Ghaderi Viviane S, Allam Sushmita L, Ambert N, Bouteiller J-M C, Choma J, Berger T W
Department of El University of Southern California, Los Angeles, USA.
Annu Int Conf IEEE Eng Med Biol Soc. 2011;2011:3581-4. doi: 10.1109/IEMBS.2011.6090598.
Recent experimental evidence suggests that glial cells are more than just supporting cells to neurons - they play an active role in signal transmission in the brain. We herein propose to investigate the importance of these mechanisms and model neuron-glia interactions at synapses using three approaches: A parametric model that takes into account the underlying mechanisms of the physiological system, a non-parametric model that extracts its input-output properties, and an ultra-low power, fast processing, neuromorphic hardware model. We use the EONS (Elementary Objects of the Nervous System) platform, a highly elaborate synaptic modeling platform to investigate the influence of astrocytic glutamate transporters on postsynaptic responses in the detailed micro-environment of a tri-partite synapse. The simulation results obtained using EONS are then used to build a non-parametric model that captures the essential features of glutamate dynamics. The structure of the non-parametric model we use is specifically designed for efficient hardware implementation using ultra-low power subthreshold CMOS building blocks. The utilization of the approach described allows us to build large-scale models of neuron/glial interaction and consequently provide useful insights on glial modulation during normal and pathological neural function.
最近的实验证据表明,神经胶质细胞不仅仅是神经元的支持细胞——它们在大脑的信号传递中发挥着积极作用。我们在此提议使用三种方法来研究这些机制的重要性,并模拟突触处的神经元-神经胶质细胞相互作用:一种考虑生理系统潜在机制的参数模型、一种提取其输入-输出特性的非参数模型,以及一种超低功耗、快速处理的神经形态硬件模型。我们使用EONS(神经系统基本对象)平台,这是一个高度精细的突触建模平台,以研究星形胶质细胞谷氨酸转运体在三方突触详细微环境中对突触后反应的影响。然后,使用EONS获得的模拟结果用于构建一个捕捉谷氨酸动力学基本特征的非参数模型。我们使用的非参数模型的结构经过专门设计,以便使用超低功耗亚阈值CMOS构建块进行高效的硬件实现。所描述方法的应用使我们能够构建大规模的神经元/神经胶质细胞相互作用模型,从而为正常和病理神经功能期间的神经胶质调节提供有用的见解。