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Development of an electrical impedance based spirometer

机译:基于电阻抗的肺活量计的开发

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Spirometry, or measurement of respiration conventionally involves measurement of the time variation of volume or flow of air breathed in or out through the mouth using an air-flow sensor. Electrical impedance of thorax changes during breathing and conceptually this modality should be applicable in spirometry, but no attempts have been made so far. This paper describes the development of an electrical impedance based spirometer placing electrodes on four limbs so that the whole lung volume may contribute to the measurement. An impedance based measurement system (IBS) consisting of a constant current drive at 11 kHz and necessary voltage measurement circuitry was designed and developed for this purpose. A portable oscilloscope (PicoScope 2208A) was used for acquisition of the measured voltage signal to a PC and an algorithm in Matlab software was used to demodulate the time varying impedance from a carrier signal. The variation of impedance with time during forced expiration as measured by the implemented impedance measurement system was compared with that obtained using a standard bellows type commercial spirometer (Vitalograph) on eight volunteers, between 22 and 32 years of age. The subjects included smokers, non-smokers, and asthma patients. Repeatability of the measurements were satisfactory. The correlation coefficient between the spirogram obtained using the IBS and that obtained using standard spirometer varied from 0.81 to 0.99 indicating preliminary success of the proposed technique. However, a possible source of error is the bending of the body during forced expiration which, if prevented, may give a better outcome. Bangladesh Journal of Medical Physics Vol.9 No.1 2016 17-27.
机译:肺活量测定法或呼吸测量通常涉及使用空气流量传感器测量通过嘴呼吸的空气的体积或流量的时间变化。呼吸过程中胸腔的电阻抗会改变,从概念上讲,这种方式应适用于肺活量测定法,但迄今为止尚未进行任何尝试。本文介绍了一种基于电阻抗的肺活量计的开发方法,该电极在四个肢体上放置了电极,以便整个肺部容积可以有助于测量。为此,设计和开发了一种基于阻抗的测量系统(IBS),该系统由11 kHz的恒定电流驱动器和必要的电压测量电路组成。使用便携式示波器(PicoScope 2208A)采集到PC的测量电压信号,并使用Matlab软件中的算法从载波信号中解调时变阻抗。通过实施的阻抗测量系统测量的强制呼气期间阻抗随时间的变化与使用标准风箱式商用肺活量计(Vitalograph)在八名22至32岁的志愿者中进行了比较。受试者包括吸烟者,非吸烟者和哮喘患者。测量的可重复性令人满意。使用IBS获得的呼吸曲线图和使用标准肺活量计获得的呼吸曲线图之间的相关系数在0.81至0.99之间变化,表明所提出技术的初步成功。但是,可能的错误来源是在强制呼气过程中身体的弯曲,如果避免,则可能会产生更好的结果。孟加拉国医学物理学杂志2016年第9卷第1期17-27。

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