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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >COMPENSATORY PROJECTIONS OF PRIMARY SENSORY FIBERS IN LUMBAR SPINAL CORD AFTER NEONATAL THORACIC SPINAL TRANSECTION IN RATS
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COMPENSATORY PROJECTIONS OF PRIMARY SENSORY FIBERS IN LUMBAR SPINAL CORD AFTER NEONATAL THORACIC SPINAL TRANSECTION IN RATS

机译:新生大鼠胸椎脊髓横断后腰椎脊髓中主要感觉纤维的补偿性投射

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摘要

Complete spinal transection in adult rats results in poor recovery of hind limb function, whereas significant spontaneous recovery can occur following spinal cord transection in rat neonates. The mechanisms underlying the recovery, however, are poorly understood. Recent studies in rodents suggested that the recovery is not due to axonal regeneration, but rather due to reorganization of the neural circuits in the spinal cord below the injury site, including central pattern generators. Few studies have reported histological evidence for changes in the primary sensory fibers or terminals. Thus, in the present study, we transected spinal cords of rats at thoracic level 8 at postnatal day 5. Four weeks after the injury, biotinylated-dextran amine (BDA), an anterograde tracer, was injected into the dorsal root ganglion of the lumbar spinal cord to examine the localization of sensory fibers and their terminal buttons in the spinal cord. BDA-positive axons in the rat spinal cord following neonatal spinal transection (neo ST) were longer than those in sham-operated or normal rats. The number of terminal buttons was also higher in spinal cords of neo ST rats compared with sham-operated or normal rats. These findings suggest that sensory fibers project more strongly and make more synapses following neo ST to compensate for the lack of supraspinal projections. (C) 2015 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:成年大鼠的完全脊髓横断导致后肢功能恢复较差,而大鼠新生儿横断后脊髓可发生明显的自发恢复。然而,对恢复的机制了解得很少。啮齿动物的最新研究表明,恢复不是由于轴突再生,而是由于损伤部位下方的脊髓神经回路的重组,包括中央模式发生器。很少有研究报道主要感觉纤维或末端改变的组织学证据。因此,在本研究中,我们在出生后第5天以大鼠的胸廓水平8切断了大鼠的脊髓。损伤后四周,将生物素化的葡聚糖胺(BDA)(顺行示踪剂)注射到腰背根神经节中。脊髓以检查感觉纤维及其在脊髓中的末端纽扣的定位。新生脊髓横断(neo ST)后,大鼠脊髓中的BDA阳性轴突比假手术或正常大鼠中的更长。与假手术或正常大鼠相比,新ST大鼠的脊髓末端纽扣数量也更高。这些发现表明,感觉神经纤维在新ST段后突出更强,并产生更多的突触,以弥补脊髓上突缺乏。 (C)2015年IBRO。由Elsevier Ltd.出版。保留所有权利。

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