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首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Immediate thalamic sensory plasticity depends on corticothalamic feedback
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Immediate thalamic sensory plasticity depends on corticothalamic feedback

机译:立即的丘脑感觉可塑性取决于皮质丘脑反馈

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摘要

Multiple neuron ensemble recordings were obtained simultaneously from both the primary somatosensory (SI) cortex and the ventroposterior medial thalamus (VPM) before and during the combined administration of reversible inactivation of the SI cortex and a reversible subcutaneous block of peripheral trigeminal nerve fibers. This procedure was performed to quantify the contribution of descending corticofugal projections on (i) the normal organization of thalamic somatosensory receptive fields and (ii) the thalamic somatosensory plastic reorganization that immediately follows a peripheral deafferentation. Reversible inactivation of SI cortex resulted in immediate changes in receptive field properties throughout the VPM. Cortical inactivation also significantly reduced but did not completely eliminate the occurrence of VPM receptive field reorganization resulting from the reversible peripheral deafferentation. This result suggests that the thalamic plasticity that is seen immediately after a peripheral deafferentation is dependent upon both descending corticofugal projections and ascending trigeminothalamic projections.
机译:在同时给予SI皮质可逆性灭活和周围三叉神经纤维的可逆皮下阻滞的联合给药之前和期间,从原发体感(SI)皮层和腹侧后丘脑(VPM)同时获得了多个神经元集合记录。进行该过程以量化下降的皮质阴道突起对(i)丘脑体感感受野的正常组织和(ii)在周围脱除咖啡因后的丘脑体感整形的贡献。 SI皮质的可逆失活导致整个VPM感受野性质的立即变化。皮质的失活也显着减少,但不能完全消除由于可逆的外周脱咖啡因引起的VPM感受野重组的发生。这个结果表明,在周围的脱除咖啡因后立即观察到的丘脑可塑性既依赖于皮质皮质预测的下降,也依赖于三叉丘脑预测的上升。

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