Robinson P A
School of Physics, University of Sydney, New South Wales, Australia.
Phys Rev E Stat Nonlin Soft Matter Phys. 2005 Jul;72(1 Pt 1):011904. doi: 10.1103/PhysRevE.72.011904. Epub 2005 Jul 8.
A physiologically based continuum model of brain dynamics is extended to incorporate arbitrary numbers of structures and neural populations, multiple outgoing fields of activity from a single population of neurons to various targets, improved treatment of converging or diverging projections and mesoscopic structure, and generalized connections to quantities observable via electroencephalography and other methods. The results are applied to study the corticothalamic system, predicting an intracortical resonance that leads to enhancements of electroencephalographic activity in the gamma (>30 Hz) range. This resonance involves feedback loops incorporating slow, short-range inhibitory fibers.
基于生理学的脑动力学连续体模型得到扩展,以纳入任意数量的结构和神经群体、从单个神经元群体到各种目标的多个传出活动场、对汇聚或发散投射以及介观结构的改进处理,以及与通过脑电图和其他方法可观测的量的广义连接。研究结果被应用于研究皮质丘脑系统,预测一种皮质内共振,该共振会导致脑电图活动在伽马(>30赫兹)范围内增强。这种共振涉及包含缓慢、短程抑制性纤维的反馈回路。