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智能手表是否是用于监测噪声暴露以提高公众健康意识和进行耳保护的合适工具?

Are Smartwatches a Suitable Tool to Monitor Noise Exposure for Public Health Awareness and Otoprotection?

作者信息

Fischer Tim, Schraivogel Stephan, Caversaccio Marco, Wimmer Wilhelm

机构信息

Hearing Research Laboratory, ARTORG Center for Biomedical Engineering Research, University of Bern, Bern, Switzerland.

Department of ENT-Head and Neck Surgery, Inselspital, Bern University Hospital, University of Bern, Bern, Switzerland.

出版信息

Front Neurol. 2022 Mar 23;13:856219. doi: 10.3389/fneur.2022.856219. eCollection 2022.

Abstract

INTRODUCTION AND OBJECTIVES

Noise-induced hearing loss (NIHL) and tinnitus are common problems that can be prevented with hearing protection measures. Sound level meters and noise dosimeters enable to monitor and identify health-threatening occupational or recreational noise, but are limited in their daily application because they are usually difficult to operate, bulky, and expensive. Smartwatches, which are becoming increasingly available and popular, could be a valuable alternative to professional systems. Therefore, the aim of this study was to evaluate the applicability of smartwatches for accurate environmental noise monitoring.

METHODS

The A-weighted equivalent continuous sound pressure level ( ) was recorded and compared between a professional sound level meter and a popular smartwatch. Noise exposure was assessed in 13 occupational and recreational settings, covering a large range of sound pressure levels between 35 and 110 dBA. To assess measurement agreement, a Bland-Altman plot, linear regression, the intra-class correlation coefficient, and descriptive statistics were used.

RESULTS

Overall, the smartwatch underestimated the sound level meter measurements by 0.5 dBA (95% confidence interval [0.2, 0.8]). The intra-class correlation coefficient showed excellent agreement between the two devices (ICC = 0.99), ranging from 0.65 (music club) to 0.99 (concert) across settings. The smartwatch's sampling rate decreased significantly with lower sound pressure levels, which could have introduced measurement inaccuracies in dynamic acoustic environments.

CONCLUSIONS

The assessment of ambient noise with the tested smartwatch is sufficiently accurate and reliable to improve awareness of hazardous noise levels in the personal environment and to conduct exploratory clinical research. For professional and legally binding measurements, we recommend specialized sound level meters or noise dosimeters. In the future, smartwatches will play an important role in monitoring personal noise exposure and will provide a widely available and cost-effective measure for otoprotection.

摘要

引言与目的

噪声性听力损失(NIHL)和耳鸣是常见问题,可通过听力保护措施预防。声级计和噪声剂量计能够监测和识别对健康有威胁的职业或娱乐噪声,但因其通常操作困难、体积庞大且价格昂贵,在日常应用中受到限制。日益普及且受欢迎的智能手表可能是专业系统的一个有价值的替代方案。因此,本研究的目的是评估智能手表用于准确环境噪声监测的适用性。

方法

记录并比较专业声级计和一款流行智能手表的A加权等效连续声压级( )。在13个职业和娱乐环境中评估噪声暴露,涵盖35至110 dBA的大范围声压级。为评估测量一致性,使用了布兰德-奥特曼图、线性回归、组内相关系数和描述性统计。

结果

总体而言,智能手表低估了声级计的测量值0.5 dBA(95%置信区间[0.2, 0.8])。组内相关系数显示两种设备之间具有极好的一致性(ICC = 0.99),在不同环境中范围从0.65(音乐俱乐部)到0.99(音乐会)。随着声压级降低,智能手表的采样率显著下降,这可能在动态声学环境中引入测量误差。

结论

使用测试的智能手表评估环境噪声足够准确和可靠,可提高对个人环境中有害噪声水平的认识并进行探索性临床研究。对于专业和具有法律约束力的测量,我们推荐使用专门的声级计或噪声剂量计。未来,智能手表将在监测个人噪声暴露方面发挥重要作用,并将为耳保护提供一种广泛可用且经济高效的措施。

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