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首页> 外文期刊>Journal of vision >The influence of stimulus size on heterochromatic modulation electroretinograms
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The influence of stimulus size on heterochromatic modulation electroretinograms

机译:刺激大小对异色调制视网膜电图的影响

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When combined with the electroretinogram (ERG), the heterochromatic flicker photometry procedure allows an objective in vivo assessment of postreceptoral activity. Responses evoked at intermediate (approximately 12 Hz) and high (30 Hz) temporal frequencies reflect the red–green cone opponent (possibly parvocellular) and the luminance (possibly magnocellular) responses, respectively. Previously, we found that cone-isolating stimuli at intermediate temporal frequencies elicited ERG responses with similar amplitudes and phases for different spatial arrangements of the stimuli, whereas response amplitudes at high temporal frequencies were positively correlated with stimulus size. The purpose of this study was to investigate whether the influence of stimulus size was confined to cone-isolating stimuli or whether it was a general feature of heterochromatic stimulation. Furthermore, we aimed to determine the smallest spatial extent for a significant response in the two postreceptoral mechanisms. Monocular ERGs were recorded to red–green counterphase modulated sinusoidal stimuli (mean luminance of 200 cd/m2) presented at 12 and 36 Hz at different stimulus sizes. At each stimulus condition, a series of ERGs were recorded with the red-contrast fraction (FR) [FR = CR/(CR + CR)] of the stimulus varying between 0.0 and 1.0. Response amplitudes at 36 Hz changed with FR for all subjects, exhibiting a V-shaped amplitude profile with a minimum close to the psychophysics-based isoluminance, where the ERG phase changed by 180°. As stimulus size decreased, the amplitudes to 36 Hz also decreased. In contrast, amplitudes and phases at 12 Hz generally were constant for all values of FR. These amplitudes were invariant to stimulus sizes larger than 10° but decreased with decreasing stimulus size below 10°. Phase also changed in this range. Thus, luminance pathway ERG responses (36 Hz) show direct dependency on stimulus size, whereas chromatic pathway responses (12 Hz) are independent of the stimulus size above 10°.
机译:当与视网膜电图(ERG)结合使用时,异色闪烁光度法可以对受体后的活性进行客观的体内评估。在中间(大约12 Hz)和高(> 30 Hz)时间频率处引起的响应分别反映了红绿锥对手(可能是小细胞的)和亮度(可能是细胞的)的响应。以前,我们发现,在中间时间频率处的锥体隔离刺激会针对不同的空间布置刺激引起具有相似幅度和相位的ERG响应,而在高时间频率处的响应幅度与刺激大小呈正相关。这项研究的目的是调查是否刺激大小的影响仅限于锥体隔离刺激或它是否是异色刺激的一般特征。此外,我们旨在确定在两种受体后机制中产生显着反应的最小空间范围。单眼ERG被记录为在不同刺激大小下以12 Hz和36 Hz出现的红绿色反相调制的正弦曲线刺激(平均亮度200 cd / m 2 )。在每种刺激条件下,记录了一系列带有红色对比度( F R )[ F R = C R /( C R + C R )]在0.0和1.0之间变化。对于所有受试者,36 Hz的响应幅度随 F R 的变化而变化,呈现出V形的振幅分布,其最小值接近基于心理物理学的等亮度,其中ERG相发生了变化180°。随着刺激大小的减小,至36 Hz的振幅也减小。相反,对于 F R 的所有值,在12 Hz处的振幅和相位通常是恒定的。这些振幅对于大于10°的刺激大小不变,但随着小于10°的刺激大小减小而减小。相位也在此范围内变化。因此,亮度途径ERG响应(36 Hz)显示出直接取决于刺激大小,而色度途径响应(12 Hz)与高于10°时的刺激大小无关。

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