结果稳定性测试的数值变异性方法及其在神经影像学中的应用

IF 3.6 2区 计算机科学 Q2 COMPUTER SCIENCE, HARDWARE & ARCHITECTURE
Yohan Chatelain;Loïc Tetrel;Christopher J. Markiewicz;Mathias Goncalves;Gregory Kiar;Oscar Esteban;Pierre Bellec;Tristan Glatard
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引用次数: 0

摘要

确保数据分析的长期可重复性需要结果稳定性测试,以验证尽管不可避免的软件更新和硬件演变,分析结果仍保持在可接受的变化范围内。本文介绍了一种用于结果稳定性检验的数值变异性方法,该方法利用浮点计算的随机舍入来确定可接受的变异性范围。通过将结果稳定性测试应用于fMRIPrep(一种广泛使用的神经成像工具),我们表明该测试足够敏感,可以检测到图像处理方法中的细微更新,同时保持足够的特异性,可以接受应用程序参考版本中的数值变化。该结果为稳定性测试提供了一种稳健灵活的方法,有助于提高数据分析的可靠性和可重复性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Numerical Variability Approach to Results Stability Tests and Its Application to Neuroimaging
Ensuring the long-term reproducibility of data analyses requires results stability tests to verify that analysis results remain within acceptable variation bounds despite inevitable software updates and hardware evolutions. This paper introduces a numerical variability approach for results stability tests, which determines acceptable variation bounds using random rounding of floating-point calculations. By applying the resulting stability test to fMRIPrep , a widely-used neuroimaging tool, we show that the test is sensitive enough to detect subtle updates in image processing methods while remaining specific enough to accept numerical variations within a reference version of the application. This result contributes to enhancing the reliability and reproducibility of data analyses by providing a robust and flexible method for stability testing.
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来源期刊
IEEE Transactions on Computers
IEEE Transactions on Computers 工程技术-工程:电子与电气
CiteScore
6.60
自引率
5.40%
发文量
199
审稿时长
6.0 months
期刊介绍: The IEEE Transactions on Computers is a monthly publication with a wide distribution to researchers, developers, technical managers, and educators in the computer field. It publishes papers on research in areas of current interest to the readers. These areas include, but are not limited to, the following: a) computer organizations and architectures; b) operating systems, software systems, and communication protocols; c) real-time systems and embedded systems; d) digital devices, computer components, and interconnection networks; e) specification, design, prototyping, and testing methods and tools; f) performance, fault tolerance, reliability, security, and testability; g) case studies and experimental and theoretical evaluations; and h) new and important applications and trends.
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