BACKGROUND:\u3cbr/\u3eMathematical modeling and in silico analysis are widely acknowledged as complementary tools to biological laboratory methods, to achieve a thorough understanding of emergent behaviors of cellular processes in both physiological and perturbed conditions. Though, the simulation of large-scale models-consisting in hundreds or thousands of reactions and molecular species-can rapidly overtake the capabilities of Central Processing Units (CPUs). The purpose of this work is to exploit alternative high-performance computing solutions, such as Graphics Processing Units (GPUs), to allow the investigation of these models at reduced computational costs.\u3cbr/\u3e\u3cbr/\u3eRESULTS:\u3cbr/\u3eLASSIE is a black-box GPU-accelerate...
The computational analysis of complex biological systems can be hindered by two main factors. First,...
The study of biological systems witnessed a pervasive cross-fertilization between experimental inves...
Molecular simulations are continuously shedding light into a wide range of biological phenomena suc...
Abstract Background Mathematical modeling and in silico analysis are widely acknowledged as compleme...
In the last years, graphics processing units (GPUs) witnessed ever growing applications for a wide r...
The computational investigation of a biological system often requires the execution of a large numbe...
Motivation: Mathematical modelling is central to systems and synthetic biology. Using simulations to...
The introduction of general-purpose Graphics Processing Units (GPUs) is boosting scientific applicat...
Many essential cell processes, such as the conformation of embedded proteins, membrane permeability,...
Many essential cell processes, such as the conformation of embedded proteins, membrane permeability,...
The introduction of general-purpose Graphics Processing Units (GPUs) is boosting scientific applicat...
Copyright © 2014 Paolo Cazzaniga et al. This is an open access article distributed under the Creativ...
Mathematical models of biochemical networks can largely facilitate the comprehension of the mechanis...
The computational analysis of complex biological systems can be hindered by two main factors. First,...
Mathematical models of biochemical networks can largely facilitate the comprehension of the mechanis...
The computational analysis of complex biological systems can be hindered by two main factors. First,...
The study of biological systems witnessed a pervasive cross-fertilization between experimental inves...
Molecular simulations are continuously shedding light into a wide range of biological phenomena suc...
Abstract Background Mathematical modeling and in silico analysis are widely acknowledged as compleme...
In the last years, graphics processing units (GPUs) witnessed ever growing applications for a wide r...
The computational investigation of a biological system often requires the execution of a large numbe...
Motivation: Mathematical modelling is central to systems and synthetic biology. Using simulations to...
The introduction of general-purpose Graphics Processing Units (GPUs) is boosting scientific applicat...
Many essential cell processes, such as the conformation of embedded proteins, membrane permeability,...
Many essential cell processes, such as the conformation of embedded proteins, membrane permeability,...
The introduction of general-purpose Graphics Processing Units (GPUs) is boosting scientific applicat...
Copyright © 2014 Paolo Cazzaniga et al. This is an open access article distributed under the Creativ...
Mathematical models of biochemical networks can largely facilitate the comprehension of the mechanis...
The computational analysis of complex biological systems can be hindered by two main factors. First,...
Mathematical models of biochemical networks can largely facilitate the comprehension of the mechanis...
The computational analysis of complex biological systems can be hindered by two main factors. First,...
The study of biological systems witnessed a pervasive cross-fertilization between experimental inves...
Molecular simulations are continuously shedding light into a wide range of biological phenomena suc...