Detecting Silent Vocalizations in a Locked-In Subject.

Neuroscience journal Pub Date : 2013-01-01 Epub Date: 2013-11-07 DOI:10.1155/2013/594624
Elina Sarmah, Philip Kennedy
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引用次数: 1

Abstract

Problem Addressed. Decoding of silent vocalization would be enhanced by detecting vocalization onset. This is necessary in order to improve decoding of neural firings and thus synthesize near conversational speech in locked-in subjects implanted with brain computer interfacing devices. Methodology. Cortical recordings were obtained during attempts at inner speech in a mute and paralyzed subject (ER) implanted with a recording electrode to detect and analyze lower beta band peaks meeting the criterion of a minimum 0.2% increase in the power spectrum density (PSD). To provide supporting data, three speaking subjects were used in a similar testing paradigm using EEG signals recorded over the speech area. Results. Conspicuous lower beta band peaks were identified around the time of assumed speech onset. The correlations between single unit firings, recorded at the same time as the continuous neural signals, were found to increase after the lower beta band peaks as compared to before the peaks. Studies in the nonparalyzed control individuals suggested that the lower beta band peaks were related to the movement of the articulators of speech (tongue, jaw, and lips), not to higher order speech processes. Significance and Potential Impact. The results indicate that the onset of silent and overt speech is associated with a sharp peak in lower beta band activity-an important step in the development of a speech prosthesis. This raises the possibility of using these peaks in online applications to assist decoding paradigms being developed to decode speech from neural signal recordings in mute humans.

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在锁定主题中检测无声发声。
问题解决。通过检测发声的开始,可以增强对无声发声的解码。这是必要的,以提高解码的神经放电,从而合成近会话语音锁定受试者植入脑机接口设备。方法。在沉默和瘫痪的受试者(ER)尝试内部言语时,植入记录电极,以检测和分析满足功率谱密度(PSD)最小增加0.2%标准的低β带峰,从而获得皮质记录。为了提供支持数据,在一个类似的测试范式中,使用在言语区记录的脑电图信号对三个说话的受试者进行测试。结果。在假设的语言开始时间前后发现了明显的低β带峰值。与连续神经信号同时记录的单个单元放电之间的相关性发现,在较低的β带峰值之后,与峰值之前相比,它们之间的相关性有所增加。对非瘫痪对照个体的研究表明,较低的β带峰值与语言发音器(舌头、下巴和嘴唇)的运动有关,而与高阶语言过程无关。意义和潜在影响。结果表明,沉默和公开语言的开始与低β带活动的尖峰有关,这是语音假肢发展的重要一步。这提高了在在线应用程序中使用这些峰值来辅助解码范例的可能性,这些范例正在开发中,用于解码哑巴人类的神经信号记录。
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