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丘脑皮质和皮质皮质传入神经共同激活诱导的丘脑输入至运动皮质的长期增强效应。

Long-term potentiation of thalamic input to the motor cortex induced by coactivation of thalamocortical and corticocortical afferents.

作者信息

Iriki A, Pavlides C, Keller A, Asanuma H

机构信息

Rockefeller University, New York, New York 10021.

出版信息

J Neurophysiol. 1991 Jun;65(6):1435-41. doi: 10.1152/jn.1991.65.6.1435.

Abstract
  1. Intracellular recordings were obtained from neurons in the motor cortex (MCx), in which excitatory postsynaptic potentials (EPSPs) were evoked by microstimulation of the somatosensory cortex (SCx) and the ventrolateral nucleus (VL) of the thalamus. The effects of combined tetanic stimulation of SCx and VL on the amplitudes of these EPSPs were studied. 2. Amplitudes of both corticocortical (CC) and thalamocortical (TC) EPSPs were potentiated after combined tetanic stimulation. This potentiation occurred exclusively in neurons that were located in the superficial layers (II/III) and that received direct input from both the SCx and VL, with both inputs synapsing in close proximity to each other. In all cases, the potentiation lasted until the electrode went out of the cell (21 +/- 25 min, mean +/- SD) the longest being 90 min. We therefore refer to this potentiation as long-term potentiation (LTP). 3. Tetanic stimulation of the thalamus only did not produce LTP in neurons receiving direct input from the VL. 4. LTP was not induced in either CC or TC EPSPs in neurons located in layer V and/or in neurons receiving long-latency CC EPSPs. 5. It is concluded that TC input from the VL to the MCx is potentiated only when coactivated with the CC input from the SCx.
摘要
  1. 从运动皮层(MCx)的神经元进行细胞内记录,其中通过对体感皮层(SCx)和丘脑腹外侧核(VL)的微刺激诱发兴奋性突触后电位(EPSP)。研究了对SCx和VL进行强直刺激组合对这些EPSP幅度的影响。2. 在强直刺激组合后,皮质皮质(CC)和丘脑皮质(TC)EPSP的幅度均增强。这种增强仅发生在位于表层(II/III)且从SCx和VL都接受直接输入的神经元中,两种输入在彼此紧邻处形成突触。在所有情况下,增强持续到电极离开细胞(21±25分钟,平均值±标准差),最长为90分钟。因此,我们将这种增强称为长时程增强(LTP)。3. 仅对丘脑进行强直刺激不会在从VL接受直接输入的神经元中产生LTP。4. 在位于V层的神经元和/或接受长潜伏期CC EPSP的神经元中,CC或TC EPSP均未诱导出LTP。5. 得出的结论是,仅当与来自SCx的CC输入共同激活时,从VL到MCx的TC输入才会增强。

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