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Imaging-based assessment of lung function in a population cooking indoors with biomass fuel: a pilot study.

Authors :
Kizhakke Puliyakote, Abhilash S.
Stapleton, Emma M.
Durairaj, Kumar
Karuppusamy, Kesavan
Kathiresan, Geetha B.
Shanmugam, Kumaran
Rahim, Sirajunnisa Abdul
Navaneethakrishnan, Suresh
Bilas, Monalisa
Rui Huang
Metwali, Nervana
Jeronimo, Matthew
Kung-Sik Chan
Junfeng Guo
Nagpal, Prashant
Peters, Thomas M.
Thorne, Peter S.
Comellas, Alejandro P.
Hoffman, Eric A.
Source :
Journal of Applied Physiology; Mar2023, Vol. 134 Issue 3, p710-721, 12p
Publication Year :
2023

Abstract

Biomass fuels (wood) are commonly used indoors in underventilated environments for cooking in the developing world, but the impact on lung physiology is poorly understood. Quantitative computed tomography (qCT) can provide sensitive metrics to compare the lungs of women cooking with wood vs. liquified petroleum gas (LPG). We prospectively assessed (qCT and spirometry) 23 primary female cooks (18 biomass, 5 LPG) with no history of cardiopulmonary disease in Thanjavur, India. CT was obtained at coached total lung capacity (TLC) and residual volume (RV). qCT assessment included texture-derived ground glass opacity [GGO: Adaptive Multiple Feature Method (AMFM)], air-trapping (expiratory voxels ≤ -856HU) and image registration-based assessment [Disease Probability Measure (DPM)] of emphysema, functional small airways disease (%AirTrapDPM), and regional lung mechanics. In addition, within-kitchen exposure assessments included particulate matter <2.5 µm(PM<subscript>2.5</subscript>), black carbon, β-(1, 3)-D-glucan (surrogate for fungi), and endotoxin. Air-trapping went undetected at RV via the threshold-based measure (voxels ≤ -856HU), possibly due to density shifts in the presence of inflammation. However, DPM, utilizing image-matching, demonstrated significant air-trapping in biomass vs. LPG cooks (P = 0.049). A subset of biomass cooks (6/18), identified using k-means clustering, had markedly altered DPM-metrics: greater air-trapping (P < 0.001), lower TLC-RV volume change (P < 0.001), a lower mean anisotropic deformation index (ADI; P < 0.001), and elevated % GGO (P < 0.02). Across all subjects, a texture measure of bronchovascular bundles was correlated to the log-transformed β-(1, 3)-D-glucan concentration (P = 0.026, R = 0.46), and black carbon (P = 0.04, R = 0.44). This pilot study identified environmental links with qCT-based lung pathologies and a cluster of biomass cooks (33%) with significant small airways disease. NEW & NOTEWORTHY Quantitative computed tomography has identified a cluster of women (33%) cooking with biomass fuels (wood) with image-based markers of functional small airways disease and associated alterations in regional lung mechanics. Texture and image registration-based metrics of lung function may allow for early detection of potential inflammatory processes that may arise in response to inhaled biomass smoke, and help identify phenotypes of chronic lung disease prevalent in nonsmoking women in the developing world. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
87507587
Volume :
134
Issue :
3
Database :
Complementary Index
Journal :
Journal of Applied Physiology
Publication Type :
Academic Journal
Accession number :
162520813
Full Text :
https://doi.org/10.1152/japplphysiol.00286.2022