20240013690. LIGHT FIELD DEVICE, VARIABLE PERCEPTION PIXEL RENDERING METHOD THEREFOR, AND VARIABLE PERCEPTION SYSTEM AND METHOD USING SAME simplified abstract (EVOLUTION OPTIKS LIMITED)

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LIGHT FIELD DEVICE, VARIABLE PERCEPTION PIXEL RENDERING METHOD THEREFOR, AND VARIABLE PERCEPTION SYSTEM AND METHOD USING SAME

Organization Name

EVOLUTION OPTIKS LIMITED

Inventor(s)

Guillaume Lussier of Montreal (CA)

Raul Mihali of Westport CT (US)

Yaiza Garcia of Beaconsfield (CA)

Matej Goc of Kingston (CA)

LIGHT FIELD DEVICE, VARIABLE PERCEPTION PIXEL RENDERING METHOD THEREFOR, AND VARIABLE PERCEPTION SYSTEM AND METHOD USING SAME - A simplified explanation of the abstract

This abstract first appeared for US patent application 20240013690 titled 'LIGHT FIELD DEVICE, VARIABLE PERCEPTION PIXEL RENDERING METHOD THEREFOR, AND VARIABLE PERCEPTION SYSTEM AND METHOD USING SAME

Simplified Explanation

The patent application describes various embodiments of a process, system, and device that automatically adjust the user's perception of an input. This is achieved by defining adjusted image perception values for different input locations, resulting in the creation of a multi-focal effect, progressive perception adjustment, or similar effects.

  • The technology automatically adjusts the user's perception of an input.
  • Adjusted image perception values are defined for different input locations.
  • The technology creates a multi-focal effect or progressive perception adjustment.
  • The purpose is to enhance the user's perception and experience of the input.

Potential Applications:

  • Virtual reality (VR) and augmented reality (AR) systems can use this technology to provide a more immersive and realistic experience for users.
  • Gaming applications can utilize the multi-focal effect to enhance gameplay and create a more engaging environment.
  • Medical imaging systems can benefit from the progressive perception adjustment to improve the accuracy of diagnoses.

Problems Solved:

  • Users may have different visual preferences or limitations, and this technology allows for personalized perception adjustments to accommodate individual needs.
  • Traditional displays or systems may not provide a natural or realistic visual experience, and this technology addresses that by creating multi-focal effects or progressive adjustments.

Benefits:

  • Enhanced user experience by providing a more immersive and realistic perception of the input.
  • Personalized adjustments cater to individual visual preferences or limitations.
  • Improved accuracy in medical imaging can lead to better diagnoses and treatment plans.


Original Abstract Submitted

described are various embodiments of process, system and device to automatically adjust user perception of an input, whereby and adjusted image perception value is variably defined for different input locations to create at least one of a multi-focal effect, a progressive perception adjustment, or the like.