Towards simulation of subcellular calcium dynamics at nanometre resolution

Abstract

Numerical simulation of subcellular Ca2þ dynamics with a resolution down to one nanometre can be an important tool for discovering the physiological cause of many heart diseases. The requirement of enormous computational power, however, has made such simulations prohibitive so far. By using up to 12,288 Intel Xeon Phi 31S1P coprocessors on the new hybrid… (More)
DOI: 10.1177/1094342013514465

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