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A Proposal for a Rat Model of Spinal Cord Injury Featuring the Rubrospinal Tract and its Contributions to Locomotion and Skilled Hand Movement

机译:脊髓损伤型脊髓损伤大鼠模型及其对运动和熟练手运动的贡献

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摘要

Spinal cord injury and repair is a dynamic field of research. The development of reliable animal models of traumatic spinal cord injury has been invaluable in providing a wealth of information regarding the pathological consequences and recovery potential of this condition. A number of injury models have been instrumental in the elaboration and the validation of therapeutic interventions aimed at reversing this once thought permanent condition. In general, the study of spinal cord injury and repair is made difficult by both its anatomical complexity and the complexity of the behavior it mediates. In this perspective paper, we suggest a new model for spinal cord investigation that simplifies problems related to both the functional and anatomical complexity of the spinal cord. We begin by reviewing and contrasting some of the most common animal models used for investigating spinal cord dysfunction. We then consider two widely used models of spinal deficit-recovery, one involving the corticospinal tracts (CTS) and the other the rubrospinal tract (RST). We argue that the simplicity of the function of the RST makes it a useful model for studying the cord and its functional repair. We also reflect on two obstacles that have hindered progress in the pre-clinical field, delaying translation to the clinical setup. The first is recovery of function without reconnection of the transected descending fibers and the second is the use of behavioral paradigms that are not under the control of the descending fiber pathway under scrutiny.
机译:脊髓损伤与修复是一个动态的研究领域。在提供有关此病的病理后果和恢复潜力的大量信息方面,开发可靠的创伤性脊髓损伤动物模型具有无价的价值。许多损伤模型在详细阐述和验证旨在逆转这种曾经认为的永久性疾病的治疗性干预措施方面发挥了作用。通常,由于其解剖学上的复杂性及其介导的行为的复杂性,使得脊髓损伤和修复的研究变得困难。在此观点文件中,我们建议了一种用于脊髓研究的新模型,该模型可简化与脊髓功能和解剖结构复杂性相关的问题。我们首先回顾和对比一些用于研究脊髓功能障碍的最常见动物模型。然后,我们考虑两种广泛使用的脊柱缺陷恢复模型,一种涉及皮质脊髓束(CTS),另一种涉及胭脂神经束(RST)。我们认为,RST功能的简单性使其成为研究脐带及其功能修复的有用模型。我们还思考了两个阻碍临床前领域发展的障碍,这延迟了向临床机构的翻译。第一个是功能恢复而无需重新连接横切的下降纤维,第二个是使用行为范例,该行为范例不受审查下的下降纤维路径的控制。

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