Interfacing with the Brain: How Nanotechnology Can Contribute

接口 纳米技术 纳米技术的应用 材料科学 神经科学 计算机科学 心理学 计算机硬件
作者
Abdullah Ahmed Ali Ahmed,Núria Alegret,Bethany Almeida,Ramón A. Álvarez‐Puebla,Anne M. Andrews,Laura Ballerini,Juan J. Barrios‐Capuchino,Charline Becker,Robert H. Blick,Shahin Bonakdar,Indranath Chakraborty,Xiaodong Chen,Jinwoo Cheon,Gerwin Chilla,A.L.C. Conceição,James B. Delehanty,Martin Dulle,Alexander L. Efros,Matthias Epple,Mark Fedyk
出处
期刊:ACS Nano [American Chemical Society]
卷期号:19 (11): 10630-10717 被引量:15
标识
DOI:10.1021/acsnano.4c10525
摘要

Interfacing artificial devices with the human brain is the central goal of neurotechnology. Yet, our imaginations are often limited by currently available paradigms and technologies. Suggestions for brain-machine interfaces have changed over time, along with the available technology. Mechanical levers and cable winches were used to move parts of the brain during the mechanical age. Sophisticated electronic wiring and remote control have arisen during the electronic age, ultimately leading to plug-and-play computer interfaces. Nonetheless, our brains are so complex that these visions, until recently, largely remained unreachable dreams. The general problem, thus far, is that most of our technology is mechanically and/or electrically engineered, whereas the brain is a living, dynamic entity. As a result, these worlds are difficult to interface with one another. Nanotechnology, which encompasses engineered solid-state objects and integrated circuits, excels at small length scales of single to a few hundred nanometers and, thus, matches the sizes of biomolecules, biomolecular assemblies, and parts of cells. Consequently, we envision nanomaterials and nanotools as opportunities to interface with the brain in alternative ways. Here, we review the existing literature on the use of nanotechnology in brain-machine interfaces and look forward in discussing perspectives and limitations based on the authors' expertise across a range of complementary disciplines─from neuroscience, engineering, physics, and chemistry to biology and medicine, computer science and mathematics, and social science and jurisprudence. We focus on nanotechnology but also include information from related fields when useful and complementary.
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