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Synaptic transmission between single slowly adapting type I fibres and their cuneate target neurones in cat.

机译:猫中单个缓慢适应的I型纤维与其楔形靶神经元之间的突触传递。

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摘要

1. The synaptic linkage between single, identified slowly adapting type I (SAI) fibres and their central target neurones of the cuneate nucleus was examined in pentobarbitone-anaesthetized cats. Simultaneous extracellular recordings were made from individual cuneate neurones and from fine, intact fascicles of the lateral branch of the superficial radial nerve in which it was possible to identify and monitor the activity of each group II fibre. Individual SAI fibres were activated by static displacement and by vibration delivered with a fine probe (0.25-2 mm diameter) to their associated touch domes in the hairy skin of the forelimb. 2. Transmission properties across the synapse were analysed for nine SAI-cuneate pairs in which the single SAI fibre of each pair provided a suprathreshold input to the cuneate neurone. Neither spatial nor temporal summation was required for effective impulse transmission, and often more than 80% of SAI impulses led to a response in the cuneate neurone. Responses of the cuneate neurones to single SAI impulses occurred at a short, fixed latency (S.D. often < 0.1 ms), and frequently consisted of a burst of two or three impulses, at low SAI input rates in particular. 3. The tight phase-locking in the responses to vibration of single SAI fibres was preserved in the cuneate responses for frequencies up to approximately 400 Hz. However, as the impulse rates of the cuneate neurones were less than 150 impulses s-1, their impulse patterns could not directly signal the vibration periodicity at frequencies > 100-150 Hz despite 1:1 responses in their single SAI input fibres up to approximately 500 Hz. 4. The reliable transmission of touch dome-associated SAI input across the cuneate nucleus indicates that transmission failure at this first relay is unlikely to be responsible for the reported failure of touch dome-SAI inputs to contribute to tactile perception. 5. The transmission characteristics for the SAI fibres were very similar to those demonstrated previously for fibres associated with Pacinian corpuscles, which argues against any marked differential specialization in transmission characteristics for dorsal column nuclei neurones that receive input from different tactile fibre classes.
机译:1.在戊巴比妥麻醉的猫中检查了已识别的缓慢适应的I型(SAI)单个纤维与其楔形核中央目标神经元之间的突触联系。同时从单个楔形神经元和浅radial神经外侧分支的完整细小束中进行了细胞外记录,在其中可以识别和监测每组II纤维的活性。单个SAI纤维通过静态位移激活,并通过用细探针(直径为0.25-2 mm)传递到前肢毛状皮肤中与之相关的接触圆顶的振动来激活。 2.分析了九对SAI-楔形对的跨突触的传递特性,其中每对中的单个SAI纤维为楔形神经元提供了超阈值输入。有效的脉冲传输不需要空间或时间的总和,通常超过80%的SAI脉冲会导致楔形神经元的反应。楔形神经元对单个SAI脉冲的响应发生在较短的固定等待时间(S.D.通常<0.1 ms),并且通常由两到三个脉冲的突发组成,尤其是在低SAI输入速率下。 3.对于频率高达约400 Hz的楔形响应,在单个SAI纤维的振动响应中保持了严格的锁相。但是,由于楔形神经元的脉冲速率小于150脉冲s-1,因此尽管单个SAI输入光纤中的1:1响应高达1:1,但它们的脉冲模式无法直接以信号表示频率> 100-150 Hz的振动周期。 500赫兹。 4.触摸穹顶相关的SAI输入跨楔形核的可靠传输表明,此第一个继电器的传输失败不太可能是所报告的触摸穹顶SAI输入导致触觉感知失败的原因。 5. SAI纤维的传输特性与先前显示的与Pacinian小体相关的纤维的传输特性非常相似,这反对接收来自不同触觉纤维类别的输入的背柱核神经元的传输特性有任何明显的差异性。

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