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US Patent 10058241 Systems and methods for improved visual field testing

Patent 10058241 was granted and assigned to Carl Zeiss Meditec on August, 2018 by the United States Patent and Trademark Office.

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Contents

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Patent
Patent

Patent attributes

Patent Applicant
Carl Zeiss Meditec
Carl Zeiss Meditec
Current Assignee
Carl Zeiss Meditec
Carl Zeiss Meditec
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10058241
Date of Patent
August 28, 2018
Patent Application Number
15439369
Date Filed
February 22, 2017
Patent Citations Received
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US Patent 11841988 Light field vision-based testing device, adjusted pixel rendering method therefor, and online vision-based testing management system and method using same
0
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US Patent 11500461 Light field vision-based testing device, system and method
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US Patent 11500460 Light field device, optical aberration compensation or simulation rendering
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US Patent 11789531 Light field vision-based testing device, system and method
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US Patent 11823598 Light field device, variable perception pixel rendering method therefor, and variable perception system and method using same
0
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US Patent 11487361 Light field device and vision testing system using same
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US Patent 10642355 Light field display, adjusted pixel rendering method therefor, and vision correction system and method using same
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US Patent 10699373 Light field display, adjusted pixel rendering method therefor, and vision correction system and method using same
...
Patent Primary Examiner
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Mohammad Hasan
Patent abstract

Systems and methods for performing a visual field test of a patient are described. One example method for performing the visual field test of the patient using a visual field testing device having a refractive correction element, a patient support, and a motor operably attached to one of the refractive correction element or the patient support includes positioning the patient's head relative to the device using the patient support. An image showing the position of the eye relative to the refractive correction element is collected. The relative displacement of the eye with respect to the refractive correction element is determined based on the collected image. The motor is actuated in a manner to reduce the determined displacement. A series of test stimuli is displayed to the patient's eye and responses to the test stimuli are received from the patient. The responses are analyzed to make an assessment of the patient's visual field.

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