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A Computational Model-Based Framework to Plan Clinical Experiments – an Application to Vascular Adaptation Biology

机译:基于计算模型的计划临床实验的框架–在血管适应生物学中的应用

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摘要

Several computational models have been developed in order to improve the outcome of Vein Graft Bypasses in response to arterial occlusions and they all share a common property: their accuracy relies on a winning choice of the coefficients’ value related to biological functions that drive them. Our goal is to optimize the retrieval of these unknown coefficients on the base of experimental data and accordingly, as biological experiments are noisy in terms of statistical analysis and the models are typically stochastic and complex, this work wants first to elucidate which experimental measurements might be sufficient to retrieve the targeted coefficients and second how many specimens would constitute a good dataset to guarantee a sufficient level of accuracy. Since experiments are often costly and time consuming, the planning stage is critical to the success of the operation and, on the base of this consideration, the present work shows how, thanks to an ad hoc use of a computational model of vascular adaptation, it is possible to estimate in advance the entity and the quantity of resources needed in order to efficiently reproduce the experimental reality.
机译:为了改善静脉搭桥术对动脉闭塞的反应,已经开发了几种计算模型,它们都具有共同的特性:其准确性取决于与驱动它们的生物学功能相关的系数值的成功选择。我们的目标是在实验数据的基础上优化对这些未知系数的检索,因此,由于生物学实验在统计分析方面比较嘈杂,并且模型通常是随机且复杂的,因此这项工作首先要阐明哪些实验测量值可能是足以检索目标系数,其次是多少个样本将构成一个好的数据集,以保证足够的准确性。由于实验通常是昂贵且费时的,因此规划阶段对于手术的成功至关重要,因此,基于这一考虑,本研究表明,由于临时使用了血管适应性计算模型,该方法如何进行呢?可以预先估计实体和所需资源的数量,以便有效地重现实验现实。

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