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Monkey models of recovery of voluntary hand movement after spinal cord and dorsal root injury

机译:脊髓和背根损伤后手部自主运动恢复的猴子模型

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摘要

The hand is unique to the primate and manual dexterity is at its finest in the human (Napier 1980), so it is not surprising that cervical spinal injuries that even partially block sensorimotor innervation of the hand are frequently debilitating (Anderson 2004). Despite the clinical need to understand the neuronal bases of hand function recovery after spinal and/or nerve injuries, relatively few groups have systematically related subtle changes in voluntary hand use following injury to neuronal mechanisms in the monkey. Human and macaque hand anatomy and function are strikingly similar, which makes the macaque the favored nonhuman primate model for the study of postinjury dexterity. In this review of monkey models of cervical spinal injury that have successfully related voluntary hand use to neuronal responses during the early postinjury months, the focus is on the dorsal rhizotomy (or dorsal rootlet lesion) model developed and used in our laboratory over the last several years. The review also describes macaque monkey models of injuries to the more central cervical spine (e.g., hemisection, dorsal column) that illustrate methods to assess postlesion hand function and that relate it to neurophysiological and neuroanatomical changes. Such models are particularly important for understanding what the sensorimotor pathways are capable of, and for assessing the outcome of therapeutic interventions as they are developed.
机译:手是灵长类动物所特有的,手巧是人类最好的手法(Napier,1980年),因此,甚至部分阻止手的感觉运动神经支配的颈椎脊髓损伤经常使人衰弱也就不足为奇了(Anderson 2004)。尽管临床上需要了解脊柱和/或神经损伤后手功能恢复的神经元基础,但相对而言,相对少数群体在猴子的神经元机制损伤后自愿使用手方面存在系统相关的细微变化。人类和猕猴的手部解剖结构和功能极为相似,这使得猕猴成为研究损伤后灵活性的非人类灵长类动物模型的首选。在这篇关于颈椎脊髓损伤的猴子模型的综述中,该模型已成功地将受伤后早期的自愿手部使用与神经元反应相关联,重点是在过去的几周中我们实验室开发并使用的背脊神经切开术(或背根小叶病变)模型年份。该评价还描述了猕猴对更中央的颈椎(例如,半切面,背柱)的损伤模型,这些模型说明了评估病后手功能的方法并将其与神经生理学和神经解剖学变化联系起来。这样的模型对于理解感觉运动通路的功能以及评估发展起来的治疗干预措施的结果尤其重要。

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