Huertas-Migueláñez Mercedes, Mora Daniel, Cano Isaac, Maier Dieter, Gomez-Cabrero David, Lluch-Ariet Magí, Miralles Felip
J Transl Med. 2014 Nov 28;12 Suppl 2(Suppl 2):S7. doi: 10.1186/1479-5876-12-S2-S7.
Today, many different tools are developed to execute and visualize physiological models that represent the human physiology. Most of these tools run models written in very specific programming languages which in turn simplify the communication among models. Nevertheless, not all of these tools are able to run models written in different programming languages. In addition, interoperability between such models remains an unresolved issue.
In this paper we present a simulation environment that allows, first, the execution of models developed in different programming languages and second the communication of parameters to interconnect these models. This simulation environment, developed within the Synergy-COPD project, aims at helping and supporting bio-researchers and medical students understand the internal mechanisms of the human body through the use of physiological models. This tool is composed of a graphical visualization environment, which is a web interface through which the user can interact with the models, and a simulation workflow management system composed of a control module and a data warehouse manager. The control module monitors the correct functioning of the whole system. The data warehouse manager is responsible for managing the stored information and supporting its flow among the different modules.
It has been proved that the simulation environment presented here allows the user to research and study the internal mechanisms of the human physiology by the use of models via a graphical visualization environment. A new tool for bio-researchers is ready for deployment in various use cases scenarios.
如今,人们开发了许多不同的工具来执行和可视化代表人体生理机能的生理模型。这些工具大多运行用非常特定的编程语言编写的模型,这反过来简化了模型之间的通信。然而,并非所有这些工具都能够运行用不同编程语言编写的模型。此外,此类模型之间的互操作性仍然是一个未解决的问题。
在本文中,我们展示了一个模拟环境,该环境首先允许执行用不同编程语言开发的模型,其次允许参数通信以互连这些模型。这个在协同慢性阻塞性肺疾病(Synergy-COPD)项目中开发的模拟环境,旨在通过使用生理模型来帮助和支持生物研究人员以及医学生理解人体的内部机制。该工具由一个图形可视化环境和一个模拟工作流管理系统组成,图形可视化环境是一个网络界面,用户可通过它与模型进行交互,模拟工作流管理系统由一个控制模块和一个数据仓库管理器组成。控制模块监控整个系统的正常运行。数据仓库管理器负责管理存储的信息并支持其在不同模块之间的流动。
已证明这里展示的模拟环境允许用户通过图形可视化环境使用模型来研究和学习人体生理机能的内部机制。一种面向生物研究人员的新工具已准备好在各种用例场景中进行部署。