兔腓肠神经C纤维选择性刺激的反射作用。

R W Clarke, T W Ford, J S Taylor
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引用次数: 37

摘要

选择性电刺激失觉、脊髓化家兔腓骨神经无髓鞘C纤维可引起同侧踝关节伸肌内侧腓肠肌(GM)长潜伏期(76 ~ 160 ms)、长时间(大于100 ms)反射反应。同一纤维的激活很少或没有引起同侧膝关节半腱屈肌(ST)的反应。通过刺激腓肠神经的A β传入神经,可以在GM和ST肌神经中引起反射反应。A - β引发的反射在GM中增强,而在ST中由于事先激活腓肠神经C纤维而减弱。士的宁,而不是微毒素或甲胺,阻断了C纤维诱导的屈肌反射抑制。用锯齿钳捏足跟产生GM运动神经元的立即反射放电,而ST则在刺激终止后产生反应。捏第二个脚趾在ST中引起反射活动,但在GM中没有。在士的宁(0.5 mg kg-1)后,两组运动神经元同时对脚跟或脚趾的刺激做出反应。这些数据表明,来自足跟的腓肠和其他传入纤维激发同侧GM运动神经元并抑制ST反射反应。对这些发现的一种解释是,细小的腓肠传入激活平行的抑制性和兴奋性通路,其中前者对士的宁敏感,因此可能由甘氨酸介导。
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Reflex actions of selective stimulation of sural nerve C fibres in the rabbit.

Selective electrical stimulation of the non-myelinated C fibres of the sural nerve in the decerebrated, spinalized rabbit evoked long-latency (76-160 ms), long-lasting (greater than 100 ms) reflex responses in the ipsilateral ankle extensor gastrocnemius medialis (GM). Activation of the same fibres elicited little or no response from the ipsilateral knee flexor semitendinosus (ST). Reflex responses were evoked in both GM and ST muscle nerves by stimulation of the A beta afferents of the sural nerve. The A beta-elicited reflex in GM was enhanced, and that in ST depressed by prior activation of sural nerve C fibres. Strychnine, but not picrotoxin or mecamylamine, blocked C fibre-induced inhibition of the flexor reflex. Pinching the heel with serrated forceps produced an immediate reflex discharge in GM motoneurones, whereas ST responded upon termination of the stimulus. Pinching the second toe evoked reflex activity in ST but not in GM. After strychnine (0.5 mg kg-1), both sets of motoneurones responded simultaneously to stimulation of either the heel or the toe. These data show that sural and other afferent fibres from the heel excite ipsilateral GM motoneurones and inhibit ST reflex responses. One interpretation of these findings is that fine sural afferents activate parallel inhibitory and excitatory pathways, of which the former is sensitive to strychnine and therefore probably mediated by glycine.

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The school of Bernard Katz. London, 5 April 1989. Proceedings. Extracellular magnesium regulates acetylcholine-evoked amylase secretion and calcium mobilization in rat pancreatic acinar cells. Structure and function of the carotid body in New Zealand genetically hypertensive rats. Intracellular signalling and regulation of gastric acid secretion. Metabolism and inactivation of gastrin releasing peptide by endopeptidase-24.11 in the dog.
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