Ringach D L
Center for Neural Science, New York University, NY 10003, USA.
Biol Cybern. 1995 Nov;73(6):561-8. doi: 10.1007/BF00199548.
A new model of smooth pursuit eye movements is presented. We begin by formally analyzing the stability of the proportional-derivative (PD) model of smooth pursuit eye movements using Pontryagin's theory. The PD model is the linearized version of the nonlinear Krauzlis-Lisberger (KL) model. We show that the PD model fails to account for the experimentally observed dependence of the eye velocity damping ratio and the oscillation period on the total delay in the feedback loop. To explain the data, a new 'tachometer' feedback model, based on an efference copy signal of eye acceleration, is proposed and analyzed by computer simulation. The model predicts some salient features of monkey pursuit data and suggests a functional role for the extraretinal input to the medial superior temporal area (MST).
提出了一种新的平稳跟踪眼球运动模型。我们首先使用庞特里亚金理论对平稳跟踪眼球运动的比例-微分(PD)模型的稳定性进行形式分析。PD模型是非线性克劳兹利斯-利斯伯格(KL)模型的线性化版本。我们表明,PD模型无法解释实验观察到的眼球速度阻尼比和振荡周期对反馈回路总延迟的依赖性。为了解释这些数据,提出了一种基于眼球加速度传出副本信号的新“转速计”反馈模型,并通过计算机模拟进行分析。该模型预测了猴子跟踪数据的一些显著特征,并暗示了视网膜外输入到内侧颞上区(MST)的功能作用。