Christensen Jeppe H, Saunders Gabrielle H, Porsbo Michael, Pontoppidan Niels H
Eriksholm Research Centre, Snekkersten, Denmark.
Oticon A/S, Smørum, Denmark.
R Soc Open Sci. 2021 Feb 17;8(2):201345. doi: 10.1098/rsos.201345.
We investigate the short-term association between multidimensional acoustic characteristics of everyday ambient sound and continuous mean heart rate. We used in-market data from hearing aid users who logged ambient acoustics via smartphone-connected hearing aids and continuous mean heart rate in 5 min intervals from their own wearables. We find that acoustic characteristics explain approximately 4% of the fluctuation in mean heart rate throughout the day. Specifically, increases in ambient sound pressure intensity are significantly related to increases in mean heart rate, corroborating prior laboratory and short-term real-world data. In addition, increases in ambient sound quality-that is, more favourable signal to noise ratios-are associated with decreases in mean heart rate. Our findings document a previously unrecognized mixed influence of everyday sounds on cardiovascular stress, and that the relationship is more complex than is seen from an examination of sound intensity alone. Thus, our findings highlight the relevance of ambient environmental sound in models of human ecophysiology.
我们研究了日常环境声音的多维声学特征与连续平均心率之间的短期关联。我们使用了来自助听器用户的市场数据,这些用户通过与智能手机相连的助听器记录环境声学信息,并通过自己的可穿戴设备以5分钟为间隔记录连续平均心率。我们发现,声学特征解释了全天平均心率波动的约4%。具体而言,环境声压强度的增加与平均心率的增加显著相关,这证实了先前的实验室研究和短期现实世界数据。此外,环境声音质量的提高——即更有利的信噪比——与平均心率的降低相关。我们的研究结果证明了日常声音对心血管压力存在此前未被认识到的混合影响,并且这种关系比仅从声音强度检查中所看到的更为复杂。因此,我们的研究结果突出了环境声音在人类生态生理学模型中的相关性。