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Normal Lung Quantification in Usual Interstitial Pneumonia Pattern: The Impact of Threshold-based Volumetric CT Analysis for the Staging of Idiopathic Pulmonary Fibrosis

Author

Listed:
  • Hirotsugu Ohkubo
  • Yoshihiro Kanemitsu
  • Takehiro Uemura
  • Osamu Takakuwa
  • Masaya Takemura
  • Ken Maeno
  • Yutaka Ito
  • Tetsuya Oguri
  • Nobutaka Kazawa
  • Ryuji Mikami
  • Akio Niimi

Abstract

Background: Although several computer-aided computed tomography (CT) analysis methods have been reported to objectively assess the disease severity and progression of idiopathic pulmonary fibrosis (IPF), it is unclear which method is most practical. A universal severity classification system has not yet been adopted for IPF. Objective: The purpose of this study was to test the correlation between quantitative-CT indices and lung physiology variables and to determine the ability of such indices to predict disease severity in IPF. Methods: A total of 27 IPF patients showing radiological UIP pattern on high-resolution (HR) CT were retrospectively enrolled. Staging of IPF was performed according to two classification systems: the Japanese and GAP (gender, age, and physiology) staging systems. CT images were assessed using a commercially available CT imaging analysis workstation, and the whole-lung mean CT value (MCT), the normally attenuated lung volume as defined from −950 HU to −701 Hounsfield unit (NL), the volume of the whole lung (WL), and the percentage of NL to WL (NL%), were calculated. Results: CT indices (MCT, WL, and NL) closely correlated with lung physiology variables. Among them, NL strongly correlated with forced vital capacity (FVC) (r = 0.92, P

Suggested Citation

  • Hirotsugu Ohkubo & Yoshihiro Kanemitsu & Takehiro Uemura & Osamu Takakuwa & Masaya Takemura & Ken Maeno & Yutaka Ito & Tetsuya Oguri & Nobutaka Kazawa & Ryuji Mikami & Akio Niimi, 2016. "Normal Lung Quantification in Usual Interstitial Pneumonia Pattern: The Impact of Threshold-based Volumetric CT Analysis for the Staging of Idiopathic Pulmonary Fibrosis," PLOS ONE, Public Library of Science, vol. 11(3), pages 1-13, March.
  • Handle: RePEc:plo:pone00:0152505
    DOI: 10.1371/journal.pone.0152505
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