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PROVenance Patterns in Numerical Modelling and Finite Element Simulation Processes of Bio-electric Systems*

机译:生物电气系统的数值建模和有限元模拟过程中的出处模式 *

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The reproducibility of scientific results gains increasing attention. In the context of biomedical engineering, this applies to experimental studies of three different kinds: in-vivo, in-vitro, and in-silico. Numerical modelling and finite element simulation of bio-electric systems are intricate processes involving manifold steps. A typical example of this process is the electrical stimulation at alloplastic reconstruction plates of the mandible. During the bio-electric modelling and simulation process, diverse methods realised in various software tools are exploited. To comprehensibly render how the final model has been developed requires a thorough documentation. We exploit the W3C provenance model PROV to structure this process and to make it accessible for modellers and for automatic analyses. Different entity types, such as data, model, software, literature, assumptions, and mathematical equations are distinguished; roles of entities within an activity are revealed as well as the involved researchers. In addition, we identify five process patterns: 1) information extraction from the literature; 2) generation of a geometrical model which uses data as input; 3) composition of several geometrical or mathematical models into a combined model; 4) parameterisation, which augments the input model by additional properties; and, finally, 5) refinement, which uses a model in addition to an assumption and generates an enhanced model. By modelling provenance information of a typical bio-electric modelling and simulation process as well as identifying provenance patterns, we provide a first step towards a better documentation of academic investigations in that scientific field.
机译:科学效果的再现性提高了越来越关注。在生物医学工程的背景下,这适用于三种不同的实验研究:体内,体外和硅。生物电气系统的数值建模和有限元模拟是歧管台阶的错综复杂过程。该过程的典型例子是下颌骨的所有塑料重建板处的电刺激。在生物电气建模和仿真过程中,利用各种软件工具中实现的多样化方法。为了理解地呈现最终模型的开发方式需要彻底的文档。我们利用W3C出处模型可以构建此过程,并使其可用于莫德勒和自动分析。区分不同实体类型,例如数据,模型,软件,文献,假设和数学方程;揭示了活动中的实体的角色以及所涉及的研究人员。此外,我们确定了五个流程模式:1)信息提取从文献中提取; 2)生成使用数据作为输入的几何模型; 3)几种几何或数学模型的组成成组合模型; 4)参数化,通过附加属性增强输入模型;并且,最后,5)细化,除了假设之外,它还使用模型并生成增强型模型。通过建模典型生物电气建模和仿真过程的出处信息以及识别出处格模式,我们为该科学领域的学术调查提供了更好的文献。

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