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Computational assessment of hemodynamics-based diagnostic tools using a database of virtual subjects: Application to three case studies

机译:使用虚拟受试者数据库对基于血液动力学的诊断工具进行计算评估:应用于三个案例研究

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摘要

Many physiological indexes and algorithms based on pulse wave analysis have been suggested in order to better assess cardiovascular function. Because these tools are often computed from in-vivo hemodynamic measurements, their validation is time-consuming, challenging, and biased by measurement errors.Recently, a new methodology has been suggested to assess theoretically these computed tools: a database of virtual subjects generated using numerical 1D-0D modeling of arterial hemodynamics. The generated set of simulations encloses a wide selection of healthy cases that could be encountered in a clinical study.We applied this new methodology to three different case studies that demonstrate the potential of our new tool, and illustrated each of them with a clinically relevant example: (i) we assessed the accuracy of indexes estimating pulse wave velocity; (ii) we validated and refined an algorithm that computes central blood pressure; and (iii) we investigated theoretical mechanisms behind the augmentation index.Our database of virtual subjects is a new tool to assist the clinician: it provides insight into the physical mechanisms underlying the correlations observed in clinical practice.
机译:为了更好地评估心血管功能,已经提出了许多基于脉搏波分析的生理指标和算法。由于这些工具通常是通过体内血流动力学测量来计算的,因此其验证既耗时,具有挑战性,又受测量误差的影响。最近,有人提出了一种从理论上评估这些计算工具的新方法:动脉血流动力学的数值1D-0D建模。生成的一组模拟结果涵盖了临床研究中可能遇到的各种健康病例。我们将此新方法应用于三个不同的病例研究中,这些病例研究证明了我们新工具的潜力,并通过临床相关的例子进行了说明。 :(i)我们评估了估计脉搏波速度的指标的准确性; (ii)我们验证并完善了一种计算中心血压的算法; (iii)我们研究了增强指数背后的理论机制。我们的虚拟受试者数据库是协助临床医生的新工具:它提供了对在临床实践中观察到的相关性背后的物理机制的洞察力。

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