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A Unifying Model-Based Hypothesis for the Diverse Waveforms of Infantile Nystagmus Syndrome

机译:婴儿眼球震颤综合征各种波形的基于模型的统一假设

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We expanded the original behavioral Ocular Motor System (OMS) model for Infantile Nystagmus Syndrome (INS) by incorporating common types of jerk waveforms within a unifying mechanism. Alexander’s law relationships were used to produce desired INS null positions and sharpness. At various gaze angles, these relationships influenced the IN slow-phase amplitudes differently, thereby mimicking the gaze-angle effects of INS patients. Transitions from pseudopendular with foveating saccades to jerk waveforms required replacing braking saccades with foveating fast phases and adding a resettable neural integrator in the pursuit pre-motor circuitry. The robust simulations of accurate OMS behavior in the presence of diverse INS waveforms demonstrate that they can all be generated by a loss of pursuit-system damping, supporting this hypothetical origin.
机译:通过在统一机制中合并常见类型的急动波形,我们扩展了婴幼儿眼震综合征(INS)的原始行为眼动系统(OMS)模型。亚历山大的法律关系用于产生所需的INS空位置和清晰度。在各种凝视角下,这些关系对IN慢相位振幅的影响不同,从而模仿了INS患者的凝视角效应。从具有凹进角扫视的假垂体过渡到急动波形,需要用凹入快速相代替制动扫视,并在追赶运动前电路中增加一个可复位的神经积分器。在存在各种INS波形的情况下,对精确的OMS行为进行的鲁棒性仿真表明,它们全都可以由追踪系统阻尼的损失来生成,从而支持了这种假设。

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