Sensory Systems Codexery

Purkinje effect

Shift of eye's peak sensitivity to blue in dim light.

The Purkinje effect, also known as the Purkinje phenomenon or Purkinje shift, describes the tendency for the peak luminance sensitivity of the eye to shift toward the blue end of the color spectrum at low illumination levels as part of dark adaptation. This effect causes reds to appear darker relative to other colors as light levels decrease. It is named after the Czech anatomist Jan Evangelista Purkyně, who first described it in 1825.

year_discovered
1825

Lore & Background

The effect was first described in 1825 by Jan Evangelista Purkyně, a Czech anatomist and polymath. Purkyně often meditated at dawn during long walks in blossomed Bohemian fields, where he noticed that his favorite flowers appeared bright red on a sunny afternoon but looked very dark at dawn. He reasoned that the eye has two systems adapted to see colors: one for bright overall light intensity and another for dusk and dawn.

Reader's Guide

The Purkinje effect occurs at the transition between photopic (cone-based) and scotopic (rod-based) vision, in the mesopic state. As intensity dims, rods take over, and before color disappears completely, sensitivity shifts toward the rods' peak sensitivity at about 507 nm (greenish blue). This effect introduces a difference in color contrast under different levels of illumination; for example, in bright sunlight geranium flowers appear bright red against dull green leaves, but at dusk the red petals appear dark red or black while leaves and blue petals appear relatively bright. The insensitivity of rods to long-wavelength red light has led to practical uses: red lights are employed in submarine control rooms, aircraft cockpits, research laboratories, and naked-eye astronomy to allow dark adaptation while permitting reading. The effect also affects visual estimates of variable stars in astronomy when comparison stars of different colors are used.

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