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US Patent 9872683 Surgical stapler with partial pockets

Patent 9872683 was granted and assigned to Applied Medical on January, 2018 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent
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Patent attributes

Patent Applicant
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Applied Medical
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Current Assignee
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Applied Medical
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
98726830
Patent Inventor Names
Babak Jasemian0
Matthew M. Becerra0
Steven E. Decker0
Timothy Hopkins0
Donald L. Gadberry0
Gary M. Johnson0
Date of Patent
January 23, 2018
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Patent Application Number
142123570
Date Filed
March 14, 2014
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Patent Citations Received
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US Patent 12133660 Controlling a temperature of an ultrasonic electromechanical blade according to frequency
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US Patent 11666331 Systems for detecting proximity of surgical end effector to cancerous tissue
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US Patent 11696760 Safety systems for smart powered surgical stapling
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US Patent 11696778 Surgical dissectors configured to apply mechanical and electrical energy
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US Patent 11701139 Methods for controlling temperature in ultrasonic device
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US Patent 11751872 Insertable deactivator element for surgical stapler lockouts
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US Patent 11786245 Surgical systems with prioritized data transmission capabilities
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US Patent 11903601 Surgical instrument comprising a plurality of drive systems
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Patent Primary Examiner
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Hemant M. Desai
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Patent abstract

A surgical stapler includes a jaw assembly at a distal end connected to a handle assembly that is configured to control the stapler and actuate the deployment of staples. The surgical stapler successfully eliminates intermediate caming portions commonly known as pushers that are located between the staples and a translating slider. The staples are located in pockets at an angle such that the base of the staple is parallel to an angled caming surface of the slider. The translating slider comes into direct contact with staples during deployment as the slider moves through each staple pocket where staples are partially supported by recesses along the slider pathway. The staples are deployed at an angle against the anvil surface. Because there are no pushers, a great deal of space is saved resulting in a much smaller diameter surgical stapler that is particularly suitable for laparoscopic stapling applications.

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