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Rat models of traumatic spinal cord injury to assess motor recovery

机译:脊髓外伤大鼠模型以评估运动恢复

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Devastating motor, sensory, and autonomic dysfunctions render long-term personal hardships to the survivors of traumatic spinal cord injury (SCI). The suffering also extends to the survivors' families and friends, who endure emotional, physical, and financial burdens in providing for necessary surgeries, care, and rehabilitation. After the primary mechanical SCI, there is a complex secondary injury cascade that leads to the progressive death of otherwise potentially viable axons and cells and that impairs endogenous recovery processes. Investigations of possible cures and of ways to alleviate the hardships of traumatic SCI include those of interventions that attenuate or overcome the secondary injury cascade, enhance the endogenous repair mechanisms, regenerate axons, replace lost cells, and rehabilitate. These investigations have led to the creation of laboratory animal models of the different types of traumatic human SCI and components of the secondary injury cascade. However, no particular model completely addresses all aspects of traumatic SCI. In this article, we describe adult rat SCI models and the motor, and in some cases sensory and autonomic, deficits that each produces. Importantly, as researchers in this area move toward clinical trials to alleviate the hardships of traumatic SCI, there is a need for standardized small and large animal SCI models as well as quantitative behavioral and electrophysiological assessments of their outcomes so that investigators testing various interventions can directly compare their results and correlate them with the molecular, biochemical, and histological alterations.
机译:毁灭性的运动,感觉和自主神经功能障碍给创伤性脊髓损伤(SCI)的幸存者带来长期的个人困难。苦难还扩大到幸存者的家人和朋友,他们在提供必要的手术,护理和康复方面承受着情感,身体和经济负担。在主要机械性SCI之后,有一个复杂的继发性损伤级联反应,导致原本可能存活的轴突和细胞逐渐死亡,并损害了内源性恢复过程。可能的治疗方法和减轻外伤性SCI困难的方法的研究包括减弱或克服继发性损伤级联,增强内源性修复机制,再生轴突,替换丢失的细胞并修复的干预措施。这些研究导致创建了不同类型的人类SCI损伤和继发性损伤级联组件的实验动物模型。但是,没有一个特定的模型可以完全解决创伤性SCI的所有方面。在本文中,我们描述了成年大鼠SCI模型和运动,以及在某些情况下各自产生的感觉和自主神经缺陷。重要的是,随着该领域的研究人员开始临床试验以减轻创伤性SCI的困难,需要标准化的大小动物SCI模型以及对其结果的定量行为和电生理评估,以便测试各种干预措施的研究者可以直接比较他们的结果,并将其与分子,生化和组织学改变相关联。

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