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Commentary on the Integration of Model Sharing and Reproducibility Analysis to Scholarly Publishing Workflow in Computational Biomechanics

机译:模拟共享与再现性分析与计算生物力学中学术出版工作流程的整合

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摘要

© 1964-2012 IEEE.Objective: The overall goal of this paper is to demonstrate that dissemination of models and analyses for assessing the reproducibility of simulation results can be incorporated in the scientific review process in biomechanics. Methods: As part of a special issue on model sharing and reproducibility in the IEEE Transactions on Biomedical Engineering, two manuscripts on computational biomechanics were submitted: Rajagopal et al., IEEE Trans. Biomed. Eng., 2016 and Schmitz and Piovesan, IEEE Trans. Biomed. Eng., 2016. Models used in these studies were shared with the scientific reviewers and the public. In addition to the standard review of the manuscripts, the reviewers downloaded the models and performed simulations that reproduced results reported in the studies. Results: There was general agreement between simulation results of the authors and those of the reviewers. Discrepancies were resolved during the necessary revisions. The manuscripts and instructions for download and simulation were updated in response to the reviewers' feedback; changes that may otherwise have been missed if explicit model sharing and simulation reproducibility analysis was not conducted in the review process. Increased burden on the authors and the reviewers, to facilitate model sharing and to repeat simulations, were noted. Conclusion: When the authors of computational biomechanics studies provide access to models and data, the scientific reviewers can download and thoroughly explore the model, perform simulations, and evaluate simulation reproducibility beyond the traditional manuscript-only review process. Significance: Model sharing and reproducibility analysis in scholarly publishing will result in a more rigorous review process, which will enhance the quality of modeling and simulation studies and inform future users of computational models.
机译:©1964-2012 IEEE。目的:本文的总体目标是证明可以在生物力学的科学审查过程中纳入模型和分析的评估,以评估仿真结果的可重复性。方法:作为IEEE生物医学工程学报中有关模型共享和可再现性的特殊问题的一部分,提交了两本有关计算生物力学的手稿:Rajagopal等人,IEEE Trans。生物医学。工程,2016年; Schmitz和Piovesan,IEEE Trans。生物医学。 Eng。,2016年。这些研究中使用的模型已与科学评论家和公众共享。除了对稿件进行标准审查外,审查员还下载了模型并进行了模拟,从而复制了研究报告的结果。结果:作者的模拟结果与审阅者的模拟结果基本一致。差异在必要的修订过程中得以解决。响应审阅者的反馈,更新了用于下载和仿真的手稿和说明;如果在审阅过程中未进行明确的模型共享和仿真可重复性分析,则可能会错过其他更改。注意到增加了作者和审稿人的负担,以促进模型共享和重复模拟。结论:当计算生物力学研究的作者提供对模型和数据的访问权限时,科学评论者可以下载和彻底探索模型,执行模拟并评估模拟可重现性,而不仅仅是传统的纯手稿审阅过程。启示:学术出版中的模型共享和可再现性分析将导致更加严格的审查过程,这将提高建模和仿真研究的质量并为未来的计算模型用户提供信息。

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