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US Patent 11675097 Methods for PET detector afterglow management

Patent 11675097 was granted and assigned to RefleXion Medical on June, 2023 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
RefleXion Medical
RefleXion Medical
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Current Assignee
RefleXion Medical
RefleXion Medical
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
116750970
Date of Patent
June 13, 2023
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Patent Application Number
176978280
Date Filed
March 17, 2022
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Patent Citations
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US Patent 7265356 Image-guided medical intervention apparatus and method
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US Patent 7280633 Path planning and collision avoidance for movement of instruments in a radiation therapy environment
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US Patent 7291840 Combined transmission/emission tomography apparatus
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US Patent 7297958 Radiological imaging apparatus
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US Patent 7298821 Imaging and treatment system
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US Patent 7301144 Method and system for calibrating a positron emission tomography system
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US Patent 7331713 Method and device for delivering radiotherapy
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US Patent 7338207 Gantry positioning apparatus for X-ray imaging
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Patent Citations Received
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US Patent 11904184 Radiation therapy systems and methods with tumor tracking
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US Patent 12023523 Systems and methods for fault detection in emission-guided radiotherapy
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US Patent 11975220 System for emission-guided high-energy photon delivery
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Patent Primary Examiner
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Blake C Riddick
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CPC Code
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G01T 7/005
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G01T 1/2985
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G01T 1/208
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G01T 1/2023
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G01T 1/172
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Disclosed herein are methods and devices for the acquisition of positron emission (or PET) data in the presence of ionizing radiation that causes afterglow of PET detectors. In one variation, the method comprises adjusting a coincidence trigger threshold of the PET detectors during a therapy session. In one variation, the method comprises adjusting a gain factor used in positron emission data acquisition (e.g., a gain factor used to multiply and/or shift the output(s) of a PET detector(s)) during a therapy session. In some variations, a method for acquiring positron emission data during a radiation therapy session comprises suspending communication between the PET detectors and a signal processor of a controller for a predetermined period of time after a radiation pulse has been emitted by the linac.

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