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A support method for the contextual interpretation of biomechanical data

机译:生物力学数据上下文解释的一种支持方法

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In the clinical field, biomechanical data provided by advanced technical devices are still underexploited. Data analysis usually consists of extracting attributes or computing synthetic values from temporal data and exploiting them by means of a monovariable statistical method. This article proposes a method to support clinicians, especially those in orthopedics, in the contextual interpretation of biomechanical data. We propose to characterize temporal biomechanical data by means of fuzzy space-time windows and to induce fuzzy decision trees to map the biomechanical and clinical data related to patients. Then, we present a method for objectively explaining a given clinical characteristic of a particular patient; this method is derived using the fuzzy rule base generated from the trees and a satisfiability measure. We have applied our method to real data in order to provide an objective explanation of the subjective self-evaluation of the functional status of patients with a shoulder prosthesis, and evaluate it by means of the stratified tenfold cross validation method. The mean explanation rate-which corresponds to the mean proportion of the patients belonging to test sets whose functional state is explained by the proposed method-exceeds 80% for more than half of the decision trees, and exceeds 70% for 94% of the trees. By supporting clinicians during the biomechanical data interpretation process, our method helps them take the objective biomechanical measurements in the medical practice into account, particularly in orthopedics. It can also make subjective evaluations more objective by mapping subjective and objective data.
机译:在临床领域,仍未充分利用先进技术设备提供的生物力学数据。数据分析通常包括从时间数据中提取属性或计算综合值,然后通过单变量统计方法加以利用。本文提出了一种支持临床医生(尤其是骨科医师)进行生物力学数据的上下文解释的方法。我们建议通过模糊时空窗口来表征时间生物力学数据,并引入模糊决策树来绘制与患者相关的生物力学和临床数据。然后,我们提出一种客观地解释特定患者的给定临床特征的方法。该方法是使用从树生成的模糊规则库和可满足性度量来推导的。我们已将我们的方法应用于真实数据,以便对肩部假体患者的功能状态进行主观自我评估,并通过分层十倍交叉验证法对其进行评估。平均解释率-对应于用提出的方法解释其功能状态的测试集患者的平均比例-超过一半的决策树超过80%,超过94%的决策树超过70% 。通过在生物力学数据解释过程中为临床医生提供支持,我们的方法可帮助他们考虑医学实践中的客观生物力学测量结果,尤其是骨科。通过映射主观和客观数据,还可以使主观评估更加客观。

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