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Behavioral Assessment of Manual Dexterity in Non-Human Primates

机译:非人类灵长类动物手巧行为的行为评估

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摘要

The corticospinal (CS) tract is the anatomical support of the exquisite motor ability to skillfully manipulate small objects, a prerogative mainly of primates1. In case of lesion affecting the CS projection system at its origin (lesion of motor cortical areas) or along its trajectory (cervical cord lesion), there is a dramatic loss of manual dexterity (hand paralysis), as seen in some tetraplegic or hemiplegic patients. Although there is some spontaneous functional recovery after such lesion, it remains very limited in the adult. Various therapeutic strategies are presently proposed (e.g. cell therapy, neutralization of inhibitory axonal growth molecules, application of growth factors, etc), which are mostly developed in rodents. However, before clinical application, it is often recommended to test the feasibility, efficacy, and security of the treatment in non-human primates. This is especially true when the goal is to restore manual dexterity after a lesion of the central nervous system, as the organization of the motor system of rodents is different from that of primates1,2. Macaque monkeys are illustrated here as a suitable behavioral model to quantify manual dexterity in primates, to reflect the deficits resulting from lesion of the motor cortex or cervical cord for instance, measure the extent of spontaneous functional recovery and, when a treatment is applied, evaluate how much it can enhance the functional recovery.
机译:皮质脊髓(CS)道是精巧的运动能力的解剖学支持,可以熟练地操纵小物体(主要是灵长类动物)的特权。如果病变在其起源(运动皮层区域病变)或沿其轨迹(子宫颈病变)影响CS投影系统,则某些四肢瘫痪或半身不遂患者会明显丧失手部敏捷性(手麻痹) 。尽管在这种病变后有一些自发的功能恢复,但在成年人中仍然非常有限。当前提出了各种治疗策略(例如细胞治疗,中和抑制性轴突生长分子,应用生长因子等),这些策略主要在啮齿动物中发展。但是,在临床应用之前,通常建议在非人灵长类动物中测试该治疗方法的可行性,功效和安全性。当目标是在中枢神经系统受损后恢复手部敏捷时,尤其如此,因为啮齿动物的运动系统组织不同于灵长类动物1,2。此处以猕猴为例,作为量化灵长类动物手灵巧性的合适行为模型,以反映运动皮层或颈索病变引起的缺陷,例如,测量自发功能恢复的程度,并在进行治疗时评估多少可以增强功能恢复。

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