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Dynamics of a horizontal saccadic oculomotor system with colored noise

机译:彩色噪声水平扫视血管系统的动态

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摘要

Intermittent nystagmus is a special kind of nystagmus with an irregular attack time. Its pathogenesis remains unclear. Recently, nonlinear dynamic methods used to explore the mechanisms responsible for intermittent nystagmus have received increased attention. The current study examines the dynamic properties of the bistable horizontal saccadic oculomotor system driven by colored noise. The most probable amplitude, stationary probability density of response, and signal-to-noise ratio curves with different parameters are obtained through stochastic numerical simulation. Then, the stochastic P bifurcation and coherent resonance phenomenon of the saccadic oculomotor system are analyzed. Results indicate that inhibition strength, noise intensity, or correlation time could induce stochastic P bifurcation, which may explain the development of intermittent nystagmus. Further, it is found that intermittent nystagmus can be suppressed by increasing inhibition strength, and that correlation time and noise intensity can lead to coherence resonance.
机译:间歇性眼球震颤是一种特殊的眼球震颤,攻击时间不规则。其发病机制仍然不清楚。最近,用于探索负责间歇性眼球震颤的机制的非线性动态方法受到了增加的关注。目前的研究检查了由彩色噪声驱动的双稳态水平扫视血管系统系统的动态性质。通过随机数值模拟获得具有不同参数的最可能幅度,静止概率密度和具有不同参数的信噪比曲线。然后,分析了扫视血管运动系统的随机P分叉和相干谐振现象。结果表明,抑制强度,噪声强度或相关时间可以诱导随机P分叉,这可以解释间歇性眼球菌的发展。此外,发现可以通过增加抑制强度来抑制间歇性眼球菌,并且相关时间和噪声强度可以导致相干共振。

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