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Study Correlating Lead (Pb) Level Exposure and Bone Shock Absorption Capacity Based on Damping Associated With Higher Modes of Vibration

机译:研究关联(Pb)曝光和水平骨基于阻尼减震能力与更高的振动模式

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摘要

Noninvasive vibration testing is one of the tools for characterizing the biomechanical properties of bones and muscle groups in humans and animals. They present alternatives for evaluating bone health quality and may serve as early indicators for bone fragility and bone-related diseases. In recent years, a vibration-based bone shock absorption (BSA) method has shown potential to relate the damping capacity associated with the fundamental (first) vibration modes for developing dynamic bone quality indicators for osteoporosis patients. This research presents a study of early life (birth to age 78 months) lead (Pb) exposure on the damping capacity (bone fragility measures) with the bone shock absorption method. The damping ratio corresponding to few vibration modes is extracted and analyzed using clinical bone shock absorption data of patients with different Pb exposure levels. A method is developed for clustering and identifying three dominant vibration modes and their corresponding damping ratio. The statistical correlation between the damping parameters associated with higher vibration modes and Pb exposure level is presented here. This study highlights the importance of analyzing higher vibration modes and their damping capacity, which could be used to predict early diagnostics precursors of the bone- and/or muscle-related conditions or disorders.
机译:非侵入式振动测试的工具描述的生物力学特性人类和动物的骨骼和肌肉组织。他们提出替代方案评估骨卫生质量和可以作为早期指标骨质疏松和骨疾病。最近几年,vibration-based骨冲击吸收(BSA)方法已经显示出潜力联系相关的阻尼能力基本的(第一个)振动模式开发动态骨质量的指标骨质疏松症患者。研究生命早期(78岁个月出生)(Pb)接触阻尼容量(骨头脆弱性的措施)骨冲击吸收的方法。相应的一些振动模式提取并使用临床骨减震分析数据的患者不同铅暴露的水平。识别三种主导振动模式其对应的阻尼比。阻尼之间的统计相关性参数与更高的振动模式下面是和铅暴露水平。研究凸显了分析的重要性更高的振动模式及其阻尼能力,可用于早期预测诊断骨的前体——和/或肌肉疾病或障碍。

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