Virginia Tech, Blacksburg, Virginia, USA.
BMC Bioinformatics. 2009 Oct 1;10 Suppl 10(Suppl 10):S6. doi: 10.1186/1471-2105-10-S10-S6.
Computer-based pathway discovery is concerned with two important objectives: pathway identification and analysis. Conventional mining and modeling approaches aimed at pathway discovery are often effective at achieving either objective, but not both. Such limitations can be effectively tackled leveraging a Web service-based modeling and mining approach.
Inspired by molecular recognitions and drug discovery processes, we developed a Web service mining tool, named PathExplorer, to discover potentially interesting biological pathways linking service models of biological processes. The tool uses an innovative approach to identify useful pathways based on graph-based hints and service-based simulation verifying user's hypotheses.
Web service modeling of biological processes allows the easy access and invocation of these processes on the Web. Web service mining techniques described in this paper enable the discovery of biological pathways linking these process service models. Algorithms presented in this paper for automatically highlighting interesting subgraph within an identified pathway network enable the user to formulate hypothesis, which can be tested out using our simulation algorithm that are also described in this paper.
基于计算机的途径发现关注两个重要目标:途径识别和分析。传统的挖掘和建模方法旨在发现途径,通常在实现这两个目标中的一个方面是有效的,但不是两个都有效。利用基于 Web 服务的建模和挖掘方法可以有效地解决这些限制。
受分子识别和药物发现过程的启发,我们开发了一个名为 PathExplorer 的 Web 服务挖掘工具,用于发现可能有趣的生物途径,这些途径将生物过程的服务模型联系起来。该工具使用一种创新的方法,根据基于图的提示和基于服务的模拟来识别有用的途径,验证用户的假设。
生物过程的 Web 服务建模允许在 Web 上轻松访问和调用这些过程。本文描述的 Web 服务挖掘技术能够发现将这些过程服务模型联系起来的生物途径。本文提出的用于自动突出显示已识别途径网络内的有趣子图的算法使用户能够提出假设,然后可以使用我们也在本文中描述的模拟算法对这些假设进行测试。