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US Patent 10583310 Radioactive implant planning system and placement guide system

Patent 10583310 was granted and assigned to GT Medical Technologies on March, 2020 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
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Gt Medical Technologies, Inc.
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Current Assignee
GT Medical Technologies
GT Medical Technologies
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
105833100
Patent Inventor Names
David Brachman0
Evan K. Fram0
Date of Patent
March 10, 2020
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Patent Application Number
157919620
Date Filed
October 24, 2017
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Patent Citations
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US Patent 10085699 Radiation shielding
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US Patent 10080909 Apparatus and method for loading radioactive seeds into carriers
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US Patent 10265542 Dosimetrically customizable brachytherapy carriers and methods thereof in the treatment of tumors
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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 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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US Patent 12086391 Radiotherapy methods, systems, and workflow-oriented graphical user interfaces
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US Patent 11577095 Radiotherapy methods, systems, and workflow-oriented graphical user interfaces
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US Patent 11604564 Radiotherapy methods, systems, and workflow-oriented graphical user interfaces
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...
Patent Primary Examiner
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Mark Holcomb
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Patent abstract

An implant planning system aids delivery of radiation to tumor sites of a patient. The system allows a user to test various combinations of virtual implants, each associated with a corresponding physical implant (e.g., a carrier with an embedded radioactive seed), and to view the dosage area of the virtual implants so that adjustments to the virtual implants may be made until a prescribed dose of radiation to a treatment area is achieved. A treatment plan developed based on the virtual implants may then be used in surgical implantation of the corresponding physical implants. For example, the implant configuration of the treatment plan may be projected onto a treatment surface of a patient, such as in a surgical room, so that physical implants may be placed according to the projected image of the virtual implants.

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