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低氧张力下中央凹视力与光照的关系。

THE RELATION BETWEEN FOVEAL VISUAL ACUITY AND ILLUMINATION UNDER REDUCED OXYGEN TENSION.

机构信息

Fatigue Laboratory, Harvard University, Boston, Massachusetts, and the Department of Ophthalmology, Long Island College of Medicine, Brooklyn, New York.

出版信息

J Gen Physiol. 1940 May 20;23(5):613-30. doi: 10.1085/jgp.23.5.613.

Abstract
  1. The foveal visual acuity of eleven subjects was studied in relation to illumination under normal atmospheric conditions and at simulated altitudes of 10,000 feet (14.3 per cent O(2)) and 18,000 feet (10.3 per cent O(2)). A mask was used to administer the desired mixtures of oxygen and nitrogen. At the end of each experiment, measurements were made while inhaling 100 per cent oxygen from a cylinder. A red filter (No. 70 Wratten) was used so as to study only the behavior of the cones of the retina. 2. The logarithm of illumination was plotted horizontally (abscissa) and the logarithm of visual acuity vertically (ordinate). The reduced oxygen tensions resulted in a shift of the curve to the right, along the intensity axis, the extent of the change being 0.24 of a log unit at 14.3 per cent O(2) and 0.47 of a log unit at 10.3 per cent O(2). These effects were completely counteracted within a few minutes by inhaling oxygen. 3. As a consequence of the shape of the curve, such a shift to the right resulted in a relatively large decrease of visual acuity at low illuminations. At increasing light intensities anoxia produced less and less change, until at very high illuminations the decrease was negligible. Thus with 10.34 per cent O(2) the visual acuity at 0.144 photons decreased an average of 0.344 of a log unit, to 45 per cent of its normal value. At 1320 photons, however, it decreased only 0.026 of a log unit, to 94 per cent of its normal value for that intensity.
摘要
  1. 11 名受试者的中央视力在正常大气条件下和模拟海拔 10000 英尺(14.3%O(2)) 和 18000 英尺(10.3%O(2)) 下的光照条件下进行了研究。使用面罩来管理所需的氧气和氮气混合物。在每次实验结束时,从钢瓶中吸入 100%氧气进行测量。使用红色滤光片(No.70 Wratten),以便仅研究视网膜锥体细胞的行为。

  2. 横坐标为光照对数,纵坐标为视力对数。低氧分压导致曲线沿着强度轴向右移动,在 14.3%O(2) 时变化为 0.24 对数单位,在 10.3%O(2) 时变化为 0.47 对数单位。通过吸入氧气,这种影响在几分钟内就完全消除了。

  3. 由于曲线的形状,这种向右的移动导致在低光照下视力相对较大地下降。随着光强度的增加,缺氧产生的变化越来越小,直到在非常高的光照下,下降可以忽略不计。因此,在 10.34%O(2) 下,0.144 光子的视力平均下降了 0.344 个对数单位,降至正常值的 45%。然而,在 1320 光子时,它仅下降了 0.026 个对数单位,降至该强度下正常值的 94%。

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