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Utilization of Quantitative Computed Tomography Assessment to Identify Bronchiolitis Obliterans Syndrome After Single Lung Transplantation

Authors :
Bruno Hochhegger
Guilherme Watte
Felipe Soares Torres
Douglas Zaione Nascimento
Jackeline Larissa Mendes de Sousa
Nupur Verma
Sadi Marcelo Schio
Leticia Sanchez
Tan-Lucien H. Mohammed
Fabiola Adelia Perin
Source :
Lung. 199:29-35
Publication Year :
2021
Publisher :
Springer Science and Business Media LLC, 2021.

Abstract

To evaluate quantitative chest computed tomography (CT) methods for the detection of air trapping (AT) and to assess its diagnostic performance for the diagnosis of bronchiolitis obliterans syndrome (BOS) in single lung transplant (SLT) patients. Adult patients who had a SLT at a single transplant center and underwent CT scan after transplantation were retrospectively included. CT findings of air trapping were measured by three different methods: expiratory air-trapping index (ATIexp), mean lung density on expiratory acquisition (MLDexp) and expiratory to inspiratory ratio of mean lung density (E/I-ratio(MLD). Sensitivity, specificity and diagnostic accuracy of the three methods for the detection of BOS status evaluated by serial routine measures of pulmonary function tests (gold standard) were assessed. Forty-six SLT patients (52.2% females, mean age 58 ± 6 years) were included in the analysis, 12 (26%) patients with a diagnosis of BOS. Quantitative CT diagnosis of AT ranged from 26 to 35%. Sensitivity, specificity and accuracy of each method for the detection of BOS were 85.7%, 84.7% and 85.0% for ATIexp, 78.5%, 93.4% and 90.0% for MLD and 64.2%, 89.1% and 83.3% E/I-ratio(MLD), respectively. Quantitative measures of AT obtained from standard CT are feasible and show high specificity and accuracy for the detection of BOS in SLT patients.

Details

ISSN :
14321750 and 03412040
Volume :
199
Database :
OpenAIRE
Journal :
Lung
Accession number :
edsair.doi.dedup.....df1053d987875b1f5e14fc12f8dcb0d0
Full Text :
https://doi.org/10.1007/s00408-020-00417-3