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The Crisis of Reproducibility the Denominator Problem and the Scientific Role of Multi-scale Modeling

机译:可再现性危机分母问题和多尺度建模的科学作用

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摘要

The “Crisis of Reproducibility” has received considerable attention both within the scientific community and without. While factors associated with scientific culture and practical practice are most often invoked, I propose that the Crisis of Reproducibility is ultimately a failure of generalization with a fundamental scientific basis in the methods used for biomedical research. The Denominator Problem describes how limitations intrinsic to the two primary approaches of biomedical research, clinical studies and preclinical experimental biology, lead to an inability to effectively characterize the full extent of biological heterogeneity, which compromises the task of generalizing acquired knowledge. Drawing on the example of the unifying role of theory in the physical sciences, I propose that multi-scale mathematical and dynamic computational models, when mapped to the modular structure of biological systems, can serve a unifying role as formal representations of what is conserved and similar from one biological context to another. This ability to explicitly describe the generation of heterogeneity from similarity addresses the Denominator Problem and provides a scientific response to the Crisis of Reproducibility.
机译:在科学界内外,“可再现性危机”都受到了相当大的关注。尽管通常会引用与科学文化和实践相关的因素,但我认为,可再现性危机最终是生物医学研究方法具有基本科学基础的泛化失败。分母问题描述了生物医学研究,临床研究和临床前实验生物学这两种主要方法固有的局限性如何导致无法有效地表征生物异质性的全部范围,从而损害了对获得的知识的概括性任务。借鉴理论在物理科学中的统一作用的示例,我建议将多尺度的数学和动态计算模型映射到生物系统的模块化结构时,可以作为统一的形式来表示保守和从一种生物学环境到另一种生物学环境相似。这种通过相似性明确描述异质性产生的能力解决了分母问题,并为可再现性危机提供了科学的应对方法。

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