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US Patent 9511243 Prevention of setup errors in radiotherapy

Patent 9511243 was granted and assigned to University of Florida on December, 2016 by the United States Patent and Trademark Office.

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Patent
Patent
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Patent attributes

Patent Applicant
University of Florida
University of Florida
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Current Assignee
University of Florida
University of Florida
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
95112430
Patent Inventor Names
Chihray Liu0
Bo Lu0
Guanghua Yan0
Jonathan G. Li0
Date of Patent
December 6, 2016
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Patent Application Number
143943570
Date Filed
April 12, 2013
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Patent Citations Received
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US Patent 12090342 Radiotherapy methods, systems, and workflow-oriented graphical user interfaces
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US Patent 11712587 Radiotherapy methods, systems, and workflow-oriented graphical user interfaces
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US Patent 11759656 Radiotherapy methods, systems, and workflow-oriented graphical user interfaces
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US Patent 11786756 Radiotherapy methods, systems, and workflow-oriented graphical user interfaces
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US Patent 11786757 Radiotherapy methods, systems, and workflow-oriented graphical user interfaces
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US Patent 11925817 Radiotherapy methods, systems, and workflow-oriented graphical user interfaces
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0
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US Patent 12086391 Radiotherapy methods, systems, and workflow-oriented graphical user interfaces
0
...
Patent Primary Examiner
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Charles A. Marmor, II
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Patent abstract

A patient safety system (PSS) (100) uses optical tracking in a linear accelerator treatment room to prevent gross setup errors. A patient (150) undergoes a computed tomography (CT) treatment-simulation scan while a CT ball bearing (BB) is on patient's surface. The CT BB is replaced with an infrared reflective marker (IRRM) (160) before radiotherapy treatment starts. Coordinates of the CT BB relative to an isocenter of the treatment room are used as reference for tracking. The coordinate system of an optical tracking system is converted to a coordinate system of the treatment room. The PSS evaluates setup accuracy for a radiotherapy session by comparing real-time position of the single IRRM determined by the optical tracking technology with a predicted reference position, and displays results on a graphical user interface. The PSS stops radiation when a deviation between real-time coordinates and predicted coordinates of the IRRM (160) exceeds a predefined threshold.

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