管收缩神经元相似的呼吸模式。在呼吸驱动增加(由高碳酸血症引起)时,一些活动未受调制的神经元转变为吸气或呼气模式。主要在吸气时放电的神经元优先投射到无毛皮肤。4. 初步分类为汗腺运动神经元的神经元主要在呼气早期放电。5. 一些初步分类为运动调节神经元的节前神经元在呼气时放电。这些神经元中的大多数在活动中未表现出呼吸调制。6. 研究表明,腰交感神经系统的不同类型神经元在活动中表现出不同的呼吸调制模式。我们得出结论,呼吸系统和交感神经系统之间中枢耦合的类型和程度可能因交感神经元的目的地而异。

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本文引用的文献

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Discharges in mammalian sympathetic nerves.哺乳动物交感神经中的放电。
J Physiol. 1932 Feb 8;74(2):115-33. doi: 10.1113/jphysiol.1932.sp002832.
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Respiratory influence on the vasomotor center.呼吸对血管运动中枢的影响。
Am J Physiol. 1957 Nov;191(2):218-24. doi: 10.1152/ajplegacy.1957.191.2.218.
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Respiratory grouping of abdominal sympathetic activity in the dog.
Am J Physiol. 1967 Jul;213(1):48-56. doi: 10.1152/ajplegacy.1967.213.1.48.
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Blood gas tensions and acid-base balance in awake cats.清醒猫的血气张力与酸碱平衡
J Appl Physiol. 1971 Mar;30(3):434-6. doi: 10.1152/jappl.1971.30.3.434.

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