Yu Yan-Qin, Xiong Ying, Chan Ying-Shing, He Jufang
Department of Rehabilitation Sciences, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, China.
J Neurosci. 2004 Mar 24;24(12):3060-9. doi: 10.1523/JNEUROSCI.4897-03.2004.
In the present study, we investigated the auditory responses of the medial geniculate (MGB) neurons, through in vivo intracellular recordings of anesthetized guinea pigs, while the auditory cortex was electrically activated. Of the 63 neurons that received corticofugal modulation of the membrane potential, 30 received potentiation and 33 received hyperpolarization. The corticofugal potentiation of the membrane potential (amplitude, mean +/- SD, 8.6 +/- 5.5 mV; duration, 125.5 +/- 75.4 msec) facilitated the auditory responses and spontaneous firing of the MGB neurons. The hyperpolarization of -11.3 +/- 4.9 mV in amplitude and 210.0 +/- 210.1 msec in duration suppressed the auditory responses and spontaneous firing of the MGB neurons. Four of the five neurons that were histologically confirmed to be located in the lemniscal MGB received corticofugal facilitatory modulation, and all of the four neurons that were confirmed to be located in the non-lemniscal MGB received corticofugal inhibitory modulation. The present intracellular recording provides novel results on how the corticofugal projection gates the sensory information in the thalamus: via the spatially selective depolarization of lemniscal MGB neurons and hyperpolarization of non-lemniscal MGB neurons. It is speculated that the systematic selectivity of facilitation and inhibition over the lemniscal and non-lemniscal MGB is related to the attention shift within the auditory modality and across the sensory modalities.
在本研究中,我们通过对麻醉的豚鼠进行体内细胞内记录,研究了内侧膝状体(MGB)神经元的听觉反应,同时对听觉皮层进行电激活。在63个接受皮层离心性膜电位调制的神经元中,30个接受增强,33个接受超极化。膜电位的皮层离心性增强(幅度,平均值±标准差,8.6±5.5 mV;持续时间,125.5±75.4毫秒)促进了MGB神经元的听觉反应和自发放电。幅度为-11.3±4.9 mV、持续时间为210.0±210.1毫秒的超极化抑制了MGB神经元的听觉反应和自发放电。组织学证实位于lemniscal MGB的5个神经元中有4个接受皮层离心性促进调制,而所有证实位于非lemniscal MGB的4个神经元均接受皮层离心性抑制调制。目前的细胞内记录提供了关于皮层离心投射如何在丘脑中筛选感觉信息的新结果:通过lemniscal MGB神经元的空间选择性去极化和非lemniscal MGB神经元的超极化。据推测,对lemniscal和非lemniscal MGB促进和抑制的系统选择性与听觉模态内和跨感觉模态的注意力转移有关。