磁共振成像获取和重建食谱:食谱的再现性,服务与现实世界的味道。

IF 2 4区 医学 Q3 RADIOLOGY, NUCLEAR MEDICINE & MEDICAL IMAGING
Jonathan I Tamir, Moritz Blumenthal, Jiachen Wang, Tal Oved, Efrat Shimron, Moritz Zaiss
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引用次数: 0

摘要

MRI采集与重建研究已经转变为一个计算驱动的领域。随着方法变得更复杂、计算量更大、数据需求更大,重现它们的努力变得更加困难。虽然计算MRI研究界在可重复性计算科学方面取得了巨大的飞跃,但很少有定制的指导方针或标准供用户遵循。在这篇综述文章中,我们开发了一本食谱,以促进MRI采集和重建的可重复性研究。像任何一本好的食谱一样,我们列出了几个食谱,每个食谱都提供了如何使计算MRI研究可重复性的基本标准。就像烹饪一样,我们展示了由于规格不足而无法再现的风味。我们构建了这篇文章,因此食谱本身通过提供序列和重建定义以及数据来重现图中的实验结果,从而成为可重复研究的一个例子。我们还提出了一个社区驱动的努力,以编制一个不断发展的最佳实践列表,使计算MRI研究的可重复性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
MRI acquisition and reconstruction cookbook: recipes for reproducibility, served with real-world flavour.

MRI acquisition and reconstruction research has transformed into a computation-driven field. As methods become more sophisticated, compute-heavy, and data-hungry, efforts to reproduce them become more difficult. While the computational MRI research community has made great leaps toward reproducible computational science, there are few tailored guidelines or standards for users to follow. In this review article, we develop a cookbook to facilitate reproducible research for MRI acquisition and reconstruction. Like any good cookbook, we list several recipes, each providing a basic standard on how to make computational MRI research reproducible. And like cooking, we show example flavours where reproducibility may fail due to under-specification. We structure the article, so that the cookbook itself serves as an example of reproducible research by providing sequence and reconstruction definitions as well as data to reproduce the experimental results in the figures. We also propose a community-driven effort to compile an evolving list of best practices for making computational MRI research reproducible.

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来源期刊
CiteScore
4.60
自引率
0.00%
发文量
58
审稿时长
>12 weeks
期刊介绍: MAGMA is a multidisciplinary international journal devoted to the publication of articles on all aspects of magnetic resonance techniques and their applications in medicine and biology. MAGMA currently publishes research papers, reviews, letters to the editor, and commentaries, six times a year. The subject areas covered by MAGMA include: advances in materials, hardware and software in magnetic resonance technology, new developments and results in research and practical applications of magnetic resonance imaging and spectroscopy related to biology and medicine, study of animal models and intact cells using magnetic resonance, reports of clinical trials on humans and clinical validation of magnetic resonance protocols.
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