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首页> 外文期刊>Journal of Neurosurgery. Spine. >Validation of a methodology for neuro-urological and lumbosacral stimulation studies in domestic pigs: a humanlike animal model
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Validation of a methodology for neuro-urological and lumbosacral stimulation studies in domestic pigs: a humanlike animal model

机译:验证国内猪神经泌尿科和腰骶刺激研究的方法:一种人类动物模型

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OBJECTIVE Spinal cord injuries (SCIs) result in loss of movement and sensory feedback, but also organ dysfunction. Nearly all patients with complete SCI lose bladder control and are prone to kidney failure if intermittent catheterization is not performed. Electrical stimulation of sacral spinal roots was initially considered to be a promising approach for restoring continence and micturition control, but many patients are discouraged by the need for surgical deafferentation as it could lead to a loss of sensory functions and reflexes. Nevertheless, recent research findings highlight the renewed interest in spinal cord stimulation (SCS). It is thought that synergic recruitment of spinal fibers could be achieved by stimulating the spinal neural networks involved in regulating physiological processes. Paradoxically, most of these recent studies focused on locomotor issues, while few addressed visceral dysfunction. This could at least partially be attributed to the lack of methodological tools. In this study, the authors aim to fill this gap by presenting a comprehensive method for investigating the potential of SCS to restore visceral functions in domestic pigs, a large-animal model considered to be a close approximation to humans.
机译:目标脊髓损伤(SCIS)导致失去运动和感官反馈,还导致器官功能障碍。几乎所有完全SCI的患者都会丢失膀胱控制,如果没有进行间歇导管插入,则易于肾功能衰竭。最初被认为是恢复肺和测量控制的有希望的方法,但许多患者因手术脱缔,因为它可能导致感官功能和反射丧失的需要。尽管如此,最近的研究发现突出了脊髓刺激(SCS)的再生兴趣。据认为,脊髓纤维的协同募集可以通过刺激调节生理过程的脊柱神经网络来实现。矛盾的是,这些最近的大多数研究都集中在运动问题上,而几个寻址的内脏功能障碍。这至少部分可以归因于缺乏方法论工具。在这项研究中,作者旨在通过提出综合方法来填补这种差距来调查恢复国内猪中的内脏功能的潜力,这是一个被认为是对人类密切逼近的大动物模型。

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