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首页> 外文期刊>Journal of reconstructive microsurgery >Bypassing spinal cord injury: surgical reconstruction of afferent and efferent pathways to the urinary bladder after conus medullaris injury in a rat model.
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Bypassing spinal cord injury: surgical reconstruction of afferent and efferent pathways to the urinary bladder after conus medullaris injury in a rat model.

机译:绕过脊髓损伤:在大鼠模型中延髓延髓损伤后,外科手术重建了通往膀胱的传入和传出路径。

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摘要

Afferent and efferent nerve function in the atonic bladder caused by conus medullaris injury in a rat model was established by intradural microanastomosis of the left L5 ventral root (VR) to right S2 VR to restore pure motor-to-motor reinnervation coupled with extradural postganglionic spinal nerve transfer of L5 dorsal root (DR) to S2 DR for pure sensory-to-sensory reinnervation. Early function of the reflex arc was evaluated by electrophysiological study, as well as by intravesicular pressure measurement and histological examination. The results demonstrated that single focal stimulation of the left S2 DR elicited evoked potentials at the left vesicular plexus before and after horizontal spinal cord damage between the L6 and S4 level. Bladder contraction was successfully initiated by trains of stimuli targeting the left L5-S2 DR anastomosis. Achievable bladder pressures and amplitude of bladder smooth muscle complex action potentials were unchanged before and after induced paraplegia and comparable to those of the control. Prominent axonal sprouting was seen in the distal part of nerve graft. Both afferent and efferent nerve pathways in the atonic bladder can be reconstructed by suprasacral motor-to-motor and sensory-to-sensory nerve transfer after spinal cord injury in rats. This reconstructive strategy has significant potential in clinical application.
机译:通过左L5腹侧根(VR)到右S2 VR的硬膜内微吻合术,建立由圆锥延髓损伤在大鼠模型中所致的肛门性膀胱的传入和传出神经功能,以恢复纯运动间神经支配以及硬膜外神经节后脊髓从L5背根(DR)到S2 DR的神经转移,以进行纯粹的感官到神经的再支配。反射弧的早期功能通过电生理研究以及囊内压力测量和组织学检查进行评估。结果表明,左S2 DR的单灶刺激在L6和S4水平之间的水平脊髓损伤之前和之后在左水泡神经丛中诱发诱发电位。通过针对左L5-S2 DR吻合的一系列刺激成功地引发了膀胱收缩。在诱发截瘫之前和之后,可达到的膀胱压力和膀胱平滑肌复合动作电位的幅度均未改变,与对照组相当。在神经移植物的远端可见明显的轴突发芽。在大鼠脊髓损伤后,motor上运动到运动和感觉到感觉的神经转移都可以重建无力膀胱中的传入和传出神经通路。这种重建策略在临床应用中具有巨大潜力。

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