Background: Obesity is known to induce lung function impairment. Previous studies of decline in lung function associated with obesity are well established.
Materials And Methods: In this cross-sectional study, to evaluate the effects of different obesity indices on lung mechanics, healthy subjects (males-23 and females-22) were recruited. Anthropometric parameters like body mass index (BMI), waist circumference (WC), hip circumference (HC) and neck circumference (NC) were measured and waist-hip ratio (WHR) was derived. Spirometry, impulse oscillometry (IOS) and fractional exhaled nitric oxide (FeNO) measurements were performed to assess lung function. Subgroups were divided and analysed.
Results: In males, increased WHR is associated with increased total airway resistance (R). BMI correlates positively with R, R% predicted, resistance at 20 Hz (R) and R% predicted; likewise, WHR shows a positive correlation with R. In females, increased WHR has significantly higher R, R% predicted, R, R% predicted, area of reactance (Ax), resonant frequency (Fres) and decreased reactance at 5 Hz (X), reactance at 20 Hz (X), X% predicted. The female group with higher WC shows significantly increased R, R% predicted, R, R% predicted, Ax, Fres and lower fixed ratio of forced expiratory volume in 1 s (FEV)/forced vital capacity (FVC), X, X, X% predicted. The group with higher NC has a lower FEV/FVC ratio. WHR positively correlated with R% predicted and Fres while WC correlated positively with R, R% predicted, Ax and Fres; same way, NC with X% predicted.
Conclusion: Obesity/overweight causes significant changes in lung volumes, capacity and airway mechanics, Higher WC and WHR are associated with significant changes in lung mechanics, which are more prominent in females than in males. NC is not associated with changes in lung mechanics.
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http://dx.doi.org/10.4103/ijem.ijem_363_22 | DOI Listing |
Sports Med Open
January 2025
Institute of Primary Care, University of Zurich, Zurich, Switzerland.
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Department of Pediatrics, Ganzhou People's Hospital, No. 16 Meiguan Avenue, Zhanggong District, Ganzhou, 341000, Jiangxi Province, China.
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January 2025
Department of Endocrinology, Beijing Tongren Hospital, Capital Medical University, No.2, Xihuan South Road, Beijing Economic and Technological Development Zone, Daxing District, Beijing, China.
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January 2025
Department of Internal Medicine, Afzalipour Faculty of Medicine, Afzalipour Hospital Research Center, Kerman University of Medical Sciences, Kerman, Iran.
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January 2025
European Research Institute for the Biology of Ageing, University Medical Center Groningen, Groningen, Netherlands.
While the effect of amplification-induced oncogene expression in cancer is known, the impact of copy-number gains on "bystander" genes is less understood. We create a comprehensive map of dosage compensation in cancer by integrating expression and copy number profiles from over 8000 tumors in The Cancer Genome Atlas and cell lines from the Cancer Cell Line Encyclopedia. Additionally, we analyze 17 cancer open reading frame screens to identify genes toxic to cancer cells when overexpressed.
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