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Body plethysmography--its principles and clinical use.

机译:人体体积描记法-其原理和临床应用。

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Body plethysmography allows to assess functional residual capacity (FRC(pleth)) and specific airway resistance (sRaw) as primary measures. In combination with deep expirations and inspirations, total lung capacity (TLC) and residual volume (RV) can be determined. Airway resistance (Raw) is calculated as the ratio of sRaw to FRC(pleth). Raw is a measure of airway obstruction and indicates the alveolar pressure needed to establish a flow rate of 1 L s(-1). In contrast, sRaw can be interpreted as the work to be performed by volume displacement to establish this flow rate. These measures represent different functional aspects and should both be considered. The measurement relies on the fact that generation of airflow needs generation of pressure. Pressure generation means that a mass of air is compressed or decompressed relative to its equilibrium volume. This difference is called "shift volume". As the body box is sealed and has rigid walls, its free volume experiences the same, mirror image-like shift volume as the lung. This shift volume can be measured via the variation of box pressure. The relationship between shift volume and alveolar pressure is assessed in a shutter maneuver, by identifying mouth and alveolar pressure under zero-flow conditions. These variables are combined to obtain FRC(pleth), sRaw and Raw. This presentation aims at providing the reader with a thorough and precise but non-technical understanding of the working principle of body plethysmography. It also aims at showing that this method yields significant additional information compared to spirometry and even bears a potential for further development.
机译:人体体积描记法可以评估功能残余容量(FRC(pleth))和比气道阻力(sRaw)作为主要指标。结合深层呼气和吸气,可以确定总肺活量(TLC)和残留量(RV)。气道阻力(Raw)计算为sRaw与FRC(容积)之比。 Raw是对气道阻塞的度量,表示建立1 L s(-1)流量所需的肺泡压力。相反,sRaw可以解释为要通过建立体积流量来执行的工作。这些措施代表了不同的功能方面,应同时考虑。该测量基于这样的事实,即气流的产生需要压力的产生。产生压力是指相对于其平衡体积压缩或减压的空气量。这种差异称为“移位量”。由于身体的盒子是密封的,并有坚硬的壁,它的自由体积与肺部一样具有镜像般的移位体积。该移位量可以通过箱内压力的变化来测量。在百叶窗操纵中,通过识别零流量条件下的嘴和肺泡压力来评估换挡量和肺泡压力之间的关系。将这些变量组合以获得FRC(pleth),sRaw和Raw。本演示旨在为读者提供对人体体积描记法工作原理的透彻,精确但非技术性的理解。它还旨在表明与肺活量测定法相比,该方法可产生重要的附加信息,甚至具有进一步开发的潜力。

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