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Bio-Logic Builder: A Non-Technical Tool for Building Dynamical,Qualitative Models
Authors:Tomá? Helikar  Bryan Kowal  Alex Madrahimov  Manish Shrestha  Jay Pedersen  Kahani Limbu  Ishwor Thapa  Thaine Rowley  Rahul Satalkar  Naomi Kochi  John Konvalina  Jim A. Rogers
Affiliation:1. Department of Mathematics, University of Nebraska at Omaha, Omaha, Nebraska, United States of America.; 2. College of Information Science and Technology, University of Nebraska at Omaha, Omaha, Nebraska, United States of America.; 3. Department of Biology, University of Nebraska at Omaha, Omaha, Nebraska, United States of America.; 4. Department of Genetics, Cell Biology and Anatomy, University of Nebraska Medical Center, Omaha, Nebraska, United States of America.; CRS4, Italy,
Abstract:
Computational modeling of biological processes is a promising tool in biomedical research. While a large part of its potential lies in the ability to integrate it with laboratory research, modeling currently generally requires a high degree of training in mathematics and/or computer science. To help address this issue, we have developed a web-based tool, Bio-Logic Builder, that enables laboratory scientists to define mathematical representations (based on a discrete formalism) of biological regulatory mechanisms in a modular and non-technical fashion. As part of the user interface, generalized “bio-logic” modules have been defined to provide users with the building blocks for many biological processes. To build/modify computational models, experimentalists provide purely qualitative information about a particular regulatory mechanisms as is generally found in the laboratory. The Bio-Logic Builder subsequently converts the provided information into a mathematical representation described with Boolean expressions/rules. We used this tool to build a number of dynamical models, including a 130-protein large-scale model of signal transduction with over 800 interactions, influenza A replication cycle with 127 species and 200+ interactions, and mammalian and budding yeast cell cycles. We also show that any and all qualitative regulatory mechanisms can be built using this tool.
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