Paulin Michael G, Hoffman Larry F, Assad Christopher
Zoology and Neuroscience Department, the University of Otago, Dunedin, New Zealand.
IEEE Trans Neural Netw. 2004 Sep;15(5):987-94. doi: 10.1109/TNN.2004.832814.
Responses of vestibular primary afferent neurons to head rotation exhibit fractional-order dynamics. As a consequence, the head tends to be in a localized region of its state-space at spike times of a particular neuron during arbitrary head movements, and single spikes can be interpreted as state measurements. We are developing a model of neural computations underlying trajectory prediction and control tasks, based on this experimental observation. This is a step toward a formal neural calculus in which single spikes are modeled realistically as the operands of neural computation.
前庭初级传入神经元对头部旋转的反应呈现分数阶动力学。因此,在任意头部运动期间,头部在特定神经元的峰电位时刻往往处于其状态空间的局部区域,单个峰电位可被解释为状态测量值。基于这一实验观察结果,我们正在开发一种神经计算模型,用于轨迹预测和控制任务。这是迈向形式神经演算的一步,其中单个峰电位被现实地建模为神经计算的操作数。