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大鼠听觉丘脑的lemniscal和非lemniscal突触传递

Lemniscal and non-lemniscal synaptic transmission in rat auditory thalamus.

作者信息

Hu B, Senatorov V, Mooney D

机构信息

Loeb Research Institute, Ottawa Civic Hospital, Canada.

出版信息

J Physiol. 1994 Sep 1;479 ( Pt 2)(Pt 2):217-31. doi: 10.1113/jphysiol.1994.sp020290.

Abstract
  1. The central auditory pathway linking the inferior colliculus (IC) and the medial geniculate body (MGB) of the thalamus consists of a segregated ventral lemniscal and dorsal non-lemniscal projection whose synaptic transmission mechanisms remain unknown. Extracellular and intracellular recordings combined with axonal tract tracing and cell staining were made from lemniscal and non-lemniscal divisions of adult rat MGB maintained acutely in in vitro explants containing parallel tectothalamic projections. 2. Biocytin deposition within the brachium of the IC revealed dense axonal fibres projecting to the MGB. Thin axonal terminals were found throughout the ventral (MGv) and dorsal (MGd) divisions of the MGB. Bushy cells with tufted or bitufted dendritic branches were primarily found in the MGv. In the MGd, cells were mainly seen as stellate neurones having a radiate dendritic arbor. 3. Electrical stimulation of the brachium of IC invariably elicits fast, excitatory synaptic potentials in both MGv and MGd cells. The evoked responses occurred monosynaptically and were exclusively mediated by glutamate acting on both N-methyl-D-aspartate (NMDA) and non-NMDA receptors. Non-lemniscal MGd neurones recorded extracellularly exhibited a strong tendency to discharge in bursts in response to brachium stimulation. In contrast, a large proportion of ventral lemniscal cells tended to discharge in single or dual spikes. Intracellularly, MGd cells, but not MGv cells, showed a predominant, slow synaptic potential mediated by NMDA receptors. 4. It is concluded that the central auditory circuitry linking the tectum and the thalamus is connected monosynaptically via glutamatergic synapses. Lemniscal and non-lemniscal thalamic neurones possess distinct response properties which cannot be accounted for by a differential transmitter system or polysynaptic delays as postulated previously.
摘要
  1. 连接中脑下丘(IC)和丘脑内侧膝状体(MGB)的中枢听觉通路由分离的腹侧丘系和背侧非丘系投射组成,其突触传递机制尚不清楚。我们在含有平行顶盖丘脑投射的体外脑片上,对成年大鼠MGB的丘系和非丘系部分进行了细胞外和细胞内记录,并结合轴突束追踪和细胞染色技术。2. 生物素在IC臂内的沉积显示有密集的轴突纤维投射到MGB。在MGB的腹侧(MGv)和背侧(MGd)部分均发现了细的轴突终末。具有簇状或双簇状树突分支的浓密细胞主要见于MGv。在MGd中,细胞主要表现为具有放射状树突分支的星形神经元。3. 电刺激IC臂总是在MGv和MGd细胞中诱发快速的兴奋性突触电位。诱发反应为单突触反应,完全由谷氨酸作用于N-甲基-D-天冬氨酸(NMDA)和非NMDA受体介导。细胞外记录的非丘系MGd神经元对臂刺激有强烈的爆发性放电倾向。相比之下,大部分腹侧丘系细胞倾向于单次或双次放电。在细胞内记录中,MGd细胞而非MGv细胞表现出由NMDA受体介导的主要的缓慢突触电位。4. 得出的结论是,连接顶盖和丘脑的中枢听觉环路通过谷氨酸能突触单突触连接。丘系和非丘系丘脑神经元具有不同的反应特性,这不能用先前假设的不同递质系统或多突触延迟来解释。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2205/1155741/9b96c51a8ba5/jphysiol00342-0052-a.jpg

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