Le Novère Nicolas
BMC Syst Biol. 2007 Jun 13;1:28. doi: 10.1186/1752-0509-1-28.
Computational neurobiology was born over half a century ago, and has since been consistently at the forefront of modelling in biology. The recent progress of computing power and distributed computing allows the building of models spanning several scales, from the synapse to the brain. Initially focused on electrical processes, the simulation of neuronal function now encompasses signalling pathways and ion diffusion. The flow of quantitative data generated by the "omics" approaches, alongside the progress of live imaging, allows the development of models that will also include gene regulatory networks, protein movements and cellular remodelling. A systems biology of brain functions and disorders can now be envisioned. As it did for the last half century, neuroscience can drive forward the field of systems biology.
计算神经生物学诞生于半个多世纪以前,此后一直处于生物学建模的前沿。计算能力和分布式计算的最新进展使得构建从突触到大脑的多个尺度的模型成为可能。最初专注于电过程,现在神经元功能的模拟涵盖了信号通路和离子扩散。“组学”方法产生的定量数据流以及活体成像的进展,使得能够开发出还包括基因调控网络、蛋白质运动和细胞重塑的模型。现在可以设想大脑功能和疾病的系统生物学。正如在过去半个世纪中一样,神经科学可以推动系统生物学领域的发展。