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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >ASCENDING AND DESCENDING PROPRIOSPINAL PATHWAYS BETWEEN LUMBAR AND CERVICAL SEGMENTS IN THE RAT: EVIDENCE FOR A SUBSTANTIAL ASCENDING EXCITATORY PATHWAY
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ASCENDING AND DESCENDING PROPRIOSPINAL PATHWAYS BETWEEN LUMBAR AND CERVICAL SEGMENTS IN THE RAT: EVIDENCE FOR A SUBSTANTIAL ASCENDING EXCITATORY PATHWAY

机译:大鼠腰椎和颈椎节段脊椎上升和下降的途径:明显的兴奋性上升途径的证据

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Precise mechanisms are required to coordinate the locomotor activity of fore- and hind-limbs in quadrupeds and similar mechanisms persist to coordinate movement of arms and legs in humans. Propriospinal neurons (PSNs) are major components of the networks that coordinate these mechanisms. The b subunit of cholera toxin (CTb) was injected unilaterally into either L1 or L3 segments in order to label ascending and descending propriospinal pathways. Labelled cells were examined with light or confocal microscopy. Cells projecting to lumbar segments were evenly distributed, bilaterally throughout all cervical segments. However many more cells were labelled from L1 injections than L3 injections. Roughly 15% of cells in both sides of the C2 segment was found to be immunoreactive for calreti-nin and a small number (4%) was immunoreactive for calbin-din. Axons projecting from L1 to cervical segments formed predominant ipsilateral projections to the cervical intermediate grey matter and ventral horn. Very large numbers of terminals were concentrated within the ventrolateral motor (VLM) nuclei of C7-8 segments but there was sparse inner-vation of the contralateral nucleus. The vast majority (85%) of these axon terminals in the ipsilateral VML was immunoreactive for the vesicular glutamate transporter 2 (VGLUT2) and the remaining 15% was immunoreactive for the vesicular GABA transporter (VGAT); many of these contained GABA and/or glycine. Inhibitory and excitatory terminals were also found in the contralateral VLM. Most of the terminals in the VLM made contacts with motoneurons. The major finding of this study is the existence of a substantial excitatory propriospinal pathway that projects specifically to the VLM. Motoneurons in the VLM supply muscles of the axilla therefore this pathway is likely to have a profound influence on the activity of the shoulder joint. This pathway may synchronise lumbar and cervical pattern generators and hence the coordination of locomotor activity in the fore-and hind limbs.
机译:需要精确的机制来协调四足动物的前肢和后肢的运动活动,并且类似的机制一直在协调人类手臂和腿部的运动。脊椎前神经元(PSN)是协调这些机制的网络的主要组成部分。将霍乱毒素的b亚基(CTb)单侧注射到L1或L3节段中,以标记上升和下降的原脊椎途径。用光镜或共聚焦显微镜检查标记的细胞。投射到腰椎节段的细胞在所有子宫颈节段的两侧均匀分布。但是,从L1注射中标记的细胞要多于L3注射。发现在C2段两侧大约有15%的细胞对钙调蛋白具有免疫反应性,而少数(4%)的细胞对钙调蛋白具有免疫反应性。从L1突出到颈段的轴突形成了到颈中间灰质和腹角的主要同侧突起。大量末端集中在C7-8节的腹侧运动(VLM)核内,但对侧核的神经支配稀疏。在同侧VML中,这些轴突末端的绝大多数(85%)对囊泡谷氨酸转运蛋白2(VGLUT2)具有免疫反应性,其余15%对囊泡GABA转运蛋白(VGAT)具有免疫反应性;其中许多含有GABA和/或甘氨酸。在对侧VLM中也发现了抑制性和兴奋性终末点。 VLM中的大多数终端都与运动神经元接触。这项研究的主要发现是存在实质性的兴奋性脊椎前突通路,该通路专门投射到VLM。 VLM中的动子素可提供腋窝肌肉,因此该途径可能对肩关节的活动产生深远影响。该途径可以使腰椎和颈椎模式发生器同步化,从而使前肢和后肢的运动活动协调。

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