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J Clin Densitom ; 27(2): 101470, 2024.
Article in English | MEDLINE | ID: mdl-38342001

ABSTRACT

BACKGROUND: osteoporosis is a worldwide major health problem that normally diagnosed in advanced stages. So, an early detection at preclinical stage is now an interesting issue. A key factor to early diagnosis the disease is the used of noninvasive bone densitometry. Dual energy x-ray absorptiometry (DXA) is the gold standard techniques for the proposed. However, the high cost, non-widely available and exposed to ionizing radiation are still a drawback of the machine. Therefore, a cheaper, smaller and non-ionizing device such quantitative ultrasound (QUS) is now a favor alternative method, but the possibility of used QUS measurement instead of DXA is still limited due to their uncertainties. So, the aim of our study was to calibrated the QUS with the DXA to allowing the possible to establish a calibration factor (CF) to improve the measured value closer to the standard method. METHODOLOGY: 135 healthy men and women aged 30-88 years were recruited for lumbar spine/femoral neck DXA and calcaneal QUS scanning. The Pearson's correlation between T- and Z-score from the two systems were studied. Moreover, the sensitivity, specificity and percentage of diagnosed accuracy for both with and without CF were calculated. RESULTS: The significant correlation between the two systems showed a positive trajectory in highly correlation (r = 0.784-0.899). Analyses showed a higher sensitivity, specificity and reduced the misdiagnosed rates when applied the CF in QUS values. CONCLUSIONS: QUS results showed a significantly correlated with DXA results for both lumbar spine and femoral neck sites with some percentage differences. These differences can be reduced by applied an individual specific machine CF to improve a QUS results. As identification of high risk of osteopenia and osteoporosis to reduce the demand of DXA propose, using a QUS alternative method can be a reliable that provide a cheaper and lack of ionizing radiation.


Subject(s)
Absorptiometry, Photon , Bone Diseases, Metabolic , Calcaneus , Lumbar Vertebrae , Osteoporosis , Ultrasonography , Humans , Absorptiometry, Photon/methods , Female , Ultrasonography/methods , Aged , Male , Middle Aged , Osteoporosis/diagnostic imaging , Aged, 80 and over , Adult , Calcaneus/diagnostic imaging , Calibration , Bone Diseases, Metabolic/diagnostic imaging , Lumbar Vertebrae/diagnostic imaging , Femur Neck/diagnostic imaging , Sensitivity and Specificity , Bone Density
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