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US Patent 11511133 Systems and methods for fault detection in emission-guided radiotherapy

Patent 11511133 was granted and assigned to RefleXion Medical on November, 2022 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
RefleXion Medical
RefleXion Medical
Current Assignee
RefleXion Medical
RefleXion Medical
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
11511133
Date of Patent
November 29, 2022
Patent Application Number
17238113
Date Filed
April 22, 2021
Patent Citations
‌
US Patent 10745253 Robotic arm for patient positioning assembly
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US Patent 10795037 Methods for pet detector afterglow management
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US Patent 10959686 Method and apparatus for emission guided radiation therapy
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US Patent 11287540 Methods for PET detector afterglow management
‌
US Patent 11007384 Systems and methods for fault detection in emission-guided radiotherapy
‌
US Patent 10159853 Dose-distribution estimation in proton therapy
‌
US Patent 10327716 Method and apparatus for emission guided radiation therapy
‌
US Patent 10478133 Systems and methods for calibrating a nuclear medicine imaging system
...
Patent Citations Received
‌
US Patent 12023523 Systems and methods for fault detection in emission-guided radiotherapy
0
‌
US Patent 11627920 Method and apparatus for emission guided radiation therapy
0
‌
US Patent 11675097 Methods for PET detector afterglow management
0
‌
US Patent 11904184 Radiation therapy systems and methods with tumor tracking
0
‌
US Patent 11975220 System for emission-guided high-energy photon delivery
0
Patent Primary Examiner
‌
Kiho Kim
CPC Code
‌
A61N 5/1049
‌
A61N 5/1064
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A61N 2005/1052
‌
A61N 5/1081
‌
A61N 2005/1095
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A61N 5/1075

Disclosed herein are systems and methods for monitoring calibration of positron emission tomography (PET) systems. In some variations, the systems include an imaging assembly having a gantry comprising a plurality of positron emission detectors. A housing may be coupled to the gantry, and the housing may include a bore and a radiation source holder spaced away from a patient scan region within the bore. A processor may be configured to receive positron emission data from the positron emission detectors and to distinguish the positron emission data from the radiation source holder and from the patient scan region. A fault signal may be generated when the positron emission data from the radiation source holder exceeds one or more threshold parameters or criteria.

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