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Utilising a simulation platform to understand the effect of domain model assumptions

机译:利用仿真平台了解领域模型假设的影响

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摘要

Computational and mathematical modelling approaches are increasingly being adopted in attempts to further our understanding of complex biological systems. This approach can be subjected to strong criticism as substantial aspects of the biological system being captured are not currently known, meaning assumptions need to be made that could have a critical impact on simulation response. We have utilised the CoSMoS process in the development of an agent-based simulation of the formation of Peyer’s patches (PP), gut-associated lymphoid organs that have a key role in the initiation of adaptive immune responses to infection. Although the use of genetic tools, imaging technologies and ex vivo culture systems has provided significant insight into the cellular components and associated pathways involved in PP development, interesting questions remain that cannot be addressed using these approaches, and as such well justified assumptions have been introduced into our model to counter this. Here we focus not on the development of the model itself, but instead demonstrate how the resultant simulation can be used to assess how these assumptions impact the simulation response. For example, we consider the impact of our assumption that the migration rate of lymphoid tissue cells into the gut remains constant throughout PP development. We demonstrate that an analysis of the assumptions made in the construction of the domain model may either increase confidence in the model as a representation of the biological system it captures, or may suggest areas where further biological experimentation is required.
机译:计算和数学建模方法越来越多地被采用,以试图进一步了解复杂的生物系统。由于目前尚不了解所捕获生物系统的实质方面,因此该方法可能会遭到强烈批评,这意味着需要做出可能对模拟响应产生重大影响的假设。我们利用CoSMoS流程开发了基于代理的Peyer's patch(PP)(肠道相关淋巴器官)形成的模拟,这些淋巴器官在引发针对感染的适应性免疫反应中起关键作用。尽管遗传工具,成像技术和离体培养系统的使用已提供了对PP开发中涉及的细胞成分和相关途径的重要见解,但仍然存在一些有趣的问题,无法使用这些方法解决,因此引入了充分合理的假设进入我们的模型以应对这一问题。在这里,我们不关注模型本身的开发,而是演示如何将所得的仿真用于评估这些假设如何影响仿真响应。例如,我们考虑了以下假设的影响:在整个PP发育过程中,淋巴样组织细胞向肠道的迁移速率保持恒定。我们证明,对域模型构建中的假设进行的分析可能会增加模型中作为其捕获的生物系统表示形式的置信度,或者可能建议需要进行进一步生物学实验的领域。

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