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US Patent 6975898 Medical imaging, diagnosis, and therapy using a scanning single optical fiber system

Patent 6975898 was granted and assigned to University of Washington on December, 2005 by the United States Patent and Trademark Office.

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Patent
Patent
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Patent attributes

Current Assignee
University of Washington
University of Washington
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
69758980
Patent Inventor Names
Eric J. Seibel0
Date of Patent
December 13, 2005
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Patent Application Number
098505940
Date Filed
May 7, 2001
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Patent Citations Received
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US Patent 12133715 Hyperspectral and fluorescence imaging and topology laser mapping with minimal area monolithic image sensor
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US Patent 12089868 Methods of using atherectomy catheter with deflectable distal tip
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US Patent 12111261 Integrated photodetector with direct binning pixel
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US Patent 12126887 Hyperspectral and fluorescence imaging with topology laser scanning in a light deficient environment
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US Patent 12123772 Integrated photodetector with charge storage bin of varied detection time
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US Patent 11839493 Optical coherence tomography for biological imaging
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US Patent 11839741 Apparatus for monitoring, regulating, or controlling fluid flow
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US Patent 11854175 Fluorescence imaging with fixed pattern noise cancellation
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...
Patent Primary Examiner
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Shawna J. Shaw
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Patent abstract

An integrated endoscopic image acquisition and therapeutic delivery system for use in minimally invasive medical procedures (MIMPs). The system uses directed and scanned optical illumination provided by a scanning optical fiber or light waveguide that is driven by a piezoelectric or other electromechanical actuator included at a distal end of an integrated imaging and diagnostic/therapeutic instrument. The directed illumination provides high resolution imaging, at a wide field of view (FOV), and in full color that matches or excels the images produced by conventional flexible endoscopes. When using scanned optical illumination, the size and number of the photon detectors do not limit the resolution and number of pixels of the resulting image. Additional features include enhancement of topographical features, stereoscopic viewing, and accurate measurement of feature sizes of a region of interest in a patient's body that facilitate providing diagnosis, monitoring, and/or therapy with the instrument.

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