轴突生长对新筛界面发育的控制

G. Ciofani, P. Sergi, J. Carpaneto, V. Raffa, A. Menciassi, P. Dario, X. Navarro, S. Micera
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引用次数: 0

摘要

筛外周神经接口是一种非常有前途的解决方案,可以在外周神经系统和人工装置(特别是截肢者的假肢)之间建立密切的联系。然而,它们存在一些缺点,限制了它们的可用性。因此,我们正在尝试开发基于轴突再生选择性控制的新一代筛界面。在这篇论文中,模拟和初步结果显示了在再生过程中对轴突施加所需轨迹的可能性。这可以通过放置嵌入化学线索的微球来实现,这些化学线索是根据一种突变模型和一种遗传“无模型”算法结合提供的信息来实现的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the control of axonal outgrowing for the development of new sieve interfaces
Sieve peripheral neural interfaces are a very promising solution to develop an intimate connection between the peripheral nervous system and artificial devices (in particular hand prostheses for amputees). However, they present several drawbacks limiting their usability. For this reason we are trying to develop a new generation of sieve interfaces based on the selective control of axonal regeneration. In this manuscript, simulations and preliminary results are shown investigating the possibility of imposing a desired trajectory to the axons during the regeneration. This can be achieved by placing microspheres embedding chemical cues according to the information provided by the combination of a sinaptogenic model and of a genetic "model-free" algorithm.
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