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使用手机进行肌电图(EMG)免费的听觉惊跳反射监测:与姿势相关反应的声音参数的影响。

EMG-Free Monitorization of the Acoustic Startle Reflex with a Mobile Phone: Implications of Sound Parameters with Posture Related Responses.

机构信息

Department of Anatomy, School of Biomedical Sciences, University Of Otago, Po Box 56, Dunedin 9054, New Zealand.

Medtech Core, Auckland 1010, New Zealand.

出版信息

Sensors (Basel). 2020 Oct 22;20(21):5996. doi: 10.3390/s20215996.

Abstract

(1) Background: Acute acoustic (sound) stimulus prompts a state of defensive motivation in which unconscious muscle responses are markedly enhanced in humans. The orbicularis oculi (OO) of the eye is an easily accessed muscle common for acoustic startle reaction/response/reflex (ASR) investigations and is the muscle of interest in this study. Although the ASR can provide insights about numerous clinical conditions, existing methodologies (Electromyogram, EMG) limit the usability of the method in real clinical conditions. (2) Objective: With EMG-free muscle recording in mind, our primary aim was to identify and investigate potential correlations in the responses of individual and cooperative OO muscles to various acoustic stimuli using a mobile and wire-free system. Our secondary aim was to investigate potential altered responses to high and also relatively low intensity acoustics at different frequencies in both sitting and standing positions through the use of biaural sound induction and video diagnostic techniques and software. (3) Methods: This study used a mobile-phone acoustic startle response monitoring system application to collect blink amplitude and velocity data on healthy males, aged 18-28 community cohorts during ( = 30) in both sitting and standing postures. The iPhone X application delivers specific sound parameters and detects blinking responses to acoustic stimulus (in millisecond resolution) to study the responses of the blinking reflex to acoustic sounds in standing and sitting positions by using multiple acoustic test sets of different frequencies and amplitudes introduced as acute sound stimuli (<0.5 s). The single acoustic battery of 15 pure-square wave sounds consisted of frequencies and amplitudes between 500, 1000, 2000, 3000, and 4000 Hz scales using 65, 90, and 105 dB (e.g., 3000 Hz_90 dB). (4) Results: Results show that there was a synchronization of amplitude and velocity between both eyes to all acoustic startles. Significant differences ( = 0.01) in blinking reaction time between sitting vs. standing at the high intensity (105 dB) 500 Hz acoustic test set was discovered. Interestingly, a highly significant difference ( < 0.001) in response times between test sets 500 Hz_105 dB and 4000 Hz_105 dB was identified. (5) Conclusions: To our knowledge, this is the first mobile phone-based acoustic battery used to detect and report significant ASR responses to specific frequencies and amplitudes of sound stimulus with corresponding sitting and standing conditions. The results from this experiment indicate the potential significance of using the specific frequency, amplitude, and postural conditions (as never before identified) which can open new horizons for ASR to be used for diagnosis and monitoring in numerous clinical and remote or isolated conditions.

摘要

(1) 背景:急性听觉(声音)刺激会引发防御性动机状态,在此状态下,人类的无意识肌肉反应明显增强。眼轮匝肌(OO)是一种易于触及的肌肉,常用于听觉惊吓反应/反应/反射(ASR)研究,是本研究关注的肌肉。尽管 ASR 可以提供有关许多临床情况的见解,但现有的方法(肌电图,EMG)限制了该方法在实际临床条件下的可用性。(2) 目的:考虑到无肌电图的肌肉记录,我们的主要目的是使用移动和无线系统识别和研究个体和合作 OO 肌肉对各种听觉刺激的反应中的潜在相关性。我们的次要目的是通过双耳声音诱导和视频诊断技术和软件,研究在坐姿和站姿下,不同频率的高(和相对低)强度声音对肌肉反应的潜在变化。(3) 方法:本研究使用手机听觉惊吓反应监测系统应用程序,在坐姿和站姿下,收集 30 名 18-28 岁社区队列的健康男性的眨眼幅度和速度数据。iPhone X 应用程序以毫秒分辨率提供特定的声音参数,并检测眨眼对听觉刺激的反应,以使用不同频率和幅度的多个听觉测试套件(<0.5 秒)作为急性声音刺激来研究眨眼反射对听觉声音的反应。由 15 个纯方波声音组成的单个声学电池的频率和幅度在 500、1000、2000、3000 和 4000 Hz 范围内,使用 65、90 和 105 dB(例如,3000 Hz_90 dB)。(4) 结果:结果表明,所有听觉惊吓都存在双眼幅度和速度的同步。发现高强度(105 dB)500 Hz 听觉测试套件中,坐姿与站姿之间的眨眼反应时间存在显著差异( = 0.01)。有趣的是,在测试套件 500 Hz_105 dB 和 4000 Hz_105 dB 之间发现了反应时间的高度显著差异(<0.001)。(5) 结论:据我们所知,这是第一个基于手机的声学电池,用于检测和报告对特定频率和幅度的声音刺激的显著 ASR 反应,并具有相应的坐姿和站姿条件。该实验的结果表明,使用特定频率、幅度和姿势条件(以前从未确定过)的潜在意义,这可以为 ASR 在众多临床和远程或隔离条件下的诊断和监测开辟新的视野。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6dd2/7660167/6eaeb2cf0581/sensors-20-05996-g001.jpg

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