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Title: Luminance controlled pupil size affects Landolt C task performance. Revision

Conference ·
OSTI ID:10162780
 [1];  [2]; ;  [3]
  1. Lawrence Berkeley Lab., CA (United States)
  2. Neurobehavioral Lab. Software, San Rafael, CA (United States)
  3. ABRATech Corp., Mill Valley, CA (United States)

Subjects judged the orientation of a 2 min. gap Landolt C located at a distance of 2.4 m. The stimuli were presented in central vision on a CRT, at low to medium contrast. The effects of varying the spectrum and luminance of surround lighting were assessed on both pupil size (measured using infrared pupillometry during task performance) and task accuracy. The task display was protected from the surround lighting, so that its luminance and contrast could be varied independently of the changes in the surround lighting. Indirect surround illumination was provided by either two illuminants of very different scotopic spectral content but with the same photopic luminance (Experiments 1 and 3), or by using the same illuminant at two different luminance levels (Experiment 2). In Experiment 3, the effect of changing surround spectrum was compared to the effect of varying task background luminance between 12 cd/m{sup 2} and 73 cd/m{sup 2}. In all experiments, scotopically enhanced surround lighting produced pupil areas which were reduced by almost 50% in comparison with surround lighting with relatively less scotopic luminance. Concomitantly there was improvement in Landolt C task performance with the scotopically enhanced surround lighting at all contrast and luminance levels. In these experiments, smaller pupil sizes were associated with significantly better visual-task performance in spite of lower task retinal illuminance when compared to the condition with larger pupils. These results suggest that changes in surround spectrum can compensate for the effect on task performance of a reduction in task luminance and supports the hypothesis that lighting energy savings could accrue in the workplace by shifting lamp spectra to obtain greater scotopic efficacy.

Research Organization:
Lawrence Berkeley Lab., CA (United States)
Sponsoring Organization:
USDOE, Washington, DC (United States)
DOE Contract Number:
AC03-76SF00098
OSTI ID:
10162780
Report Number(s):
LBL-32032-Rev.; CONF-9208206-2; ON: DE93013886; IN: L-161
Resource Relation:
Conference: Illuminating Engineering Society annual conference,San Diego, CA (United States),2-6 Aug 1992; Other Information: PBD: Feb 1993
Country of Publication:
United States
Language:
English