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US Patent 10327632 Systems and methods for wide field-of-view optical coherence tomography

Patent 10327632 was granted and assigned to Novartis on June, 2019 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
Novartis
Novartis
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Current Assignee
Novartis
Novartis
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
103276320
Patent Inventor Names
Jochen Horn0
Date of Patent
June 25, 2019
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Patent Application Number
158449140
Date Filed
December 18, 2017
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Patent Citations Received
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US Patent 11986241 Automatic optical path adjustment in home OCT
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US Patent 11564564 Home OCT with automatic focus adjustment
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US Patent 11058299 Retinal imaging device and related methods
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US Patent 11389061 Methods and systems for alignment of ophthalmic imaging devices
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US Patent 11464408 Automatic optical path adjustment in home OCT
Patent Primary Examiner
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Jack Dinh
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Patent abstract

An optical coherence tomography (OCT) system includes a light source configured to generate an OCT beam and a beam splitter, configured to split the OCT beam into a reference beam and an imaging beam, direct the reference beam toward a reflector, and direct the imaging beam toward a scanner. The system includes a linear actuator, such as a piezoelectric or voice coil, configured to move the reflector to adjust the length of the reference beam and the scanner, configured to scan the imaging beam onto a target surface at a plurality of scan angles, wherein the scanner and target surface are separated by a sample distance that varies at each of the scan angles. The system further includes an OCT controller comprising a processor and instructions stored on a memory, the instructions executable by the processor to cause the OCT controller to generate signals to cause the scanner to scan the imaging beam at each of the scan angles at a first scan rate, and cause the actuator to adjust the length of the reference beam during the scan synchronously with the scan rate to offset the variation in sample distance at each of the scan angles.

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