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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Axons of Individual Dorsal Horn Neurons Bifurcated to Project in Both the Anterolateral and the Postsynaptic Dorsal Column Systems
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Axons of Individual Dorsal Horn Neurons Bifurcated to Project in Both the Anterolateral and the Postsynaptic Dorsal Column Systems

机译:单个背圈神经元的轴突分叉以突触前柱和突触后柱柱系统分叉突出

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摘要

Sensory information stimulates receptors of somatosensory system neurons generating a signal that codifies the characteristics of peripheral stimulation. This information reaches the spinal cord and is relayed to supra-spinal structures through two main systems: the postsynaptic dorsal column-medial lemniscal (DC-ML) and the anterolateral (AL) systems. From the classical point of view, the DC-ML has an ipsilateral ascending pathway to the Gracilis (GRA) or Cuneate (CUN) nuclei and the AL has a contralateral ascending pathway to the ventral posterolateral (VPL) thalamic nucleus. These two systems have been the subject of multiple studies that established their independence and interactions. To analyze the ascending projections of L1-L5 spinal dorsal horn neurons in the rat, two retrograde neuronal tracers were injected into the GRA and the VPL. Additionally, an electrophysiological study was performed by applying electrical stimulation at the GRA or VPL and recording antidromic evoked activity in single unit spinal cord cells. Importantly, a subset of spinal dorsal horn neurons exhibited double staining, indicating that these neurons projected to both the GRA and the VPL. These double-stained neurons were located on both sides of the dorsal horn of the spinal cord. The spinal dorsal horn neurons exhibited antidromic and collision activities in response to both GRA and VPL electrical activation. These results show spinal cord neurons with bifurcated bilateral projections to both the DC-ML and AL systems. Based on these results, we named these neurons bilateral and bifurcated cells. (C) 2017 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:感官信息刺激躯体感觉系统神经元的受体产生,产生编码外围刺激特性的信号。该信息达到脊髓,通过两个主系统转发到Supra-Spinal结构:突触后的背侧柱中间Lemniscal(DC-ML)和前外侧(Al)系统。从经典的角度来看,DC-ML具有对Gracilis(GRA)或楔子(CUN)核(CUN)核的同侧上升途径,并且Al具有对对侧上升途径的腹侧后侧(VPL)丘脑核。这两个系统一直是多项研究的主题,建立了其独立性和互动。为了分析大鼠L1-L5脊髓喇叭神经元的升序,将两个逆行神经元示踪剂注入GRA和VPL中。另外,通过在单位脊髓细胞中施加电刺激和记录抗体诱发活性来进行电生理学研究。重要的是,脊髓背角神经元的子集表现出双重染色,表明这些神经元向GRA和VPL突出。这些双染色的神经元位于脊髓背角的两侧。脊髓背角神经元响应GRA和VPL电激活而表现出抗杀虫和碰撞活动。这些结果显示脊髓神经元与DC-ML和Al系统两侧具有分叉的双侧突起。基于这些结果,我们将这些神经元双侧和分叉细胞命名。 (c)2017年IBRO。 elsevier有限公司出版。保留所有权利。

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