Osteoporosis markers on low-dose lung cancer screening chest computed tomography scans predict all-cause mortality

Publication date

2015-01

Authors

Buckens, C F
van der Graaf, Y.ISNI 0000000388026709
Verkooijen, Helena MORCID 0000-0001-9480-1623
Mali, WPTMISNI 0000000392849126
Isgum, IvanaISNI 0000000395961893
Mol, Christian P
Verhaar, H JISNI 0000000140632844
Vliegenthart, R
Oudkerk, M
van Aalst, CorneliISNI 0000000393138529

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Document Type

Article

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taverne

Abstract

OBJECTIVES: Further survival benefits may be gained from low-dose chest computed tomography (CT) by assessing vertebral fractures and bone density. We sought to assess the association between CT-measured vertebral fractures and bone density with all-cause mortality in lung cancer screening participants. METHODS: Following a case-cohort design, lung cancer screening trial participants (N = 3,673) who died (N = 196) during a median follow-up of 6 years (inter-quartile range: 5.7-6.3) were identified and added to a random sample of N = 383 from the trial. We assessed vertebral fractures using Genant's semiquantative method on sagittal reconstructions and measured bone density (Hounsfield Units (HU)) in vertebrae. Cox proportional hazards modelling was used to determine if vertebral fractures or bone density were independently predictive of mortality. RESULTS: The prevalence of vertebral fractures was 35% (95% confidence interval 30-40%) among survivors and 51% (44-58%) amongst cases. After adjusting for age, gender, smoking status, pack years smoked, coronary and aortic calcium volume and pulmonary emphysema, the adjusted hazard ratio (HR) for vertebral fracture was 2.04 (1.43-2.92). For each 10 HU decline in trabecular bone density, the adjusted HR was 1.08 (1.02-1.15). CONCLUSIONS: Vertebral fractures and bone density are independently associated with all-cause mortality. KEY POINTS: • Lung cancer screening chest computed tomography contains additional, potentially useful information. • Vertebral fractures and bone density are independently predictive of mortality. • This finding has implications for screening and management decisions.

Keywords

Absorptiometry, Photon, Aged, Biomarkers, Bone Density, Early Detection of Cancer, Female, Humans, Lung Neoplasms, Male, Middle Aged, Osteoporosis, Osteoporotic Fractures, Proportional Hazards Models, Smoking, Spinal Fractures, Tomography, X-Ray Computed, Vertebral fracture, Bone density, Computed tomography, Mortality, Lung cancer screening, Taverne

Citation

Buckens, C F, van der Graaf, Y, Verkooijen, H M, Mali, W P, Isgum, I, Mol, C P, Verhaar, H J, Vliegenthart, R, Oudkerk, M, van Aalst, C M, de Koning, H J & de Jong, P A 2015, 'Osteoporosis markers on low-dose lung cancer screening chest computed tomography scans predict all-cause mortality', European Radiology, vol. 25, no. 1, pp. 132-139. https://doi.org/10.1007/s00330-014-3361-0