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  • The geometry of the Eye Vergen...
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The geometry of the Eye Vergence Angle (EVA) while fixating on a near and far target.

The geometry of the Eye Vergence Angle (EVA) while fixating on a near and far target.

<p>A closer target is associated with a larger EVA, and a farther target is associated with a smaller EVA.</p>

Shranjeno v:
Bibliografske podrobnosti
Glavni avtor: Mohammed Safayet Arefin (22683505) (author)
Drugi avtorji: John Edward Swan II (22683508) (author), Russell Cohen Hoffing (22683511) (author), Steven M. Thurman (8611647) (author)
Izdano: 2025
Teme:
Neuroscience
Physiology
Pharmacology
Sociology
Mental Health
Biological Sciences not elsewhere classified
xlink "> recently
three different environments
significant main effect
repeated measures design
consistent individual differences
veridical depth estimate
including augmented reality
eye vergence angle
previously fixated targets
virtual target objects
target depth
virtual reality
fixated objects
virtual objects
vergence changes
eye fixations
starting depth
participants fixated
extended reality
virtual world
varying distances
results showed
natural settings
convergence vs
closer targets
changes constantly
13 participants
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  • Eye Vergence Angle (EVA) calculation and an example of unprocessed eye tracking data.
    od: Mohammed Safayet Arefin (22683505)
    Izdano: (2025)
  • The Eye Vergence Angle (EVA) as predicted by (a) environment and eye movement end depth in meters, and (b) as predicted by eye movement end depth in .
    od: Mohammed Safayet Arefin (22683505)
    Izdano: (2025)
  • The EVA as predicted by eye movement end depth and participant (data from Fig 4b).
    od: Mohammed Safayet Arefin (22683505)
    Izdano: (2025)
  • The experiment placed targets at 4 different depths, resulting in 12 different vergence eye movements. Measurements are expressed in meters (m) and diopters (D).
    od: Mohammed Safayet Arefin (22683505)
    Izdano: (2025)
  • Predicting the eye vergence angle by end depth (Hypothesis H1) and environment (Hypothesis H2): reduction of the maximal model to the fitted model.
    od: Mohammed Safayet Arefin (22683505)
    Izdano: (2025)

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