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US Patent 11395604 Systems and methods for intraoperatively measuring anatomical orientation

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Is a
Patent
Patent
0

Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
0
Patent Number
113956040
Patent Inventor Names
Dennis Chien0
Michael J. O'Neil0
Date of Patent
July 26, 2022
0
Patent Application Number
159764820
Date Filed
May 10, 2018
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Patent Citations
‌
US Patent 10335241 Method and apparatus for intraoperative measurements of anatomical orientation
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US Patent 10396606 Systems and methods for wirelessly powering or communicating with sterile-packed devices
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US Patent 10714987 Systems and methods for wirelessly powering or communicating with sterile-packed devices
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US Patent 10499996 Methods and systems for computer-aided surgery using intra-operative video acquired by a free moving camera
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US Patent 11223245 Systems and methods for wirelessly powering or communicating with sterile-packed devices
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US Patent 10820835 Systems and methods for anatomical alignment
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US Patent 10743944 Method and apparatus for intraoperative measurements of anatomical orientation
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Patent Citations Received
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US Patent 12121344 Systems and methods for anatomical alignment
0
Patent Primary Examiner
‌
Olivia C Chang
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CPC Code
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A61B 5/067
0
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A61B 5/1071
0

Systems and methods are disclosed in which changes in the position and/or orientation of an anatomical structure or of a surgical tool can be measured quantitatively during surgery. In some embodiments, a surgical electronic module can be configured to attach to a surgical device, to continually detect changes in a position and/or orientation of the surgical device during surgery, and to communicate the changes to a user. In this way, where the surgical device is attached to a portion of a patient's anatomy and/or is used to manipulate the patient's anatomy, the surgical electronic module can detect changes in the position and/or orientation of said anatomy. In embodiments where more than one module is used during surgery, the modules can continually detect changes in their positions and/or orientations relative to one another, which correspond to changes in relative positions and/or orientations of the surgical devices to which the modules are attached.

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