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辅助盲人的脑机接口

Brain-Machine Interfaces to Assist the Blind.

作者信息

Ptito Maurice, Bleau Maxime, Djerourou Ismaël, Paré Samuel, Schneider Fabien C, Chebat Daniel-Robert

机构信息

École d'Optométrie, Université de Montréal, Montréal, QC, Canada.

Department of Nuclear Medicine, University of Southern Denmark, Odense, Denmark.

出版信息

Front Hum Neurosci. 2021 Feb 9;15:638887. doi: 10.3389/fnhum.2021.638887. eCollection 2021.

Abstract

The loss or absence of vision is probably one of the most incapacitating events that can befall a human being. The importance of vision for humans is also reflected in brain anatomy as approximately one third of the human brain is devoted to vision. It is therefore unsurprising that throughout history many attempts have been undertaken to develop devices aiming at substituting for a missing visual capacity. In this review, we present two concepts that have been prevalent over the last two decades. The first concept is sensory substitution, which refers to the use of another sensory modality to perform a task that is normally primarily sub-served by the lost sense. The second concept is cross-modal plasticity, which occurs when loss of input in one sensory modality leads to reorganization in brain representation of other sensory modalities. Both phenomena are training-dependent. We also briefly describe the history of blindness from ancient times to modernity, and then proceed to address the that have been used to help blind individuals, with an emphasis on modern technologies, invasive (various type of surgical implants) and non-invasive devices. With the advent of brain imaging, it has become possible to peer into the neural substrates of sensory substitution and highlight the magnitude of the plastic processes that lead to a rewired brain. Finally, we will address the important question of the value and practicality of the available technologies and future directions.

摘要

视力丧失或缺失可能是降临在人类身上最使人丧失能力的事件之一。视力对人类的重要性也反映在大脑解剖结构中,因为人类大脑约三分之一的区域用于视觉。因此,纵观历史,人们多次尝试开发旨在替代缺失视觉能力的设备也就不足为奇了。在这篇综述中,我们介绍了过去二十年来流行的两个概念。第一个概念是感觉替代,它指的是利用另一种感觉模态来执行通常主要由丧失的感觉所服务的任务。第二个概念是跨模态可塑性,当一种感觉模态的输入丧失导致其他感觉模态的大脑表征发生重组时就会出现这种情况。这两种现象都依赖于训练。我们还简要描述了从古代到现代的失明历史,然后着手探讨用于帮助盲人的 ,重点是现代技术、侵入性(各种类型的手术植入物)和非侵入性设备。随着脑成像技术的出现,窥视感觉替代的神经基质并突出导致大脑重新布线的可塑性过程的程度成为可能。最后,我们将探讨现有技术的价值和实用性以及未来方向这个重要问题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a14/7901898/579a06334e43/fnhum-15-638887-g001.jpg

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