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Exploiting multi-core and many-core architectures for efficient simulation of biologically realistic models of Golgi cells

机译:利用多核和多核架构,以了解高尔基细胞生物学现实模型的高效模拟

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Realistic neuronal activity simulation is of central importance for neuroscientists. These simulations allow to test new drugs, to study cerebral pathologies and to discover innovative therapies undertaking in silico experiments instead of in vivo ones. However, the processing times needed to simulate these models are very long. Therefore, high performance computing technologies should be explored in order to provide faster simulations. In this work, authors described high performant and realistic simulations of Golgi cells activity, based on the multi-core and the many-core approaches. Thus, simulations are performed on multi-core Intel processors and on NVIDIA Graphics Processing Units. Moreover, authors addresses the issue of portability among heterogeneous devices by proposing a solution based on OpenCL paradigm. The obtained results show that the considered parallel technologies, in particular the GPU5, are suitable for that kind of simulations and significantly reduce processing times. (C) 2018 Elsevier Inc. All rights reserved.
机译:现实神经元活动模拟对于神经科学家来说是一种核心重要性。这些模拟允许测试新药,研究脑病变,并发现在硅实验中取代的创新疗法而不是体内的疗法。然而,模拟这些模型所需的处理时间很长。因此,应探索高性能计算技术,以便提供更快的模拟。在这项工作中,基于多核和许多核心方法,作者描述了高级性能和逼真模拟的Golgi细胞活动。因此,在多核英特尔处理器和NVIDIA图形处理单元上执行模拟。此外,作者通过提出基于OpenCL范例的解决方案来解决异构设备之间的可移植性问题。所获得的结果表明,考虑了并行技术,特别是GPU5,适用于那种模拟,并显着降低加工时间。 (c)2018 Elsevier Inc.保留所有权利。

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