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Trends and Challenges in Neuroengineering: Toward Intelligent Neuroprostheses through Brain-Brain Inspired Systems Communication

机译:神经工程学的趋势和挑战:通过大脑大脑启发系统的交流来实现智能神经假体

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摘要

Future technologies aiming at restoring and enhancing organs function will intimately rely on near-physiological and energy-efficient communication between living and artificial biomimetic systems. Interfacing brain-inspired devices with the real brain is at the forefront of such emerging field, with the term “neurobiohybrids” indicating all those systems where such interaction is established. We argue that achieving a “high-level” communication and functional synergy between natural and artificial neuronal networks in vivo, will allow the development of a heterogeneous world of neurobiohybrids, which will include “living robots” but will also embrace “intelligent” neuroprostheses for augmentation of brain function. The societal and economical impact of intelligent neuroprostheses is likely to be potentially strong, as they will offer novel therapeutic perspectives for a number of diseases, and going beyond classical pharmaceutical schemes. However, they will unavoidably raise fundamental ethical questions on the intermingling between man and machine and more specifically, on how deeply it should be allowed that brain processing is affected by implanted “intelligent” artificial systems. Following this perspective, we provide the reader with insights on ongoing developments and trends in the field of neurobiohybrids. We address the topic also from a “community building” perspective, showing through a quantitative bibliographic analysis, how scientists working on the engineering of brain-inspired devices and brain-machine interfaces are increasing their interactions. We foresee that such trend preludes to a formidable technological and scientific revolution in brain-machine communication and to the opening of new avenues for restoring or even augmenting brain function for therapeutic purposes.
机译:旨在恢复和增强器官功能的未来技术将密切依赖活体和人工仿生系统之间的近乎生理和节能通信。在这种新兴领域中,以大脑为灵感的设备与真实大脑的接口处于最前沿,术语“神经生物杂种”表示建立了这种交互作用的所有那些系统。我们认为,在体内自然和人工神经元网络之间实现“高级”交流和功能协同作用,将使神经生物杂交的异质世界得以发展,其中将包括“生活中的机器人”,但也将包含“智能”神经假体。增强脑功能。智能神经假体的社会和经济影响可能会很强,因为它们将为许多疾病提供新颖的治疗前景,并超越传统的药物方案。但是,他们不可避免地会引发关于人机混合的基本伦理问题,尤其是关于植入“智能”人工系统对大脑加工的影响程度有多深。遵循这种观点,我们为读者提供了关于神经生物杂交领域持续发展和趋势的见识。我们还从“社区建设”的角度来解决这个问题,通过定量书目分析表明,从事大脑启发性设备和脑机接口设计的科学家如何增加他们的互动。我们预见到,这种趋势为脑机通信领域的强大科学技术革命和为治疗目的恢复甚至增强脑功能的新途径开辟了序幕。

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