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呼吸神经元活动的代谢控制以及伴随的呼气神经元变化。

Metabolic control of respiratory neuronal activity and the accompanying changey-expiratory neurons.

作者信息

Böhmer G, Chaplain R A, Fallert M

出版信息

Pflugers Arch. 1976 Sep 3;365(1):61-8. doi: 10.1007/BF00583628.

DOI:10.1007/BF00583628
PMID:185581
Abstract

Expiratory-related neurons have been classified according to their phase relation within the respiratory cycle, their response to lung distension and collapse (alpha- and beta-type), and to hyperventilation (tonic firing denoted by "+", cessation of activity by "-"). The dorsal surface of the medulla oblongata was superfused with a metabolite-containing CSF solution and the activity of expiratory (E) and inspiratory-expiratory (IE) neurons was extracellulary recorded. The neuronal sub-types established by their functional behaviour could equally be distinguished by their differential response to one or several metabolites. In contrast to inspiratory (I) neurons, Ealpha- Ebeta-, Ebeta- and IEbeta- neurons are inhibited by 3.5 mM AMP, but are activated by 10 mM citrate (with the exception of Ebeta+ units). Furthermore I cells are activated by ATP, while Ealpha and Ebeta units become inhibited. Vagotomy in some instances affected the response of some IEbeta units. An increase in spike density of IEbeta+ and Ealpha- cells is paralleled by a reduction of both the respiratory rate and the tidal volume, while a lower spike density in IEbeta+, IEbeta- and Ealpha- units is accompanied by increases in respiratory rate and tidal volume. In the case of Ebeta+ and Ebeta- cells lower activity is associated with an increased tidal volume. No metabolite-induced changes could be obtained with cardiovascular or unspecific reticular neurons.

摘要

呼气相关神经元已根据其在呼吸周期中的相位关系、对肺扩张和萎陷的反应(α型和β型)以及对过度通气的反应(“+”表示紧张性放电,“-”表示活动停止)进行了分类。延髓背表面用含代谢物的脑脊液溶液进行灌流,并细胞外记录呼气(E)和吸气-呼气(IE)神经元的活动。根据其功能行为确定的神经元亚型同样可以通过它们对一种或几种代谢物的不同反应来区分。与吸气(I)神经元不同,Eα-、Eβ-、Eβ-和IEβ-神经元受到3.5 mM AMP的抑制,但受到10 mM柠檬酸盐的激活(Eβ+单位除外)。此外,I细胞被ATP激活,而Eα和Eβ单位则受到抑制。在某些情况下,迷走神经切断术会影响一些IEβ单位的反应。IEβ+和Eα-细胞的放电频率增加与呼吸频率和潮气量的降低同时出现,而IEβ+、IEβ-和Eα-单位的较低放电频率则伴随着呼吸频率和潮气量的增加。对于Eβ+和Eβ-细胞,较低的活动与潮气量增加有关。心血管或非特异性网状神经元未出现代谢物诱导的变化。

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本文引用的文献

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Discharge patterns of brain-stem respiratory neurons in relation to carbon dioxide tension.脑干呼吸神经元放电模式与二氧化碳张力的关系。
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Metabolic control of respiratory neuronal activity and the accompanying changes in breathing movements of the rabbit. III. Phase shifts in respiratory neurons induced by inflation and collapse of the lung, hyperventilation, or metabolic modifiers.家兔呼吸神经元活动的代谢控制及伴随的呼吸运动变化。III. 肺充气和萎陷、过度通气或代谢调节剂诱导的呼吸神经元相移。
Pflugers Arch. 1976 Sep 3;365(1):69-75. doi: 10.1007/BF00583629.
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Metabolic control of respiratory neuronal activity and the accompanying changes in breathing movements of the rabbit. 1. Mainpulation of inspiratory and expiratory-inspiratory neurons.家兔呼吸神经元活动的代谢控制及伴随的呼吸运动变化。1. 吸气神经元和呼气-吸气神经元的调控
Pflugers Arch. 1976 Sep 3;365(1):49-59. doi: 10.1007/BF00583627.
兔的延髓呼吸中枢。II. 呼吸神经元在吸气或呼气期间对间歇性延髓电刺激的反应。
Pflugers Arch. 1976 Aug 24;364(3):269-84. doi: 10.1007/BF00581765.
4
Metabolic control of respiratory neuronal activity and the accompanying changes in breathing movements of the rabbit. 1. Mainpulation of inspiratory and expiratory-inspiratory neurons.家兔呼吸神经元活动的代谢控制及伴随的呼吸运动变化。1. 吸气神经元和呼气-吸气神经元的调控
Pflugers Arch. 1976 Sep 3;365(1):49-59. doi: 10.1007/BF00583627.
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Metabolic regulations of the rhythmic activity in pacemaker neurons. II. Metabolically induced conversions of beating to bursting pacemaker activity in isolated Aplysia neurons.
Brain Res. 1976 Apr 23;106(2):307-19. doi: 10.1016/0006-8993(76)91027-1.