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由肌肉抽搐激活的舌部机械感受器。

Lingual mechanoreceptors activated by muscle twitch.

作者信息

Porter R

出版信息

J Physiol. 1966 Mar;183(1):101-11. doi: 10.1113/jphysiol.1966.sp007853.

Abstract
  1. Two groups of mechanoreceptors in the tongue have been identified by recording afferent discharges in single nerve fibres dissected from the lingual nerves of anaesthetized cats. The group of superficially situated, rapidly adapting mechanoreceptors had faster conduction velocities than the presumed deeply situated, slowly adapting endings.2. Stretch of the tongue musculature did not prove to be as efficient in activating the endings as local deformation, although it was possible to excite some of the presumed deeply situated endings in this way.3. No mechanoreceptor fibres could be identified in filaments dissected from the hypoglossal nerves in the same experiments.4. Twitches of the tongue musculature produced by stimulation of the hypoglossal nerve were able to cause discharge of superficial and presumed deeply situated mechanoreceptors during the tension change.5. The timing of the discharges in response to twitch was such that it could account for the delay in synaptic potentials produced in hypoglossal motoneurones when supramaximal stimuli were applied to the hypoglossal nerve.6. The possible significance of mechanoreceptor discharges in reflex activation of tongue motor units is discussed.
摘要
  1. 通过记录从麻醉猫的舌神经中分离出的单根神经纤维的传入放电,已确定舌中有两组机械感受器。表面位置的快速适应机械感受器组的传导速度比推测的深部位置的缓慢适应末梢更快。

  2. 尽管通过这种方式有可能激发一些推测的深部位置的末梢,但事实证明,拉伸舌肌组织在激活末梢方面不如局部变形有效。

  3. 在同一实验中,从舌下神经分离出的细丝中未发现机械感受器纤维。

  4. 刺激舌下神经引起的舌肌组织抽搐能够在张力变化期间导致表面和推测的深部位置的机械感受器放电。

  5. 对抽搐反应的放电时间能够解释当对舌下神经施加超强刺激时,舌下运动神经元产生的突触电位延迟。

  6. 讨论了机械感受器放电在舌运动单位反射激活中的可能意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/32f2/1357529/2dc88348f633/jphysiol01152-0111-a.jpg

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