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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Individual auditory thalamic reticular neurons have large and cross-modal sources of cortical and thalamic inputs.
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Individual auditory thalamic reticular neurons have large and cross-modal sources of cortical and thalamic inputs.

机译:单个听觉丘脑网状神经元具有皮质和丘脑输入的大量和交叉模式来源。

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摘要

In the present study, the sources of thalamic and cortical inputs of thalamic reticular nucleus (TRN) neurons were examined by investigating the responses of the TRN neurons to electrical stimulation of different sites in the thalamus and the cortex of the rat. The recurrent excitation of the corticothalamic system that is triggered by electrical stimulation was eliminated by ablating the auditory cortex and by temporarily inactivating the medial geniculate body (MGB), when studying the sources of thalamic and cortical inputs, respectively. Single TRN neurons responded to electrical stimulation of 50-100 muA of the thalamus over a large area (dorsoventrally 1.2-2.4 mm and mediolaterally 1.0-2.3 mm, n=9). Four of 16 auditory TRN neurons responded to electrical stimulation of the lateral geniculate nucleus. The TRN neurons responded to cortical stimulation over a rostrocaudal distance of 2.6+/-0.5 mm (range: 1.5-3.5 mm, n=24) of the auditory cortex. Visual or auditory TRN neurons also responded to electrical stimulation in the auditory or visual cortices, respectively. The present study revealed that each TRN neuron received a wide range of inputs from both ascending thalamic and descending cortical projections. The projection could be cross-modal. Having a strong and lasting inhibition on the thalamus, the TRN neurons are likely to be involved in adjusting global states relating to awareness and attention in the thalamocortical system.
机译:在本研究中,通过研究TRN神经元对大鼠丘脑和皮质不同部位电刺激的反应,检查了丘脑网状核(TRN)神经元的丘脑和皮质输入来源。当分别研究丘脑和皮层输入的来源时,通过消融听觉皮层并暂时使内侧膝状体(MGB)失活,消除了由电刺激触发的皮层丘脑系统的反复兴奋。单个TRN神经元对丘脑50-100μA丘脑的大面积电刺激作出反应(腹侧1.2-2.4 mm,中外侧1.0-2.3 mm,n = 9)。 16个听觉TRN神经元中有4个对外侧膝状核的电刺激作出反应。 TRN神经元在听觉皮层的2.6 +/- 0.5 mm(范围:1.5-3.5 mm,n = 24)的杆尾距内对皮质刺激作出反应。视觉或听觉TRN神经元也分别对听觉或视觉皮层的电刺激作出反应。目前的研究表明,每个TRN神经元都从丘脑的上升和下降的皮质投影接收到各种各样的输入。该预测可以是交叉模式的。 TRN神经元对丘脑有强烈而持久的抑制作用,可能参与调节与丘脑皮质系统中意识和注意力有关的整体状态。

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