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最大用力呼吸和用力呼气动作期间电阻抗断层成像的线性度。

Linearity of electrical impedance tomography during maximum effort breathing and forced expiration maneuvers.

作者信息

Ngo Chuong, Leonhardt Steffen, Zhang Tony, Lüken Markus, Misgeld Berno, Vollmer Thomas, Tenbrock Klaus, Lehmann Sylvia

机构信息

Philips Chair of Medical Information Technology, Helmholtz-Institute for Biomedical Engineering, RWTH Aachen University, Aachen, Germany.

出版信息

Physiol Meas. 2017 Jan;38(1):77-86. doi: 10.1088/1361-6579/38/1/77. Epub 2016 Dec 22.

Abstract

Electrical impedance tomography (EIT) provides global and regional information about ventilation by means of relative changes in electrical impedance measured with electrodes placed around the thorax. In combination with lung function tests, e.g. spirometry and body plethysmography, regional information about lung ventilation can be achieved. Impedance changes strictly correlate with lung volume during tidal breathing and mechanical ventilation. Initial studies presumed a correlation also during forced expiration maneuvers. To quantify the validity of this correlation in extreme lung volume changes during forced breathing, a measurement system was set up and applied on seven lung-healthy volunteers. Simultaneous measurements of changes in lung volume using EIT imaging and pneumotachography were obtained with different breathing patterns. Data was divided into a synchronizing phase (spontaneous breathing) and a test phase (maximum effort breathing and forced maneuvers). The EIT impedance changes correlate strictly with spirometric data during slow breathing with increasing and maximum effort ([Formula: see text]) and during forced expiration maneuvers ([Formula: see text]). Strong correlations in spirometric volume parameters [Formula: see text] ([Formula: see text]), [Formula: see text]/FVC ([Formula: see text]), and flow parameters PEF, [Formula: see text], [Formula: see text], [Formula: see text] ([Formula: see text]) were observed. According to the linearity during forced expiration maneuvers, EIT can be used during pulmonary function testing in combination with spirometry for visualisation of regional lung ventilation.

摘要

电阻抗断层成像(EIT)通过放置在胸部周围的电极测量的电阻抗相对变化,提供有关通气的全局和区域信息。结合肺功能测试,如肺活量测定和体容积描记法,可以获得有关肺通气的区域信息。在潮气呼吸和机械通气期间,阻抗变化与肺容积严格相关。最初的研究推测在用力呼气动作期间也存在相关性。为了量化在用力呼吸期间极端肺容积变化中这种相关性的有效性,建立了一个测量系统并应用于七名肺部健康的志愿者。使用EIT成像和呼吸流速描记法同时测量不同呼吸模式下的肺容积变化。数据分为同步阶段(自主呼吸)和测试阶段(最大用力呼吸和用力动作)。在缓慢呼吸且用力增加和最大用力时([公式:见正文])以及用力呼气动作期间([公式:见正文]),EIT阻抗变化与肺活量测定数据严格相关。观察到肺活量容积参数[公式:见正文]([公式:见正文])、[公式:见正文]/FVC([公式:见正文])以及流量参数PEF、[公式:见正文]、[公式:见正文]、[公式:见正文]([公式:见正文])之间有很强的相关性。根据用力呼气动作期间的线性关系,EIT可在肺功能测试期间与肺活量测定结合使用,以可视化区域肺通气情况。

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