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The effects of peripheral and central nervous influences on gastric centre neuronal activity in sheep

机译:周围和中枢神经对绵羊胃中枢神经元活动的影响

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摘要

1. Responses of identified vagal reticulo-ruminal motoneurones and gastric centre interneurones to changes in vagal afferent activity were examined in anaesthetized, decerebellate sheep.2. Procedures which reflexly modified the form of forestomach movements caused corresponding changes in the activities of motoneurones and Type A interneurones, whereas the activity patterns of Type B, and many Type C, interneurones were not affected.3. Distension of the pyloric region of the abomasum reduced the number of spikes in the periodic discharges of gastric centre neurones (motoneurones and Type A interneurones) with reticular activity, although the frequency of periods of activity was often increased. The afferent pathway for both effects was probably vagal.4. Unilateral vagotomy usually had little effect on the frequency and amplitude of forestomach movements, and did not influence the temporal relation between ipsilateral gastric centre discharges and the movements.5. Median division of the medulla oblongata only in the region between the gastric centres caused a loss of synchronization in the activities of the two centres, indicating the existence of commissural connexions at this level.6. Bilateral vagotomy abolished forestomach movements and motoneuronal activity, but rhythmic activity in gastric centre interneurones continued with a periodicity of approximately 1 min. This persisting periodic activity was unaffected by spinal section, but was not present after transection of the brain stem rostral to the medulla.7. Cyclical gastric centre activity could be elicited by reticular distension in preparations in which the medulla oblongata was isolated from higher regions of the brain, but, in contrast to many sheep in which the brain stem was intact, the existence of the activity was totally dependent upon peripheral afferent activity.8. The evidence indicates that medullary neurones responsible for periodic activation of vagal preganglionic reticulo-ruminal motoneurones may be excited by either or by both vagal afferent fibres from the fore-stomach or by descending, as yet unidentified, influences from the central nervous system.9. Possible roles for gastric centre interneurones in neural networks which control the periodic activation of motoneurones and which control the form of individual activity cycles are discussed.
机译:1.在麻醉的小脑绵羊中检查了迷走神经网状瘤胃运动神经元和胃中枢神经元对迷走神经传入活动变化的反应。2。改变前胃运动形式的程序引起了运动神经元和A型中间神经元活动的相应变化,而B型以及许多C型中间神经元的活动模式没有受到影响。3。尽管网状活动的频率经常增加,但厌恶性胃幽门区的扩张减少了具有网状活动的胃中枢神经元(运动神经元和A型中间神经元)周期性放电的尖峰数目。这两种作用的传入途径可能是迷走神经。4。单侧迷走神经切断术通常对前胃行运动的频率和幅度几乎没有影响,并且不影响同侧胃中心放电与运动之间的时间关系。5。延髓延髓仅在胃中心之间的区域中位分裂,导致两个中心的活动失去同步性,表明在这一水平上存在连合连接。6。双边迷走神经切断术消除了前胃运动和单动性神经元活动,但在胃中心神经元中的节律性活动持续了大约1分钟的周期。这种持续的周期性活动不受脊柱切开的影响,但在脑干延髓部横切至延髓后不存在。7。网状扩张可从网状延髓分离自大脑较高部位的制剂中引起胃中枢循环活动,但是与许多绵羊的脑干完好无损相比,该活动的存在完全取决于外周传入活动8。有证据表明,负责迷走神经节前网状-瘤胃运动神经元周期性激活的延髓神经元可能会被前胃的迷走神经传入纤维或其中之一吸收,也可能受到中枢神经系统的影响下降(尚未确定)9。讨论了胃中枢神经元在神经网络中的可能作用,神经元控制运动神经元的周期性激活并控制个体活动周期的形式。

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