Publication | Open Access
Subject-specific, multiscale simulation of electrophysiology: a software pipeline for image-based models and application examples
33
Citations
38
References
2009
Year
EngineeringSimulationComputer-aided DesignBiomedical EngineeringImage-based ModelsSuch PipelinesSocial SciencesSoftware PipelineComputational MedicineMultiscale AnalysisModeling And SimulationBiological ModelMultiscale SimulationIntegrated PipelinesComputational AnatomyGeometric ModelingNeuroimagingComputer ScienceGeometric Model GenerationBiomedical ModelingMedical Image ComputingBiomedical SystemBiomedical ComputingComputational NeuroscienceBiomedical ImagingComputational BiologyNeuroscienceElectrophysiologySystems BiologyBrain ModelingMultiscale Modeling
Many simulation studies in biomedicine are based on a similar sequence of processing steps, starting from images and running through geometric model generation, assignment of tissue properties, numerical simulation and visualization of the results--a process known as image-based geometric modelling and simulation. We present an overview of software systems for implementing such a sequence both within highly integrated problem-solving environments and in the form of loosely integrated pipelines. Loose integration in this case indicates that individual programs function largely independently but communicate through files of a common format and support simple scripting, so as to automate multiple executions wherever possible. We then describe three specific applications of such pipelines to translational biomedical research in electrophysiology.
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