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US Patent 10898256 Surgical system with user adaptable techniques based on tissue impedance

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Contents

Is a
Patent
Patent

Patent attributes

Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
10898256
Date of Patent
January 26, 2021
Patent Application Number
15177456
Date Filed
June 9, 2016
Patent Citations
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US Patent 10111703 Electrosurgical generator
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US Patent 10265117 Surgical generator method for controlling and ultrasonic transducer waveform for ultrasonic and electrosurgical devices
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US Patent 10265118 Pinion blade drive mechanism for a laparoscopic vessel dissector
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US Patent 10271840 Apparatus and method for differentiating between tissue and mechanical obstruction in a surgical instrument
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US Patent 10278721 Electrosurgical instrument with separate closure and cutting members
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US Patent 10285724 Actuation mechanisms and load adjustment assemblies for surgical instruments
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US Patent 10285750 Systems and methods for operating an electrosurgical generator
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US Patent 10299810 Rotatable cutting implements with friction reducing material for ultrasonic surgical instruments
...
Patent Citations Received
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US Patent 11666368 Method for constructing and using a modular surgical energy system with multiple devices
0
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US Patent 11284936 Surgical instrument having a flexible electrode
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US Patent 11291444 Surgical stapling assembly with cartridge based retainer configured to unlock a closure lockout
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US Patent 11291510 Method of hub communication with surgical instrument systems
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US Patent 11478306 Shape acquiring method and controlling method for medical manipulator
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US Patent 11678925 Method for controlling an energy module output
0
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US Patent 11684401 Backplane connector design to connect stacked energy modules
0
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US Patent 11684400 Grounding arrangement of energy modules
0
...
Patent Primary Examiner
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Ronald Hupczey, Jr.
Patent abstract

A method for treating tissue includes applying an energy modality to tissue at an amplitude, measuring tissue impedance of the tissue, modulating application of the energy modality based on the measured tissue impedance, and ceasing application of the energy modality when a termination parameter is met.

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