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首页> 外文期刊>Vision Research: An International Journal in Visual Science >Time-varying, slow-phase component interaction in congenital nystagmus.
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Time-varying, slow-phase component interaction in congenital nystagmus.

机译:先天性眼球震颤的时变,慢相成分相互作用。

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摘要

We investigated the nystagmus of a 12-year-old boy with suspected X-linked congenital nystagmus (CN) and exophoria to determine the underlying mechanisms and component signals in the 'dual-velocity' and other slow phases of his Asymmetric (a)Periodic Alternating Nystagmus (APAN). Fast Fourier transforms (FFT) were performed on the waveforms and residual data after subtracting a sawtooth waveform whose amplitude and frequency matched those of the jerk nystagmus. The FFT analyses identified two frequency components (jerk--4 Hz and pendular--4 and 8 Hz, variable) that varied differently in intensity and frequency/phase over the time-course of the APAN. We synthesized each of the patient's slow phases using summation of sawtooth and sinusoidal waveforms. The resulting waveforms included jerk (with different slow-phase appearances), dual jerk, and pendular. We demonstrated that the pendular nystagmus seen during the neutral phase of APAN and the appearance of either decelerating (mimicking latent nystagmus), dual-velocity, or dual-jerk slow phases can be explained and produced by the summation of linear and pendular components of variable amplitudes and frequencies/phases. Thus, one mechanism may be responsible for all the variation seen in this patient's slow phases, rather than the less parsimonious hypothesis of a switched-tonic-imbalance mechanism that we had originally suggested to simulate the dual-velocity waveform.
机译:我们调查了一个12岁男孩的眼球震颤,该男孩疑似X连锁性先天性眼球震颤(CN)和exophoria,以确定其“不对称(a)周期性”的“双速”和其他缓慢阶段的潜在机制和成分信号交替性眼球震颤(APAN)。在减去幅度和频率与急动眼球震颤的幅度和频率相匹配的锯齿波形之后,对波形和残差数据执行快速傅立叶变换(FFT)。 FFT分析确定了在APAN的时间过程中强度和频率/相位变化不同的两个频率成分(-4赫兹和4到8赫兹,可变)。我们使用锯齿波和正弦波波形的总和来合成每个患者的慢相。产生的波形包括急动(具有不同的慢相外观),双重急动和摆动。我们证明了在APAN的中性阶段看到的摆动性眼球震颤和减速(模仿潜在性眼球震颤),双速度或双急动慢相的出现可以通过变量的线性和摆动分量的总和来解释和产生。幅度和频率/相位。因此,一种机制可能是导致该患者缓慢阶段出现的所有变化的原因,而不是我们最初建议模拟双速波形的开关声压不平衡机制的次要假设。

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