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Systems and methods for processor-controlled ophthalmic lenses

An ophthalmic lens and system controller technology, applied in the system field of interactive wireless devices, can solve problems such as low-power applications

Active Publication Date: 2018-07-03
JOHNSON & JOHNSON VISION CARE INC
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, the use of embedded electronics in ophthalmic lenses introduces challenges including, for example, the possible requirement to communicate with the electronics, for internal and external sensing and / or monitoring, and for controlling the overall functionality of the electronics and ophthalmic lens, Due to volume and area constraints, all of these requirements must be achieved using relatively low power applications

Method used

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  • Systems and methods for processor-controlled ophthalmic lenses
  • Systems and methods for processor-controlled ophthalmic lenses
  • Systems and methods for processor-controlled ophthalmic lenses

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Embodiment Construction

[0016] The present disclosure provides systems and methods for energized ophthalmic lenses for personalization and / or calibration operations and initiation of protocols to control energized ophthalmic lens functions / components. The system and method can be implemented in an energy-efficient manner during operation and calibration of energized components. Additionally, customizable start-up protocols can be used to collect sensor data generated by two or more sensors with higher correlation and reliability for faster processing.

[0017] Glossary

[0018] In the specification and claims, various terms may be used to which the following definitions shall apply:

[0019] Active Lens Insert: as used herein may refer to an electronic or electromechanical insert device utilizing a logic circuit based controller.

[0020] Energized: as used herein, may refer to the state of being able to supply an electrical current or store electrical energy within it.

[0021] Energy: As used ...

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PUM

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Abstract

The present invention provides a method and system for calibrating and operating a processor-controlled ophthalmic lens. More specifically, the system includes an interactive wireless device for personalizing said control and activation of one or more functions and / or components of said processor-controlled ophthalmic lens. In some embodiments, the personalization may include responsiveness to conditions measured by one or more sensors included in an ophthalmic lens controlled by a processor, the interactive wireless device including feedback from the user on the functionality and / or component calibration.

Description

technical field [0001] The present disclosure relates generally to the control of energized ophthalmic lenses having more than one sensor, and more particularly to systems including interactive wireless devices for personalization and / or calibration operations and initiation of protocols to control energized ophthalmic lens functions / components . Background technique [0002] Traditionally, ophthalmic devices such as hydrogel lenses, intraocular lenses or punctal plugs have included corrective, cosmetic or therapeutic properties. For example, contact lenses can provide vision correcting functionality, cosmetic enhancement, and / or therapeutic benefits. Each function is provided by a physical property of the contact lens. For example, refractive properties can provide vision correcting functionality, pigments can provide cosmetic enhancement, and active agents can provide therapeutic functionality. [0003] More recently, new ophthalmic devices based on energized ophthalmic...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G02C7/04G06F3/01A61B5/00A61F2/16G02C7/08A61B3/10A61B5/11
CPCA61B5/1103A61B5/6821G02C7/04G02C7/081A61F2/1624A61B5/0002A61B2560/0223A61B3/10A61F2250/0001G02C11/10
Inventor R.B.普格A.托纳F.A.弗里特施
Owner JOHNSON & JOHNSON VISION CARE INC