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Efferent control of arterial chemoreceptors mediated by glossopharyngeal fibres and artifacts introduced by stimulation techniques

机译:由舌咽纤维和刺激技术引入的人工产物介导的动脉化学感受器的传出控制

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摘要

1. In anaesthetized cats, stimulation of the cut carotid sinus nerve generally caused a reduction in discharge in afferent fibres peeled from the nerve distal to the stimulating electrodes, though this was somewhat variable. In four out of five fibres the inhibition was reduced or abolished by close intra-arterial injection of atropine. Only single fibres were used.2. There was a risk of adventitious excitation of the afferent fibre by stimulus escape. Some of the features of this excitation and the ease with which it occurred were investigated using an isolated length of vagus, baroreceptor fibres and chemoreceptor fibres. Low concentrations of local anaesthetic could raise the threshold for adventitious excitation whilst not affecting the normal passage of impulses.3. During stimulation of the efferent components of the sinus nerve, a continuous check for adventitious excitation was kept, utilizing the fact that chemoreceptor fibres show a minimum inter-spike interval of about 10 msec.4. The true inhibition of discharge would seem to be vasomotor in origin.
机译:1.在麻醉的猫中,对经切开的颈动脉窦神经的刺激通常会导致从刺激电极远端的神经上剥落的传入纤维的放电减少,尽管这有所不同。五分之四的纤维中,通过动脉内紧密注射阿托品可减少或消除抑制作用。仅使用单纤维2。有通过刺激逃逸不定地激发传入纤维的风险。使用迷走神经,压力感受器纤维和化学感受器纤维的隔离长度研究了这种激发的某些特征及其发生的难易程度。低浓度的局麻药可能会增加不定激发的阈值,同时又不影响脉冲的正常通过。3。在刺激窦神经传出成分的过程中,利用化学感受器纤维表现出的最小钉间间隔约为10毫秒4的事实,持续检查不定刺激。4。真正抑制放电似乎起源于血管舒缩。

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