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Investigation of a bioimpedance-based measurement method of diaphragmatic muscle movements during respiratory characteristics

机译:呼吸特征期间膈肌运动的生物阻抗测量方法研究

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The diaphragm is the main inhaling muscle, the dysfunction of which can significantly affect hyperinflation of the lungs, the consequence of which can lead to a more severe exacerbation of Chronic Obstructive Pulmonary Disease (COPD). Diaphragm weakness can develop not only in patients with COPD, but also in patients in critical condition who need breathing machine. The diaphragm movement is mostly assessed with techniques that exposes the patient to risks. The bioimpedance measurement is easy to use, safe and measures directly the detection of respiration parameters. Respiratory motion artefacts impair the quality and reliability of bioimpedance measurement, due to the regular occurrence of parameters causing measurement errors such as residual impedance, parasitic capacitance, generator anomalies, and so on. We created an ultra-low frequency, four-electrodes, digital lock-in measurement procedure which fully displays a dispersion across pure, raw data. This pilot study aim to determine whether bioimpedance technique can lead to measure directly the diaphragmatic dome displacement.
机译:隔膜是主要的吸入肌肉,功能障碍可以显着影响肺的过度血液,其后果可以导致慢性阻塞性肺病(COPD)更严重的加剧。隔膜弱点不仅可以在患有COPD的患者中开发,也可以在需要呼吸机的危急情况下患者。隔膜运动主要通过将患者暴露于风险的技术来评估。生物阻抗测量易于使用,安全,直接测量呼吸参数的检测。由于导致诸如残留阻抗,寄生电容,发电机异常等的测量误差,呼吸运动伪影损害生物阻抗测量的质量和可靠性。我们创建了超低频率,四电极,数字锁定测量过程,它完全显示纯粹的原始数据的分散。该试点研究旨在确定生物阻抗技术是否会导致膈肌圆顶位移。

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