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Reconstruction of the respiratory signal through ECG and wrist accelerometer data

机译:通过ECG和手腕加速度计数据重建呼吸信号

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Respiratory rate and changes in respiratory activity provide important markers of health and fitness. Assessing the breathing signal without direct respiratory sensors can be very helpful in large cohort studies and for screening purposes. In this paper, we demonstrate that long-term nocturnal acceleration measurements from the wrist yield significantly better respiration proxies than four standard approaches of ECG (electrocardiogram) derived respiration. We validate our approach by comparison with flow-derived respiration as standard reference signal, studying the full-night data of 223 subjects in a clinical sleep laboratory. Specifically, we find that phase synchronization indices between respiration proxies and the flow signal are large for five suggested acceleration-derived proxies with $$gamma = 0.55 pm 0.13$$ for males and $$0.58 pm 0.14$$ for females (means ± standard deviations), while ECG-derived proxies yield only $$gamma = 0.36 pm 0.16$$ for males and $$0.39 pm 0.14$$ for females. Similarly, respiratory rates can be determined more precisely by wrist-worn acceleration devices compared with a derivation from the ECG. As limitation we must mention that acceleration-derived respiration proxies are only available during episodes of non-physical activity (especially during sleep).
机译:呼吸率和呼吸活动的变化提供了健康和健身的重要标志。评估没有直接呼吸道传感器的呼吸信号可以非常有助于大队列研究和筛选目的。在本文中,我们证明,手腕的长期夜间加速度测量比ECG(心电图)源呼吸的四种标准方法显着更好地提高了更好的呼吸代理。我们通过与作为标准参考信号的流动呼吸比较来验证我们的方法,研究了临床睡眠实验室中223个受试者的全夜数据。具体地,我们发现呼吸代理和流量信号之间的相位同步指数大对于5个建议的加速衍生的代理,其中5个建议的加速衍生的代理= 0.55 PM 0.13 $$,为男性和0.58 PM 0.14 $$的女性(意思是±标准偏差),而ECG衍生的代理收益率只需$$ Gamma = 0.36 PM 0.16 $$,适用于男性和$ 0.39 PM 0.14 $$适用于女性。类似地,与来自ECG的推导相比,腕带加速装置可以更精确地确定呼吸速率。作为限制,我们必须提及加速推导呼吸代理仅在非身体活动的剧集(特别是在睡眠期间)。

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