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黄斑色素滤光导致的光损失补偿:与S-视锥细胞通路的关系

Compensation for light loss resulting from filtering by macular pigment: relation to the S-cone pathway.

作者信息

Stringham James M, Hammond Billy R, Wooten Billy R, Snodderly D Max

机构信息

Vision Science Laboratory, University of Georgia, Athens, Georgia, USA.

出版信息

Optom Vis Sci. 2006 Dec;83(12):887-94. doi: 10.1097/01.opx.0000249976.00534.2d.

Abstract

PURPOSE

Macular pigment (MP) filters short-wavelength light before it reaches the visual pigments. At peak absorbance (460 nm), transmission of light through MP can range from almost 100% transmission to as little as 3%. As a result of the uneven topographic distribution of MP, spatial nonuniformities in visual perception would result if the visual system did not compensate for filtering differences across the central retina. This study characterizes compensation for different densities of MP.

METHODS

Sixteen young subjects (aged 24-40 years) with a wide range of MP density were studied. Increment thresholds were measured at 440 and 500 nm in the center of the fovea and at 6 degrees to 7 degrees eccentricity using conditions chosen to isolate the pi-1 mechanism. For six of the subjects, increment thresholds were also obtained for eccentricities of 1 degrees , 1.75 degrees , and 3 degrees . MP density was measured using heterochromatic flicker photometry at the same locations as the increment thresholds.

RESULTS

Peak sensitivity of the short-wavelength pathway across the central retina was constant despite MP density differences as large as 1.0 log unit.

CONCLUSIONS

These results suggest that the visual system increases gain of the S-cone pathway to offset light absorption by MP.

摘要

目的

黄斑色素(MP)在短波长光到达视觉色素之前对其进行过滤。在峰值吸光度(460纳米)时,光透过MP的透射率范围可从几乎100%到低至3%。由于MP在视网膜上的分布不均匀,如果视觉系统不补偿中央视网膜上的过滤差异,视觉感知就会出现空间不均匀性。本研究描述了对不同密度MP的补偿情况。

方法

对16名MP密度范围广泛的年轻受试者(年龄24 - 40岁)进行了研究。使用选定的条件来分离pi - 1机制,在中央凹中心以及6度至7度偏心率处测量440纳米和500纳米处的增量阈值。对于其中6名受试者,还获得了1度、1.75度和3度偏心率处的增量阈值。在与增量阈值相同的位置使用异色闪烁光度法测量MP密度。

结果

尽管MP密度差异高达1.0对数单位,但中央视网膜上短波长通路的峰值敏感度保持恒定。

结论

这些结果表明,视觉系统会增加S视锥细胞通路的增益以抵消MP对光的吸收。

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