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鱼类反射性呼吸运动中的神经控制与本体感受性负荷匹配

Neural control and proprioceptive load matching in reflex respiratory movements of fishes.

作者信息

Ballintijn C M, Roberts J L

出版信息

Fed Proc. 1976 Jul;35(9):1983-91.

PMID:776700
Abstract

A brief anatomical description of topographical arrangements of respiratory neurons in the fish respiratory medulla introduces a discussion centered on neural controls of reflex breathing movements during rhythmic and ram gill ventilation, especially the role of proprioception in "load matching." Paralysis experiments show that proprioceptive signals are processed in medullary respiratory areas of the brain. Some neurons depend completely on proprioceptive input for their activity, while others "mix" proprioceptive and rhythmic information. The existence of direct proprioceptive control loops is revealed by fast compensating changes in electrical activity of respiratory muscles following mechanical interference with respiratory movements. Responses of respiratory neurons to short artificial twitches of respiratory muscles show that some neurons process proprioceptive information at higher levels of integration, often with a long latency and after effect. Other neurons react immediately to the stimulus and often show properties of elements in proprioceptive control systems in which length receptors facilitate and tension receptors inhibit motor neuron activity. Stimulus-response averaging applied to neuron activity and respiratory electromyograms, and to electrical stimuli and neurograms, leads to the conclusion that motor neurons and neurons mediating sensory signals from the respiratory muscles are situated close together in the medullary respiratory areas. Neuroanatomical studies are discussed which indicate that the sensory projection fields of some trigeminal fibers terminate adjacent to the cranial motor nuclei. These presumably project onto motor neurons forming fast disynaptic reflex arcs relaying sensory trigeminal information.

摘要

对鱼类呼吸髓质中呼吸神经元的拓扑排列进行简要的解剖学描述,引出了一场围绕节律性和鳃动通风期间反射性呼吸运动的神经控制展开的讨论,特别是本体感受在“负荷匹配”中的作用。麻痹实验表明,本体感受信号在脑的髓质呼吸区域进行处理。一些神经元的活动完全依赖于本体感受输入,而另一些神经元则“混合”了本体感受和节律性信息。对呼吸运动进行机械干扰后,呼吸肌电活动的快速补偿变化揭示了直接本体感受控制回路的存在。呼吸神经元对呼吸肌短时间人工抽搐的反应表明,一些神经元在更高的整合水平处理本体感受信息,通常具有较长的潜伏期和后效应。其他神经元对刺激立即做出反应,并且常常表现出本体感受控制系统中元件的特性,其中长度感受器促进而张力感受器抑制运动神经元活动。将刺激-反应平均应用于神经元活动和呼吸肌电图,以及电刺激和神经电图,得出的结论是,运动神经元和介导来自呼吸肌感觉信号的神经元在髓质呼吸区域紧密相邻。文中讨论了神经解剖学研究,这些研究表明一些三叉神经纤维的感觉投射场终止于颅运动核附近。这些可能投射到运动神经元上,形成传递三叉神经感觉信息的快速双突触反射弧。

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