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长时程增强的诱导导致体内诱发的新皮质纺锤波的可靠性增加。

Induction of long-term potentiation leads to increased reliability of evoked neocortical spindles in vivo.

作者信息

Werk C M, Harbour V L, Chapman C A

机构信息

Department of Psychology, Center for Studies in Behavioral Neurobiology, Concordia University, 7141 Sherbrooke Street West, Room SP-244, Montreal Quebec, Canada, H4B 1R6.

出版信息

Neuroscience. 2005;131(4):793-800. doi: 10.1016/j.neuroscience.2004.12.020.

Abstract

Large amplitude electroencephalographic spindle waves (7-14 Hz) occur spontaneously in the neocortex during both sleep and awake immobility, and it has been proposed that synchronous neuronal activation during spindles may contribute to learning-related synaptic plasticity. Spindles can also be evoked in the sensorimotor cortex by electrical stimulation of cortical or thalamic inputs in the rat. To determine if strengthening cortical synapses can affect the initiation and maintenance of electrically evoked spindles, stimulation pulses were delivered at a range of intensities to the corpus callosum or ventrolateral thalamus in the awake rat before and after the induction of long-term potentiation (LTP) by tetanization of the corpus callosum. The morphology of evoked spindles was similar to that of naturally occurring spindles. Spindles were evoked less reliably during slow-wave sleep than during waking, and this was correlated with smaller synaptic responses during slow-wave sleep. Similar to previous findings, daily tetanization of the corpus callosum for 15 days decreased the early component and increased the late component of synaptic responses evoked by corpus callosum stimulation, but did not significantly affect synaptic responses evoked by thalamic stimulation. Similarly, LTP induction increased the reliability with which low-intensity corpus callosum stimulation evoked spindles, but increases in spindles evoked by thalamic stimulation were not significant. Synaptic potentiation and the increased reliability of spindles developed with a similar time-course over the 15-day LTP induction period. These results reflect strong correlations between the strength of cortical layer V activation and the initiation of spindles in the sensorimotor cortex, and support the idea that monosynaptic and polysynaptic horizontal collaterals of layer V neurons can play a significant role in the initiation of spindles.

摘要

在睡眠和清醒不动状态下,新皮质会自发出现大幅度脑电图纺锤波(7 - 14赫兹),有人提出,纺锤波期间的同步神经元激活可能有助于与学习相关的突触可塑性。通过电刺激大鼠的皮质或丘脑输入,也可在感觉运动皮质诱发纺锤波。为了确定增强皮质突触是否会影响电诱发纺锤波的起始和维持,在通过胼胝体强直刺激诱导长期增强(LTP)之前和之后,以一系列强度向清醒大鼠的胼胝体或腹外侧丘脑施加刺激脉冲。诱发纺锤波的形态与自然出现的纺锤波相似。与清醒时相比,慢波睡眠期间诱发纺锤波的可靠性较低,这与慢波睡眠期间较小的突触反应相关。与先前的研究结果相似,每天对胼胝体进行15天的强直刺激会减少胼胝体刺激诱发的突触反应的早期成分并增加晚期成分,但对丘脑刺激诱发的突触反应没有显著影响。同样,LTP诱导增加了低强度胼胝体刺激诱发纺锤波的可靠性,但丘脑刺激诱发的纺锤波增加不显著。在15天的LTP诱导期内,突触增强和纺锤波可靠性的增加具有相似的时间进程。这些结果反映了皮质V层激活强度与感觉运动皮质中纺锤波起始之间的强相关性,并支持V层神经元的单突触和多突触水平侧支在纺锤波起始中可发挥重要作用的观点。

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