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视力与照度的关系。

THE RELATION BETWEEN VISUAL ACUITY AND ILLUMINATION.

机构信息

Laboratory of Biophysics, Columbia University, New York.

出版信息

J Gen Physiol. 1937 Nov 20;21(2):165-88. doi: 10.1085/jgp.21.2.165.

Abstract
  1. An apparatus for measuring the visual acuity of the eye at different illuminations is described. The test object is continuously variable in size and is presented at a fixed distance from the eye in the center of a 30 degrees field. Observation of the field is through an artificial pupil. The maximum intensity obtainable is more than enough to cover the complete physiological range for the eye with white light though only 110 watts are consumed by the source. Means for varying the intensity over a range of 1:10(10) in small steps are provided. 2. The relation of visual acuity and illumination for two trained observers was measured, using two different types of test object, a broken circle and a grating. The measurements with both test objects show a break at a visual acuity of 0.16, all values below that being mediated by the rods and those above by the cones. The grating gives higher visual acuities at intensities less than about 30 photons and lower visual acuities above that. The maximum visual acuity attainable with the grating under the same conditions is about 30 per cent lower than that with the C. It is shown that the limiting factor in the resolution of the eye for the grating is the diameter of the pupil when it is less than 2.3 mm. and the size of the central cones when the pupil is larger than that. The value of the diameter of the cone derived on that basis from the visual acuity data agrees with that derived from direct cone count in a unit of area. 3. The data for the cones made with both test objects are adequately described by one and the same form of the stationary state equation derived by Hecht for the photoreceptor system. This fact, together with certain considerations about the difference in the nature of the two test objects with regard to the resolvable area, leads to the conclusion that detail perception is a function of a distance rather than an area. All the data for the rods can likewise be described by another variety of the same equation, although the data are too fragmentary to make the choice of the form as certain as might be desired.
摘要
  1. 描述了一种用于测量不同照度下眼睛视力的仪器。测试对象的大小可以连续变化,并在 30 度视场的中心以固定距离呈现给眼睛。通过人工瞳孔观察视场。虽然光源仅消耗 110 瓦,但可获得的最大强度足以覆盖眼睛对白光的完整生理范围。提供了用于以小步长在 1:10(10)范围内变化强度的手段。

  2. 使用两种不同类型的测试对象,即破碎的圆圈和光栅,测量了两名经过训练的观察者的视力和照度之间的关系。使用两种测试对象的测量结果均在视力为 0.16 时出现中断,低于该值的所有值均由棒体介导,而高于该值的则由锥体介导。在强度小于约 30 个光子的情况下,光栅会产生更高的视力,而在该强度以上则会产生较低的视力。在相同条件下,使用光栅可达到的最大视力比 C 低约 30%。结果表明,当瞳孔直径小于 2.3 毫米时,光栅对眼睛分辨率的限制因素是瞳孔直径;当瞳孔大于该值时,限制因素是中央锥体的大小。根据该基础从视力数据中得出的锥体直径值与从单位面积中的直接锥体计数中得出的锥体直径值一致。

  3. 使用两种测试对象获得的锥体数据均由 Hecht 为光感受器系统推导出的同一种稳态方程充分描述。这一事实,再加上关于两种测试对象在可分辨区域方面的性质差异的某些考虑,导致了这样的结论,即细节感知是距离的函数,而不是面积的函数。所有的棒体数据也可以用同一种方程的另一种形式来描述,尽管数据过于零碎,无法像人们所希望的那样确定该形式的选择。

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The Instantaneous Visual Threshold after Light Adaptation.光适应后的瞬间视觉阈值
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