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The locus of flicker adaptation in the migraine visual system: A dichoptic study

机译:偏头痛视觉系统中闪烁适应的源头:一项双歧研究

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摘要

Background: Flickering light has been shown to sensitize the migraine visual system at high stimulus contrast while elevating thresholds at low contrast. The present study employs a dichoptic psychophysical paradigm to ask whether the abnormal adaptation to flicker in migraine occurs before or after the binocular combination of inputs from the two eyes in the visual cortex. Methods: Following adaptation to high contrast flicker presented to one eye only, flicker contrast increment thresholds were measured in each eye separately using dichoptic viewing. Results: Modest interocular transfer of adaptation was seen in both migraine and control groups at low contrast. Sensitization at high contrast in migraine relative to control participants was seen in the adapted eye only, and an unanticipated threshold elevation occurred in the non-adapted eye. Migraineurs also showed significantly lower aversion thresholds to full field flicker than control participants, but aversion scores and increment thresholds were not correlated. Conclusions: The results are simulated with a three-stage neural model of adaptation that points to strong adaptation at monocular sites prior to binocular combination, and weaker adaptation at the level of cortical binocular neurons. The sensitization at high contrast in migraine is proposed to result from stronger adaptation of inhibitory neurons, which act as a monocular normalization pool.
机译:背景:闪烁的灯光已显示出在高刺激对比度下可以使偏头痛视觉系统敏感,而在低对比度下可以提高阈值。本研究采用了一种两栖性的心理物理学范例来询问偏头痛对闪烁的异常适应是否发生在视觉皮层中两只眼睛的双目输入的双眼组合之前或之后。方法:适应仅呈现给一只眼睛的高对比度闪烁后,使用分视观察法分别测量每只眼睛的闪烁对比度增加阈值。结果:偏头痛和对照组低对比度时均出现适度的眼间适应性转移。相对于对照参与者,偏头痛的高对比度敏化仅在适应的眼睛中可见,而在未适应的眼睛中出现了未预料到的阈值升高。偏头痛患者对全场闪烁的厌恶阈值也明显低于对照组,但厌恶分数和增加阈值没有相关性。结论:使用三阶段的适应神经模型对结果进行仿真,该模型表明在双眼组合之前单眼部位具有强适应性,而在皮质双眼神经元水平上适应性较弱。偏头痛中高对比度的敏化被认为是由于抑制性神经元的更强适应性引起的,而抑制性神经元起着单眼归一化作用。

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