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违反了布洛赫定律,该定律规定了短暂闪光的强度和持续时间的互易性。

Violation of Bloch's Law that specifies reciprocity of intensity and duration with brief light flashes.

作者信息

Greene Ernest

机构信息

Laboratory for Neurometric Research, Department of Psychology, University of Southern California, Los Angeles, California, USA; e-mail:

出版信息

Iperception. 2013 Dec 10;4(8):543-50. doi: 10.1068/i0619rep. eCollection 2013.

Abstract

For more than a century researchers have been reporting that the visual impact of a very brief flash is determined by the quantity of photons that the flash delivers. This has been variously described as the Bunsen-Roscoe Law or Bloch's Law, often specified as reciprocity of intensity × duration. Prior research found no evidence for such reciprocity when microsecond-duration flashes from a light-emitting diode array were used to display the major contours of nameable shapes. The present work tested with flash durations ranging up to 100 ms and also found no reciprocity. This departure from classic principles might be due to the specific range of wavelengths of the light-emitting diodes and to a mesopic level of ambient light, which together would preclude activation of rods. The reciprocity of intensity and duration may only be valid with full dark adaptation and very dim flashes that activate rods.

摘要

一个多世纪以来,研究人员一直报告称,极短闪光的视觉效果取决于闪光所传递的光子数量。这一现象被不同地描述为本生-罗斯科定律或布洛赫定律,通常表述为强度×持续时间的倒数关系。先前的研究发现,当使用发光二极管阵列发出的微秒级持续时间的闪光来显示可命名形状的主要轮廓时,没有证据支持这种倒数关系。目前的研究在长达100毫秒的闪光持续时间范围内进行了测试,也未发现倒数关系。这种与经典原理的偏离可能是由于发光二极管的特定波长范围以及环境光的中间视觉水平,这两者共同作用会阻止视杆细胞的激活。强度和持续时间的倒数关系可能仅在完全暗适应和激活视杆细胞的非常微弱的闪光情况下才有效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac96/4129388/ff8cae3afd2c/i-perception-4-543-g0001.jpg

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