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利用可穿戴生物阻抗检测呼吸相来估计呼吸模式参数。

Detection of Respiratory Phases to Estimate Breathing Pattern Parameters using Wearable Bioimpendace.

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2021 Nov;2021:5508-5511. doi: 10.1109/EMBC46164.2021.9630811.

Abstract

Many studies have focused on novel noninvasive techniques to monitor respiratory rate such as bioimpedance. We propose an algorithm to detect respiratory phases using wearable bioimpedance to compute time parameters like respiratory rate, inspiratory and expiratory times, and duty cycle. The proposed algorithm was compared with two other algorithms from literature designed to estimate the respiratory rate using physiological signals like bioimpedance. We acquired bioimpedance and airflow from 50 chronic obstructive pulmonary disease (COPD) patients during an inspiratory loading protocol. We compared performance of the algorithms by computing accuracy and mean average percentage error (MAPE) between the bioimpedance parameters and the reference parameters from airflow. We found similar performance for the three algorithms in terms of accuracy (>0.96) and respiratory time and rate errors (<3.42 %). However, the proposed algorithm showed lower MAPE in duty cycle (10.18 %), inspiratory time (10.65 %) and expiratory time (8.61 %). Furthermore, only the proposed algorithm kept the statistical differences in duty cycle between COPD severity levels that were observed using airflow. Accordingly, we suggest bioimpedance to monitor breathing pattern parameters in home situations.Clinical relevance- This study exhibits the suitability of wearable thoracic bioimpedance to detect respiratory phases and to compute accurate breathing pattern parameters.

摘要

许多研究都集中在新型无创技术上,以监测呼吸频率,如生物阻抗。我们提出了一种使用可穿戴式生物阻抗来检测呼吸相位的算法,以计算呼吸频率、吸气和呼气时间以及占空比等时间参数。将所提出的算法与文献中设计的另外两种算法进行了比较,这些算法旨在使用生物阻抗等生理信号来估计呼吸频率。我们在吸气负荷协议期间从 50 名慢性阻塞性肺疾病(COPD)患者中获取了生物阻抗和气流。我们通过计算生物阻抗参数与气流参考参数之间的准确性和平均平均百分比误差(MAPE)来比较算法的性能。我们发现这三种算法在准确性(>0.96)和呼吸时间和速率误差(<3.42%)方面的性能相似。然而,所提出的算法在占空比(10.18%)、吸气时间(10.65%)和呼气时间(8.61%)方面的 MAPE 较低。此外,只有所提出的算法保持了使用气流观察到的 COPD 严重程度水平之间在占空比方面的统计差异。因此,我们建议在家庭环境中使用胸部可穿戴式生物阻抗来监测呼吸模式参数。临床意义- 本研究表明,可穿戴式胸部生物阻抗可用于检测呼吸相位,并计算准确的呼吸模式参数。

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