# Comparison of inspiratory and expiratory lung and lobe volumes among supine, standing, and sitting positions using conventional and upright CT

**Authors:** Yoshitake Yamada, Minoru Yamada, Shotaro Chubachi, Yoichi Yokoyama, Shiho Matsuoka, Akiko Tanabe, Yuki Niijima, Mitsuru Murata, Koichi Fukunaga, Masahiro Jinzaki

PMC · DOI: 10.1038/s41598-020-73240-8 · 2020-10-01

## TL;DR

This study compares lung and lobe volumes in different body positions using CT scans and finds that upright positions yield higher lung volumes than the supine position.

## Contribution

The study is the first to compare unilateral lung and lobe volumes across supine, standing, and sitting positions using CT.

## Key findings

- Inspiratory and expiratory lung and lobe volumes were significantly higher in standing/sitting positions than in the supine position.
- The expiratory right middle lobe volume was significantly lower in standing/sitting positions compared to the supine position.
- Upright CT showed stronger correlations with pulmonary function tests than conventional supine CT for lung capacity measurements.

## Abstract

Currently, no clinical studies have compared the inspiratory and expiratory volumes of unilateral lung or of each lobe among supine, standing, and sitting positions. In this prospective study, 100 asymptomatic volunteers underwent both low-radiation-dose conventional (supine position, with arms raised) and upright computed tomography (CT) (standing and sitting positions, with arms down) during inspiration and expiration breath-holds and pulmonary function test (PFT) on the same day. We compared the inspiratory/expiratory lung/lobe volumes on CT in the three positions. The inspiratory and expiratory bilateral upper and lower lobe and lung volumes were significantly higher in the standing/sitting positions than in the supine position (5.3–14.7% increases, all P < 0.001). However, the inspiratory right middle lobe volume remained similar in the three positions (all P > 0.15); the expiratory right middle lobe volume was significantly lower in the standing/sitting positions (16.3/14.1% decrease) than in the supine position (both P < 0.0001). The Pearson’s correlation coefficients (r) used to compare the total lung volumes on inspiratory CT in the supine/standing/sitting positions and the total lung capacity on PFT were 0.83/0.93/0.95, respectively. The r values comparing the total lung volumes on expiratory CT in the supine/standing/sitting positions and the functional residual capacity on PFT were 0.83/0.85/0.82, respectively. The r values comparing the total lung volume changes from expiration to inspiration on CT in the supine/standing/sitting positions and the inspiratory capacity on PFT were 0.53/0.62/0.65, respectively. The study results could impact preoperative CT volumetry of the lung in lung cancer patients (before lobectomy) for the prediction of postoperative residual pulmonary function, and could be used as the basis for elucidating undetermined pathological mechanisms. Furthermore, in addition to morphological evaluation of the chest, inspiratory and expiratory upright CT may be used as an alternative tool to predict lung volumes such as total lung capacity, functional residual capacity, and inspiratory capacity in situation in which PFT cannot be performed such as during an infectious disease pandemic, with relatively more accurate predictability compared with conventional supine CT.

## Linked entities

- **Diseases:** lung cancer (MONDO:0005138)

## Full-text entities

- **Diseases:** dyslipidemia (MESH:D050171), infectious disease (MESH:D003141), collapse of the right middle lobe (MESH:D008878), dysuria (MESH:D053159), diabetes (MESH:D003920), nodules (MESH:D016606), pneumonia (MESH:D011014), COVID-19 (MESH:D000086382), lobectomy (MESH:D020232), pulmonary diseases (MESH:D008171), hypertension (MESH:D006973), COVID-19 pneumonia (MESH:D018352), lung cancer (MESH:D008175)
- **Species:** Homo sapiens (human, species) [taxon 9606], Dipturus trachyderma (ray, species) [taxon 255564]

## Figures

3 figures with captions in the complete paper: https://tomesphere.com/paper/PMC7530723/full.md

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Source: https://tomesphere.com/paper/PMC7530723