首页> 美国卫生研究院文献>The Journal of Physiology >Cerebellar Golgi cells in the rat receive multimodal convergent peripheral inputs via the lateral funiculus of the spinal cord
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Cerebellar Golgi cells in the rat receive multimodal convergent peripheral inputs via the lateral funiculus of the spinal cord

机译:大鼠的小脑高尔基细胞通过脊髓的侧索接受多峰会聚的外周输入

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摘要

We recently showed that the activity of cerebellar Golgi cells can be powerfully modulated by stimulation of peripheral afferents, in a pattern different to local Purkinje cells. Here we have examined the pathways underlying these responses. Graded electrical stimulation of muscle and cutaneous nerves revealed that long-lasting depressions and short-lasting excitations of Golgi cells were evoked by stimulation of cutaneous nerves at stimulus intensities that activated large mechanoreceptive afferents, and grew as additional afferents were recruited. In contrast, none of the neurones responded to stimulation of muscle nerves at intensities that activated group I afferents, although about half responded with long-lasting depressions, but not excitations, to stimuli that recruited group II and III afferents. Selective lesions of the spinal dorsal columns did not affect either of these types of response. After lesions of one lateral funiculus in the lumbar cord the responses evoked by stimulation of the hindlimb contralateral to the lesion were reduced or abolished, leaving responses evoked by ipsilateral hindlimb afferents unaltered. Since both ipsi- and contralateral afferents generate responses in Golgi cells, the convergence from the two sides must occur supraspinally. It is difficult to reconcile these properties with any of the direct spinocerebellar pathways or spinoreticulocerebellar pathways that have been described. Instead, it is likely that the responses are evoked via the multimodal ‘wide dynamic range’ neurones of the anterolateral system. Golgi cell activity may thus be powerfully enhanced or depressed during arousal via the anterolateral system.
机译:我们最近显示,小脑高尔基细胞的活性可以通过刺激外周传入细胞以不同于局部浦肯野细胞的模式被有力地调节。在这里,我们检查了这些响应的基础途径。肌肉和皮肤神经的分级电刺激显示,高尔基细胞的长期凹陷和短时刺激是通过在刺激强度下激活大的机械感受性传入神经的刺激皮肤神经而引起的,并随着新传入传入神经的刺激而长大。相比之下,没有一个神经元在激活I组传入的强度下对肌肉神经的刺激做出反应,尽管大约一半的神经对持久的抑郁症产生了响应,而对激发II和III组传入的刺激则没有刺激。脊柱背柱的选择性病变不影响这两种类型的反应。在腰部脐带一侧外侧真菌的损伤后,由病变对侧对侧刺激引起的反应减少或消失,同侧后肢传入引起的反应未改变。由于同侧和对侧传入体均在高尔基体细胞中产生反应,因此两侧的会聚必须发生在棘上。很难用已描述的任何直接的脊柱小脑途径或脊髓小脑小脑途径来协调这些特性。取而代之的是,反应可能是通过前外侧系统的多模式“宽动态范围”神经元引起的。因此,通过前外侧系统在唤醒过程中,高尔基体细胞的活性可能会大大增强或降低。

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