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首页> 外文期刊>Pain. >Differential effect of motor cortex stimulation on unit activities in the ventral posterior lateral thalamus in cats
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Differential effect of motor cortex stimulation on unit activities in the ventral posterior lateral thalamus in cats

机译:电机皮质刺激对猫腹部后侧丘脑单位活动的差异效果

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摘要

Although motor cortex stimulation (MCS) is being increasingly used to treat chronic refractory neuropathic pain in humans, its mechanisms of action remain elusive. Studies in animals have suggested the involvement of subcortical structures, in particular, the thalamus. Most of these studies have been performed in rats, a species presenting significant differences in thalamic anatomy and function relative to primates, in particular, a very limited number of thalamic GABA intemeurons. The aim of this study was to investigate the effects of MCS on single-unit activities of the thalamic ventral posterior lateral (VPL) nucleus in cats, which contains substantial numbers of GABA intemeurons. Spontaneous and evoked activities of VPL units were studied before and after MCS. Motor cortex stimulation induced significant depression of the wide-dynamic-range (WDR) cells' firing rate, concomitant with activity enhancement of nonnociceptive (NN) units. More than half of WDR cells showed a significant decrease in the firing rate, while a similar proportion of NN units exhibited the opposite after-effect. Maximal firing attenuation of WDR cells occurred when the MCS location matched somatotopically their receptive field. Repetition of MCS runs led to an accentuation of WDR depression. After peripheral stimulation, evoked activity in each cell showed MCS effects similar to those observed in spontaneous activity. These data demonstrate a selective top-down inhibition by MCS of nonspecific nociceptive (WDR) cells, enhanced by somatotopic concordance and stimulation repetition, in parallel to facilitation of NN cells. These 2 outcomes may play a role in the complex analgesic effect of MCS observed in neuropathic pain conditions.
机译:虽然电机皮质刺激(MCS)越来越多地用于治疗人类的慢性难治性神经性疼痛,但其行动机制仍然是难以捉摸的。动物的研究表明皮质结构的参与,特别是丘脑。这些研究中的大多数已经在大鼠中进行,一种物种呈现出脊髓灰质解剖学和功能相对于灵长类动物的显着差异,特别是具有非常有限数量的丘脑内核。本研究的目的是探讨MCS对猫咪脊椎后侧侧(VPL)核的单一单位活动的影响,其含有大量的GABA内核。在MCS之前和之后,研究了VPL单元的自发和诱发活动。电机皮质刺激诱导宽动态范围(WDR)细胞的烧制率的显着抑制,伴随着非伤寒(NN)单元的活性增强。超过一半的WDR细胞显示出烧制率的显着降低,而类似的NN单元比例表现出相反的后果。当MCS定位匹配的躯体匹配的接收领域时,发生了WDR细胞的最大射击衰减。重复MCS的运行导致了WDR抑郁的突出。在外周刺激之后,每个细胞中的诱发活性显示出与在自发活动中观察到的MCS效果。这些数据证明了非特异性伤害性(WDR)细胞的MCS的选择性降压抑制,并通过躯体缺乏和刺激重复增强,并平行于促进NN细胞。这2个结果可能在神经病疼痛条件下观察到的MCS的复杂镇痛作用中发挥作用。

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