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帕金森病患者对低对比度图案位移、颜色对比度和亮度对比度刺激的视觉阈值。

Visual thresholds to low-contrast pattern displacement, color contrast, and luminance contrast stimuli in Parkinson's disease.

作者信息

Haug B A, Trenkwalder C, Arden G B, Oertel W H, Paulus W

机构信息

Department of Clinical Neurophysiology, Georg August University, Göttingen, Germany.

出版信息

Mov Disord. 1994 Sep;9(5):563-70. doi: 10.1002/mds.870090510.

Abstract

We used the computerized Moorfield Vision System to demonstrate specific increases in various perceptual visual thresholds in idiopathic Parkinson's syndrome. Fifteen patients were compared to 13 age-matched normals. Motion detection was impaired maximally (2 p < 0.01 and better in two-tailed t test) at luminance contrasts of 3-7%. Stimulus was an achromatic vertical 4 cycles/degrees sine wave grating subtending 3 degrees x 2 degrees, centered 5 degrees in the nasal field and oscillating at 5 Hz. In addition, stationary color and luminance contrast thresholds were tested with flashed display of 5 degrees x 6 degrees random letters, which were presented for 200 ms (color) and 50 ms (achromatic). Color discrimination was impaired in the tritan axis only (2 p < 0.05 in two-tailed t test). All achromatic stimuli--luminance increments, decrements, and phase reversing stimuli--were equally well seen by patients and controls. We conclude that the dopaminergic deficit of retinal amacrine cells in Parkinson patients can be monitored by combined low-contrast and motion (displacement) stimuli. Future studies will determine if moving colored targets are more effective in discriminating patients from controls than are the achromatic gratings used in this work.

摘要

我们使用计算机化的摩尔菲尔德视觉系统来证明特发性帕金森综合征患者各种感知视觉阈值的特定增加。将15名患者与13名年龄匹配的正常人进行比较。在亮度对比度为3%-7%时,运动检测受损最大(双侧t检验中p<0.01,效果更好)。刺激物是一个无色垂直的4周期/度正弦波光栅,视角为3度×2度,位于鼻侧视野中心5度处,以5赫兹振荡。此外,使用5度×6度随机字母的闪烁显示测试静态颜色和亮度对比度阈值,显示时间为200毫秒(颜色)和50毫秒(无色)。仅在蓝黄色轴上颜色辨别受损(双侧t检验中p<0.05)。患者和对照组对所有无色刺激——亮度增加、减少和相位反转刺激——的观察效果相同。我们得出结论,帕金森病患者视网膜无长突细胞的多巴胺能缺陷可以通过低对比度和运动(位移)刺激的组合来监测。未来的研究将确定移动的彩色目标在区分患者和对照组方面是否比本研究中使用的无色光栅更有效。

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