The speech neuroprosthesis

IF 28.7 1区 医学 Q1 NEUROSCIENCES Nature Reviews Neuroscience Pub Date : 2024-05-14 DOI:10.1038/s41583-024-00819-9
Alexander B. Silva, Kaylo T. Littlejohn, Jessie R. Liu, David A. Moses, Edward F. Chang
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Abstract

Loss of speech after paralysis is devastating, but circumventing motor-pathway injury by directly decoding speech from intact cortical activity has the potential to restore natural communication and self-expression. Recent discoveries have defined how key features of speech production are facilitated by the coordinated activity of vocal-tract articulatory and motor-planning cortical representations. In this Review, we highlight such progress and how it has led to successful speech decoding, first in individuals implanted with intracranial electrodes for clinical epilepsy monitoring and subsequently in individuals with paralysis as part of early feasibility clinical trials to restore speech. We discuss high-spatiotemporal-resolution neural interfaces and the adaptation of state-of-the-art speech computational algorithms that have driven rapid and substantial progress in decoding neural activity into text, audible speech, and facial movements. Although restoring natural speech is a long-term goal, speech neuroprostheses already have performance levels that surpass communication rates offered by current assistive-communication technology. Given this accelerated rate of progress in the field, we propose key evaluation metrics for speed and accuracy, among others, to help standardize across studies. We finish by highlighting several directions to more fully explore the multidimensional feature space of speech and language, which will continue to accelerate progress towards a clinically viable speech neuroprosthesis. A clinically viable speech neuroprosthesis could restore natural speech to individuals with vocal-tract paralysis. In this Review, Silva et al. discuss rapid progress in neural interfaces and computational algorithms for decoding speech from cortical activity and propose evaluation metrics to help standardize speech neuroprostheses.

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语言神经假体
瘫痪后失去语言能力是毁灭性的,但通过直接从完整的大脑皮层活动中解码语言来规避运动通路损伤,有可能恢复自然交流和自我表达。最近的研究发现,声带发音和运动规划皮层表征的协调活动促进了语言产生的关键特征。在这篇综述中,我们将重点介绍这些进展,以及这些进展是如何成功实现语音解码的,首先是在植入颅内电极用于临床癫痫监测的患者身上,随后是在瘫痪患者身上,作为恢复语音的早期可行性临床试验的一部分。我们讨论了高时空分辨率神经接口和最先进的语音计算算法,这些算法在将神经活动解码为文本、可听语音和面部动作方面推动了快速而实质性的进展。尽管恢复自然语音是一个长期目标,但语音神经义肢的性能水平已经超过了当前辅助通信技术所提供的通信速率。鉴于该领域的进展速度加快,我们提出了速度和准确性等关键评估指标,以帮助实现各项研究的标准化。最后,我们强调了更充分探索语音和语言多维特征空间的几个方向,这将继续加速临床上可行的语音神经假体的进展。
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0.60%
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期刊介绍: Nature Reviews Neuroscience is a multidisciplinary journal that covers various fields within neuroscience, aiming to offer a comprehensive understanding of the structure and function of the central nervous system. Advances in molecular, developmental, and cognitive neuroscience, facilitated by powerful experimental techniques and theoretical approaches, have made enduring neurobiological questions more accessible. Nature Reviews Neuroscience serves as a reliable and accessible resource, addressing the breadth and depth of modern neuroscience. It acts as an authoritative and engaging reference for scientists interested in all aspects of neuroscience.
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