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Kepper N, Ettig R, Dickmann F et al. formal citation pending post-publication check

Parallel high-performance grid computing: capabilities and opportunities of a novel demanding service and business class allowing highest resource efficiency.

Nick Kepper, Ramona Ettig, Frank Dickmann, Rene Stehr, Frank Grosveld, Gero Wedemann, Tobias Aurelius Knoch1
Published 16 Sep 2015
Author Affiliations
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Published 16 Sep 2015

Parallel high-performance grid computing: capabilities and opportunities of a novel demanding service and business class allowing highest resource efficiency.

[version 1; not peer reviewed]

Nick Kepper, Ramona Ettig, Frank Dickmann, Rene Stehr, Frank Grosveld, Gero Wedemann, Tobias Aurelius Knoch1
Author Affiliations
1 Biophysical Genomics, Dept. Cell Biology & Genetics, Erasmus Medical Center, Rotterdam, The Netherlands
Presented at
HealthGRID 2010, International Health Grid Organization, University Paris XI, Orsay, France, 28th - 30th June, 2010.
Abstract
Competing Interests

No competing interests were disclosed

Keywords
Genome, genomics, genome organization, genome architecture, structural sequencing, architectural sequencing, systems genomics, coevolution, holistic genetics, genome mechanics, genome function, genetics, gene regulation, replication, transcription, repair, homologous recombination, simultaneous co-transfection, cell division, mitosis, metaphase, interphase, cell nucleus, nuclear structure, nuclear organization, chromatin density distribution, nuclear morphology, chromosome territories, subchromosomal domains, chromatin loop aggregates, chromatin rosettes, chromatin loops, chromatin fibre, chromatin density, persistence length, spatial distance measurement, histones, parallel super computing, grid computing, volunteer computing, Brownian Dynamics, Monte Carlo, fluorescence in situ hybridization, confocal laser scanning microscopy, fluorescence correlation spectroscopy, super resolution microscopy, spatial precision distance microscopy, autofluorescent proteins, in vivo labelling.
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