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Titlebook: Distributed, High-Performance and Grid Computing in Computational Biology; International Worksh Werner Dubitzky,Assaf Schuster,Mathilde Rom

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Perioperative Management for Thymectomy,ults of their biological experiments using HVEM, so that they can analyze them together to perform good research. The proposed system is for people whose primary work is to access HVEM, to obtain experimental results for biological samples and to store or retrieve them on HVEM DataGrid. The architec
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Using Public Resource Computing and Systematic Pre-calculation for Large Scale Sequence Analysisments using classical batching systems like LSF or Sun Grid-Engine. Despite their simple usability they are limited to organizationally owned resources. In contrast to proprietary projects that implement large-scale grids we report on a grid-enabled solution for sequence homology and protein domain
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Accelerated microRNA-Precursor Detection Using the Smith-Waterman Algorithm on FPGAse. One of the most striking discoveries was the detection of microRNAs, a class of noncoding RNAs that play an important role in post-transcriptional gene regulation. Large-scale analyses are needed for the still increasingly growing amount of sequence data derived from new experimental technologies
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Implementation of a Distributed Architecture for Managing Collection and Dissemination of Data for Ft privacy was protected, researchers without dependable Internet access were accommodated, and researchers’ data were shared globally. Data dictionaries codified the nature of the data being integrated, data compliance was assured through multiple consistency checks, and recovery systems provided a
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Grid-Enabled High Throughput Virtual Screening been able to deploy large scale virtual docking within the framework of the WISDOM initiative against malaria and avian influenza requiring about 100 years of CPU on the EGEE, Auvergrid and TWGrid infrastructures. These achievements demonstrated the relevance of large scale grids for the virtual sc
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Grid Computing for the Estimation of Toxicity: Acute Toxicity on Fathead Minnow (,)jor technology behind the estimation of toxicity is quantitative structure activity relationship modelling. It is a complex procedure involving data gathering, preparation and analysis. The current paper describes the use of grid computing in the computational estimation of toxicity and provides a c
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