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An Efficient Permutation Approach for Classical and Bioequivalence Hypothesis Testing of Biomedical Shape Study

机译:一种高效的生物医学形状研究经典和生物等效假设检测的置换方法

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A new statistical permutation analysis method is presented in this paper to efficiently and accurately localize regionally specific shape differences between groups of 3D biomedical images. It can improve the system's efficiency by approximating the permutation distribution of the test statistic with Pearson distribution series. This procedure involves the calculation of the first four moments of the permutation distribution, which are derived theoretically and analytically without any permutation. Furthermore, bioequivalence testing aims for practical significances between the two groups that are statistically significant with the shape differences larger than a desired threshold. Experimental results based on both classical and bioequivalence hypothesis tests using simulated data and real biomedical images are presented to demonstrate the advantages of the proposed approach.
机译:本文介绍了一种新的统计置换分析方法,以有效,准确地定位3D生物医学图像组之间的区域特异性形状差异。它可以通过用Pearson分布系列近似测试统计的排列分布来提高系统的效率。该过程涉及计算置换分布的前四个时刻,其理论上和分析地导出而没有任何置换。此外,BioEquivalence测试旨在具有统计学意义的两组之间的实际意义,其具有大于所需阈值的形状差异。提出了基于使用模拟数据和实际生物医学图像的经典和生物等效假设试验的实验结果,以证明所提出的方法的优点。

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