Literature DB >> 29505487

Pulmonary Function Diagnosis Based on Respiratory Changes in Lung Density With Dynamic Flat-Panel Detector Imaging: An Animal-Based Study.

Rie Tanaka, Tohru Tani1, Norihisa Nitta2, Takahisa Tabata3, Noritsugu Matsutani4, Shintaro Muraoka4, Tsutomu Yoneyama4, Shigeru Sanada5.   

Abstract

OBJECTIVES: The aims of this study were to address the relationship between respiratory changes in image density of the lungs and tidal volume, to compare the changes between affected and unaffected lobes, and to apply this new technique to the diagnosis of atelectasis.
MATERIALS AND METHODS: Our animal care committee approved this prospective animal study. Sequential chest radiographs of 4 pigs were obtained under respiratory control with a ventilator using a dynamic flat-panel detector system. Porcine models of atelectasis were developed, and the correlation between the tidal volume and changes in pixel values measured in the lungs were analyzed. The mean difference in respiratory changes in pixel values between both lungs was tested using paired t tests. To facilitate visual evaluation, respiratory changes in pixel values were visualized in the form of a color display, that is, as changes in color scale.
RESULTS: Average pixel values in the lung regions changed according to forced respiration. High linearity was observed between changes in pixel values and tidal volume in the normal models (r = 0.99). Areas of atelectasis displayed significantly reduced changes in pixel values (P < 0.05). Of all atelectasis models with air trapping and air inflow restriction, 92.7% (19/20) were visualized as color-defective or color-marked areas on functional images, respectively.
CONCLUSION: Dynamic chest radiography allows for the relative evaluation of tidal volume, the detection of ventilation defects in the lobe unit, and a differential diagnosis between air trapping and air inflow restriction, based on respiratory changes in image density of the lungs, even without the use of contrast media.

Entities:  

Mesh:

Year:  2018        PMID: 29505487     DOI: 10.1097/RLI.0000000000000457

Source DB:  PubMed          Journal:  Invest Radiol        ISSN: 0020-9996            Impact factor:   6.016


  5 in total

1.  Dynamic-Ventilatory Digital Radiography in Air Flow Limitation: A Change in Lung Area Reflects Air Trapping.

Authors:  Noriyuki Ohkura; Kazuo Kasahara; Satoshi Watanabe; Johsuke Hara; Miki Abo; Takashi Sone; Hideharu Kimura; Munehisa Takata; Masaya Tamura; Isao Matsumoto; Yusuke Nakade; Shigeru Sanada; Rie Tanaka
Journal:  Respiration       Date:  2020-04-29       Impact factor: 3.580

2.  Dynamic chest radiography: clinical validation of ventilation and perfusion metrics derived from changes in radiographic lung density compared to nuclear medicine imaging.

Authors:  Rie Tanaka; Isao Matsumoto; Masaya Tamura; Munehisa Takata; Shuhei Yoshida; Daisuke Saito; Yusuke Tanaka; Dai Inoue; Noriyuki Ohkura; Kazuo Kasahara
Journal:  Quant Imaging Med Surg       Date:  2021-09

3.  Quantitative analysis of changes in lung density by dynamic chest radiography in association with CT values: a virtual imaging study and initial clinical corroboration.

Authors:  Teruyo Sugiura; Rie Tanaka; Ehsan Samei; William Paul Segars; Ehsan Abadi; Kazuo Kasahara; Noriyuki Ohkura; Masaya Tamura; Isao Matsumoto
Journal:  Radiol Phys Technol       Date:  2022-01-29

Review 4.  Dynamic Chest X-Ray Using a Flat-Panel Detector System: Technique and Applications.

Authors:  Akinori Hata; Yoshitake Yamada; Rie Tanaka; Mizuki Nishino; Tomoyuki Hida; Takuya Hino; Masako Ueyama; Masahiro Yanagawa; Takeshi Kamitani; Atsuko Kurosaki; Shigeru Sanada; Masahiro Jinzaki; Kousei Ishigami; Noriyuki Tomiyama; Hiroshi Honda; Shoji Kudoh; Hiroto Hatabu
Journal:  Korean J Radiol       Date:  2020-11-30       Impact factor: 3.500

5.  Vector-Field dynamic X-ray (VF-DXR) using Optical Flow Method.

Authors:  Takuya Hino; Akinori Tsunomori; Takenori Fukumoto; Akinori Hata; Masako Ueyama; Atsuko Kurosaki; Tsutomu Yoneyama; Sumiya Nagatsuka; Shoji Kudoh; Hiroto Hatabu
Journal:  Br J Radiol       Date:  2021-07-08       Impact factor: 3.629

  5 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.