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首页> 外文期刊>Frontiers in Neuroscience >Integration of Nanobots Into Neural Circuits As a Future Therapy for Treating Neurodegenerative Disorders
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Integration of Nanobots Into Neural Circuits As a Future Therapy for Treating Neurodegenerative Disorders

机译:作为治疗神经变性障碍的未来治疗的神经电路整合

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Recent neuroscientific research demonstrates that the human brain is becoming altered by technological devices. Improvements in biotechnologies and computer based technologies are now increasing the likelihood for the development of brain augmentation devices in the next 20 years. We have developed the idea of an “Endomyccorhizae like interface” (ELI) nanocognitive device as a new kind of future neuroprosthetic which aims to facilitate neuronal network properties in individuals with neurodegenerative disorders. The design of our ELI may overcome the problems of invasive neuroprosthetics, post-operative inflammation, and infection and neuroprosthetic degradation. The method in which our ELI is connected and integrated to neuronal networks is based on a mechanism similar to endomyccorhizae which is the oldest and most widespread form of plant symbiosis. We propose that the principle of Endomyccorhizae could be relevant for developing a crossing point between the ELI and neuronal networks. Similar to endomyccorhizae the ELI will be designed to form webs, each of which connects multiple neurons together. The ELI will function to sense action potentials and deliver it to the neurons it connects to. This is expected to compensate for neuronal loss in some neurodegenerative disorders, such as Alzheimer's disease and Parkinson's disease.
机译:最近的神经科学研究表明,人类大脑通过技术设备而变化。现在,生物技术和计算机技术的改进现在正在增加未来20年在未来20年内开发脑增强设备的可能性。我们已经开发了“endomyccorhizae”(Eli)纳米认知装置作为一种新型未来神经调节剂的想法,旨在促进具有神经变性障碍的个体中的神经元网络性质。我们的ELI设计可能会克服侵袭性神经调节剂,术后炎症和感染和神经治疗降解的问题。我们的ELI连接和集成到神经元网络的方法是基于类似于胚胎性植物共生的最古老和最普遍的植物共生形式的机制。我们建议,政府症的原则可以与ELI和神经网络之间的交叉点相关联。类似于EndomyCORHIZAE,ELI将设计成形成纤维网,每一个连接多个神经元。 ELI将起作用,感知动作电位并将其送到它连接的神经元。这预计将弥补一些神经变性障碍的神经元损失,例如阿尔茨海默病和帕金森病。

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