EarSpiro: Earphone-based Spirometry for Lung Function Assessment
Wentao Xie, Qingyong Hu, Jin Zhang, Qian Zhang
摘要
Spirometry is the gold standard for evaluating lung functions. Recent research has proposed that mobile devices can measure lung function indices cost-efficiently. However, these designs fall short in two aspects. First, they cannot provide the flow-volume (F-V) curve, which is more informative than lung function indices. Secondly, these solutions lack inspiratory measurement, which is sensitive to lung diseases such as variable extrathoracic obstruction. In this paper, we present EarSpiro, an earphone-based solution that interprets the recorded airflow sound during a spirometry test into an F-V curve, including both the expiratory and inspiratory measurements. EarSpiro leverages a convolutional neural network (CNN) and a recurrent neural network (RNN) to capture the complex correlation between airflow sound and airflow speed. Meanwhile, EarSpiro adopts a clustering-based segmentation algorithm to track the weak inspiratory signals from the raw audio recording to enable inspiratory measurement. We also enable EarSpiro with daily mouthpiece-like objects such as a funnel using transfer learning and a decoder network with the help of only a few true lung function indices from the user. Extensive experiments with 60 subjects show that EarSpiro achieves mean errors of 0.20L/s and 0.42L/s for expiratory and inspiratory flow rate estimation, and 0.61L/s and 0.83L/s for expiratory and inspiratory F-V curve estimation. The mean correlation coefficient between the estimated F-V curve and the true one is 0.94. The mean estimation error for four common lung function indices is 7.3%.
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引用它的顶会 Paper5
- DeepBreath: Breathing Exercise Assessment with a Depth CameraWentao Xie, Chi Xu, Yanbin Gong, Yu Wang 等UbiComp 2024 · 被引用 11 次
- EarMeter: Continuous Respiration Volume Monitoring with EarablesYang Liu, Qiang Yang, Kayla-Jade Butkow, Jake Stuchbury-Wass 等UbiComp 2026 · 被引用 6 次
- A Survey of Earable Technology: Trends, Tools, and the Road AheadChangshuo Hu, Qiang Yang, Yang Liu, Tobias Röddiger 等UbiComp 2026 · 被引用 4 次
- EasySpiro: Assessing Lung Function via Arbitrary Exhalations on Commodity EarphonesChi Xu, Wentao Xie, Baichen Yang, Yizhen Zhang 等MobiCom 2025 · 被引用 3 次
- ESPIRO: Natural Pulmonary Function Monitoring via Earphone-Acquired SpeechYetong Cao, Dong Ma, Wentao Xie, Qian Zhang 等MobiCom 2025 · 被引用 3 次
它引用的顶会 Paper4
- SpiroSonic: monitoring human lung function via acoustic sensing on commodity smartphonesXingzhe Song, Boyuan Yang, Ge Yang, Ruirong Chen 等MobiCom 2020 · 被引用 97 次
- EarDynamic: An Ear Canal Deformation Based Continuous User Authentication Using In-Ear WearablesZi Wang, Sheng Tan, Linghan Zhang, Yili Ren 等UbiComp 2021 · 被引用 83 次
- EarSense: earphones as a teeth activity sensorJay Prakash, Zhijian Yang, Yu-Lin Wei, Haitham Hassanieh 等MobiCom 2020 · 被引用 67 次
- Ear-AR: indoor acoustic augmented reality on earphonesZhijian Yang, Yu-Lin Wei, Sheng Shen, Romit Roy ChoudhuryMobiCom 2020 · 被引用 47 次
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