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A review and consideration on the kinematics of reach-to-grasp movements in macaque monkeys

机译:猕猴猴子克服运动运动学的审查与思考

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The bases for understanding the neuronal mechanisms that underlie the control of reach-tograsp movements among nonhuman primates, particularly macaques, has been widely studied. However, only a few kinematic descriptions of their prehensile actions are available. A thorough understanding of macaques' prehensile movements is manifestly critical, in light of their role in biomedical research as valuable models for studying neuromotor disorders and brain mechanisms, as well as for developing brain-machine interfaces to facilitate arm control. This article aims to review the current state of knowledge on the kinematics of grasping movements that macaques perform in naturalistic, seminaturalistic, and laboratory settings, to answer the following questions: Are kinematic signatures affected by the context within which the movement is performed? In what ways are kinematics of humans' and macaques' prehensile actions similar/dissimilar? Our analysis reflects the challenges involved in making comparisons across settings and species due to the heterogeneous picture in terms of the number of subjects, stimuli, conditions, and hands used. The kinematics of free-ranging macaques are characterized by distinctive features that are exhibited neither by macaques in laboratory setting nor by human subjects. The temporal incidence of key kinematic landmarks diverges significantly between species, indicating disparities in the overall organization of movement. Given such complexities, we attempt a synthesis of the extant body of evidence, intending to generate some significant implications for directions that future research might take to recognize the remaining gaps and pursue the insights and resolutions to generate an interpretation of movement kinematics that accounts for all settings and subjects.
机译:对于理解背后的非人灵长类动物,尤其是猕猴中的伸展式tograsp运动控制神经机制的基础上,已被广泛研究。然而,他们的抓握动作的只有少数运动的描述是可用的。猕猴抓握运动的深入了解是明显的关键,他们在生物医学研究作为研究神经运动障碍和脑机制,以及为开发脑机接口,方便手臂控制有价值的模型作用的光。本文旨在回顾知识的现状抓的是猕猴在自然,seminaturalistic,和实验室进行,回答下列问题运动的运动:是在不进行运动影响的背景下运动的签名?在哪些方面就是人类和猕猴抓握动作的运动学相似/不相似?我们的分析反映了由于异质画面中使用的对象,刺激,条件和手的数量方面参与制作在不同的环境和物种比较的挑战。的自由测距猕猴运动学是由通过在实验室环境猕猴也不是由人类受试者表现出既没有明显的特点来表征。关键运动标志的时间发生物种间显著发散,表明运动的整体组织的差距。鉴于这种复杂性,我们尝试的证据现存体的合成,打算生成方向提出了显著的影响,未来的研究可能需要认识到存在的差距和追求的见解和解决方案,以生成占所有运动运动学的解释设置和科目。

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