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首页> 外文期刊>Journal of Biomechanics >Computational study to investigate effect of tonometer geometry and patient-specific variability on radial artery tonometry
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Computational study to investigate effect of tonometer geometry and patient-specific variability on radial artery tonometry

机译:探讨桡动脉矫形器对眼压计几何和患者特异性变异性的计算研究

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摘要

Tonometry-based devices are valuable method for vascular function assessment and for measurement of blood pressure. However current design and calibration methods rely on simple models, neglecting key geometrical features, and anthropometric and property variability among patients. Understanding impact of these influences on tonometer measurement is thus essential for improving outcomes of current devices, and for proposing improved design. Towards this goal, we present a realistic computational model for tissue-device interaction using complete wrist section with hyperelastic material and frictional contact. Three different tonometry geometries were considered including a new design, and patient specific influences incorporated via anthropometric and age-dependent tissue stiffness variations. The results indicated that the new design showed stable surface contact stress with minimum influence of the parameters analyzed. The computational predictions were validated with experimental data from a prototype based on the new design. Finally, we showed that the underlying mechanics of vascular unloading in tonometry to be fundamentally different from that of oscillatory method. Due to directional loading in tonometry, pulse amplitude maxima was observed to occur at a significantly lower compression level (around 31%) than previously reported, which can impact blood pressure calibration approaches based on maximum pulse pressure recordings. (C) 2017 Elsevier Ltd. All rights reserved.
机译:基于Tononetry的装置是血管函数评估和测量血压的有价值的方法。然而,目前的设计和校准方法依赖于简单的模型,忽略关键几何特征,以及患者之间的人体测量和性质变异性。理解这些对眼压计测量影响的影响对于改善当前装置的结果并提出改进的设计是必不可少的。为了实现这一目标,我们展示了一种使用完整的腕部与超弹性材料和摩擦接触的组织装置相互作用的现实计算模型。考虑了三种不同的旋转性几何形状,包括新的设计,患者通过人类测量和年龄依赖性组织刚度变化掺入患者的特定影响。结果表明,新设计表明,稳定的表面接触应力,分析的参数的最小影响。根据新设计的来自原型的实验数据验证了计算预测。最后,我们表明,血管卸载中的潜在机制与振荡方法的根本不同。由于正统的定向加载,观察到脉冲幅度最大值,以比先前报告的压缩水平(约31%约为31%),这可能会根据最大脉冲压力记录撞击血压校准方法。 (c)2017 Elsevier Ltd.保留所有权利。

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