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使用呼吸音估算潮气量。

Tidal Volume Level Estimation Using Respiratory Sounds.

机构信息

Graduate School of Science and Engineering, Yamaguchi University, Yamaguchi, Japan.

出版信息

J Healthc Eng. 2023 Feb 16;2023:4994668. doi: 10.1155/2023/4994668. eCollection 2023.

Abstract

Respiratory sounds have been used as a noninvasive and convenient method to estimate respiratory flow and tidal volume. However, current methods need calibration, making them difficult to use in a home environment. A respiratory sound analysis method is proposed to estimate tidal volume levels during sleep qualitatively. Respiratory sounds are filtered and segmented into one-minute clips, all clips are clustered into three categories: normal breathing/snoring/uncertain with agglomerative hierarchical clustering (AHC). Formant parameters are extracted to classify snoring clips into simple snoring and obstructive snoring with the -means algorithm. For simple snoring clips, the tidal volume level is calculated based on snoring last time. For obstructive snoring clips, the tidal volume level is calculated by the maximum breathing pause interval. The performance of the proposed method is evaluated on an open dataset, PSG-Audio, in which full-night polysomnography (PSG) and tracheal sound were recorded simultaneously. The calculated tidal volume levels are compared with the corresponding lowest nocturnal oxygen saturation (LoO) data. Experiments show that the proposed method calculates tidal volume levels with high accuracy and robustness.

摘要

呼吸声已被用作一种无创且方便的方法来估计呼吸流量和潮气量。然而,目前的方法需要校准,因此难以在家庭环境中使用。本文提出了一种呼吸音分析方法,用于定性估计睡眠期间的潮气量水平。呼吸声被过滤并分割成一分钟的片段,所有片段都使用凝聚层次聚类(AHC)聚类成三个类别:正常呼吸/打鼾/不确定。使用 -means 算法提取共振峰参数,将打鼾片段分类为单纯性打鼾和阻塞性打鼾。对于单纯性打鼾片段,根据上次打鼾计算潮气量水平。对于阻塞性打鼾片段,通过最大呼吸暂停间隔计算潮气量水平。在 PSG-Audio 公开数据集上评估了所提出方法的性能,该数据集同时记录了整夜多导睡眠图(PSG)和气管音。计算出的潮气量水平与相应的最低夜间氧饱和度(LoO)数据进行比较。实验表明,所提出的方法可以准确稳健地计算潮气量水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/946f/9949945/08b3621e5d2a/JHE2023-4994668.001.jpg

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