Assessment of Vestigial Auriculomotor Activity to Acoustic Stimuli Using Electrodes In and Around the Ear.

IF 2.6 2区 医学 Q1 AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGY
Andreas Schroeer, Martin Rune Andersen, Mike Lind Rank, Ronny Hannemann, Eline Borch Petersen, Filip Marchman Rønne, Daniel J Strauss, Farah I Corona-Strauss
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Abstract

Recently, it has been demonstrated that electromyographic (EMG) activity of auricular muscles in humans, especially the postauricular muscle (PAM), depends on the spatial location of auditory stimuli. This observation has only been shown using wet electrodes placed directly on auricular muscles. To move towards a more applied, out-of-the-laboratory setting, this study aims to investigate if similar results can be obtained using electrodes placed in custom-fitted earpieces. Furthermore, with the exception of the ground electrode, only dry-contact electrodes were used to record EMG signals, which require little to no skin preparation and can therefore be applied extremely fast. In two experiments, auditory stimuli were presented to ten participants from different spatial directions. In experiment 1, stimuli were rapid onset naturalistic stimuli presented in silence, and in experiment 2, the corresponding participant's first name, presented in a "cocktail party" environment. In both experiments, ipsilateral responses were significantly larger than contralateral responses. Furthermore, machine learning models objectively decoded the direction of stimuli significantly above chance level on a single trial basis (PAM: 80%, in-ear: 69%). There were no significant differences when participants repeated the experiments after several weeks. This study provides evidence that auricular muscle responses can be recorded reliably using an almost entirely dry-contact in-ear electrode system. The location of the PAM, and the fact that in-ear electrodes can record comparable signals, would make hearing aids interesting devices to record these auricular EMG signals and potentially utilize them as control signals in the future.

Abstract Image

Abstract Image

Abstract Image

耳内和耳周围电极对听觉刺激的残余动耳活动的评估。
近年来,研究表明,人类耳肌,特别是耳后肌的肌电图(EMG)活动取决于听觉刺激的空间位置。这一观察结果仅使用直接放置在耳廓肌肉上的湿电极来显示。为了向更实用的实验室外环境迈进,这项研究旨在调查使用放置在定制耳机中的电极是否可以获得类似的结果。此外,除了接地电极之外,仅使用干接触电极来记录EMG信号,这几乎不需要皮肤准备,因此可以非常快速地应用。在两个实验中,从不同的空间方向向十名参与者提供听觉刺激。在实验1中,刺激是在沉默中呈现的快速自然刺激,而在实验2中,相应参与者的名字是在“鸡尾酒会”环境中呈现的。在两个实验中,同侧反应明显大于对侧反应。此外,机器学习模型在单次试验的基础上客观地解码了显著高于机会水平的刺激方向(PAM:≈80%,耳内:≈69%)。当参与者在几周后重复实验时,没有显著差异。这项研究提供了证据,证明使用几乎完全干接触的耳电极系统可以可靠地记录耳廓肌肉反应。PAM的位置,以及耳内电极可以记录类似信号的事实,将使助听器成为记录这些耳廓EMG信号的有趣设备,并有可能在未来将其用作控制信号。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Trends in Hearing
Trends in Hearing AUDIOLOGY & SPEECH-LANGUAGE PATHOLOGYOTORH-OTORHINOLARYNGOLOGY
CiteScore
4.50
自引率
11.10%
发文量
44
审稿时长
12 weeks
期刊介绍: Trends in Hearing is an open access journal completely dedicated to publishing original research and reviews focusing on human hearing, hearing loss, hearing aids, auditory implants, and aural rehabilitation. Under its former name, Trends in Amplification, the journal established itself as a forum for concise explorations of all areas of translational hearing research by leaders in the field. Trends in Hearing has now expanded its focus to include original research articles, with the goal of becoming the premier venue for research related to human hearing and hearing loss.
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