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Elemental Composition in Female Dry Femora Using Portable X-Ray Fluorescence (pXRF): Association with Age and Osteoporosis

机译:使用便携式X射线荧光(PXRF)的女性干股骨中的元素组成:与年龄和骨质疏松症相关联

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摘要

Pathophysiological conditions can modify the skeletal chemical concentration. This study analyzes the elemental composition in two anatomical regions from dry femoral bone using a portable X-Ray Fluorescence (pXRF) and evaluates its impact in the bone mineral density (BMD). The left femora of 97 female skeletons (21-95 years old individuals) from the Coimbra Identified Skeletal Collection were studied. Diagenetic biases were discarded at the outset and BMD was determined with Dual-energy X-ray absorptiometry. Chemical measurements were performed at the midpoint of the femoral neck and at the midshaft using a pXRF device, and comparisons were made considering the age and the BMD values. Only elements with a Technical Measurement Error = 50 years. The decrease of P with age can be simultaneously related to the decline of its concentration in osteoporosis. Decreased BMD is also associated with higher levels of S and Pb. Osteoporosis enhances the absorption of osteolytic elements in specific locations. This fast and non-destructive technique has proved effective for the comprehension of chemical changes related to bone mass loss. This study highlights the potential of identified skeletal collections to improve the knowledge about bone fragility.
机译:病理生理条件可以改变骨骼的化学浓度。本研究使用便携式X射线荧光仪(pXRF)分析干燥股骨两个解剖区域的元素组成,并评估其对骨密度(BMD)的影响。对科英布拉鉴定的骨骼标本中97具女性骨骼(21-95岁个体)的左股骨进行了研究。一开始就摒弃了成岩偏见,用双能X射线吸收法测定了骨密度。使用pXRF设备在股骨颈中点和中轴进行化学测量,并考虑年龄和BMD值进行比较。只有技术测量误差=50年的元件。随着年龄的增长,P的减少可能与骨质疏松症中P浓度的下降同时相关。骨密度降低也与S和Pb水平升高有关。骨质疏松症会增强特定部位溶骨性成分的吸收。事实证明,这种快速无损的技术对于理解与骨量丢失有关的化学变化是有效的。这项研究强调了已确定的骨骼集合在提高对骨骼脆弱性的认识方面的潜力。

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