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Bionic hand as artificial organ: Current status and future perspectives

机译:仿生手作为人工器官:现状和未来的观点

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Even though the hand comprises only 1% of our body weight, about 30% of our central nervous systems (CNS) capacity is related to its control. The loss of a hand thus presents not only the loss of the most important tool allowing us to interact with our environment, but also leaves a dramatic sensory-motor deficit that challenges our CNS. Reconstruction of hand function is therefore not only an essential part of restoring body integrity and functional wholeness but also closes the loop of our neural circuits diminishing phantom sensation and neural pain. If biology fails to restore meaningful function, today we can resort to complex mechatronic replacement that have functional capabilities that in some respects even outperform biological alternatives, such as hand transplantation. As with replantation and transplantations, the challenge of bionic replacement is connecting the target with the CNS to achieve natural and intuitive control. In recent years, we have developed a number of strategies to improve neural interfacing, signal extraction, interpretation and stable mechanical attachment that are important parts of our current research. This work gives an overview of recent advances in bionic reconstruction, surgical refinements over technological interfacing, skeletal fixation, and modern rehabilitation tools that allow quick integration of prosthetic replacement.
机译:尽管手只有1%的体重,但大约30%的中枢神经系统(CNS)能力与其控制有关。因此,丢失的手提当不仅丢失了最重要的工具,允许我们与我们的环境互动,而且还留下了挑战我们CNS的戏剧性感官电动机缺陷。因此,手段的重建不仅是恢复身体完整性和功能性的重要组成部分,而且还关闭了我们神经电路的循环递减了幻象感觉和神经疼痛。如果生物学未能恢复有意义的功能,今天我们可以诉诸复杂的机制替代品,其具有功能性能力,即在某些方面的甚至优于现实的生物替代品,如手移植。与重新种植和移植一样,仿生替代的挑战是将靶标与CNS连接,以实现自然和直观的控制。近年来,我们制定了一些改善神经接口,信号提取,解释和稳定的机械连接的策略,这是我们目前研究的重要部分。这项工作概述了初步仿生重建的进步,技术接口,骨骼固定和现代康复工具,允许快速融入假体更换。

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