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多发性硬化症和视神经炎患者颜色及亮度对比敏感度丧失的时空选择性

Spatio-temporal selectivity of loss of colour and luminance contrast sensitivity with multiple sclerosis and optic neuritis.

作者信息

Flanagan Patrick, Markulev Connie

机构信息

School of Psychology, Deakin University, Victoria, 3217, Australia.

出版信息

Ophthalmic Physiol Opt. 2005 Jan;25(1):57-65. doi: 10.1111/j.1475-1313.2004.00252.x.

Abstract

Colour and luminance-contrast thresholds were measured in the presence of dynamic Random Luminance-contrast Masking (RLM) in individuals who had had past diagnoses of optic neuritis (ON) some of whom have progressed to a diagnosis of multiple sclerosis (MS). To explore the spatio-temporal selectivity of chromatic and luminance losses in MS/ON, thresholds were measured using three different sizes and modulation rates of the RLM displays: small checks modulating slowly, medium-sized checks with moderate modulation and large checks modulating rapidly. The colour of the chromatic stimuli used were specified in a cone-excitation space to measure relative impairments in red-green and blue-yellow chromatic channels. These observers showed chromatic thresholds along the L/(L+M) axis that were higher than those along the S-cone axis for all display sizes/modulation rates and both red-green and blue-yellow colour thresholds were higher than luminance-contrast thresholds. The principal change in thresholds with spatio-temporal changes in the display was a reduction in thresholds for L/(L+M) and S-cones with increasing check size and modulation rate. However, luminance contrast thresholds did not change with display size/rate. These results are consistent with MS/ON selectively affecting processing in colour pathways rather than in the magnocellular pathway, and that within the colour pathways neurones with opposed L- and M-cone inputs are more damaged than colour-opponent neurons with input from S-cones.

摘要

在曾被诊断患有视神经炎(ON)的个体中,其中一些已进展为多发性硬化症(MS),在动态随机亮度对比掩蔽(RLM)存在的情况下测量颜色和亮度对比阈值。为了探究MS/ON中颜色和亮度损失的时空选择性,使用三种不同大小和调制率的RLM显示器测量阈值:缓慢调制的小方格、中等调制的中等大小方格和快速调制的大方格。所使用的颜色刺激的颜色在锥体激发空间中指定,以测量红-绿和蓝-黄颜色通道中的相对损伤。对于所有显示大小/调制率,这些观察者在L/(L+M)轴上的颜色阈值高于S锥体轴上的阈值,并且红-绿和蓝-黄颜色阈值均高于亮度对比阈值。随着显示器时空变化,阈值的主要变化是随着方格大小和调制率增加,L/(L+M)和S锥体的阈值降低。然而,亮度对比阈值不随显示大小/率变化。这些结果与MS/ON选择性地影响颜色通路而非大细胞通路中的处理一致,并且在颜色通路中,具有相反L和M锥体输入的神经元比具有S锥体输入的颜色对立神经元受损更严重。

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