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Ultrapolar electrosurgery blade and ultrapolar electrosurgery pencils

An electrosurgery and blade technology, applied in the fields of hyperpolar electrosurgical blades and hyperpolar electrosurgical pens, can solve the problems of low voltage, low energy, and limited ability of bipolar electrosurgical cutting to coagulate hemorrhagic areas.

Active Publication Date: 2019-03-15
IC MEDICAL
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

While bipolar electrosurgery enables the use of lower voltages and less energy, thereby reducing or eliminating the potential for tissue damage and sparks associated with monopolar electrosurgery, bipolar electrosurgery has limited ability to cut and coagulate areas of massive bleeding

Method used

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  • Ultrapolar electrosurgery blade and ultrapolar electrosurgery pencils
  • Ultrapolar electrosurgery blade and ultrapolar electrosurgery pencils
  • Ultrapolar electrosurgery blade and ultrapolar electrosurgery pencils

Examples

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Embodiment Construction

[0041] Exemplary embodiments of the ultrapolar electrosurgical blade and ultrapolar electrosurgical pen of the present invention allow the user or surgeon to, by placing the electrosurgical blade on either side of it on which both the active and return electrodes are located, The sharp, non-conductive tip of the electrosurgical blade can be used to cut, and the electrosurgical blade can be used to coagulate large areas of biological tissue. The electrosurgical blade and electrosurgical pencil of the present invention can also cut with the active and return electrodes of the electrosurgical blade. Exemplary embodiments of the ultrapolar electrosurgical blade and ultrapolar electrosurgical pen of the present invention include an electrosurgical blade having a non-conductive planar member with opposed planar sides, a cutting end and a non-cutting end, each located at A first active electrode and a first return electrode on one opposite planar side of the non-conductive planar mem...

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Abstract

An ultrapolar electrosurgery blade and ultrapolar electrosurgery pencils are provided. The ultrapolar electrosurgery blade has a non-conductive planar member with opposing planar sides, a cutting end,and an opposite non-cutting end, first active and return electrodes located on one opposing planar side, and second active and return electrodes located on the other opposing planar side. The ultrapolar non-telescopic and telescopic electrosurgery pencils can be with or without smoke evacuation and are capable of cutting with a sharp non-conductive cutting end of the ultrapolar electrosurgery blade and cutting and coagulating with activation of active and return contacts both contained on each side of the ultrapolar electrosurgery blade.

Description

[0001] Cross References to Related Applications [0002] This application claims priority to U.S. Patent Application Serial No. 15 / 211,270, filed July 15, 2016, and U.S. Patent Application Serial No. 15 / 211,431, filed July 15, 2016, both in their entirety It is hereby incorporated by reference. technical field [0003] The present invention relates generally to an ultrapolar electrosurgical blade and ultrapolar electrosurgical pencil that use monopolar energy in bipolar mode for cutting and coagulation. The Ultra Electrosurgical Blade and the Ultra Electrosurgical Pen are capable of cutting through the sharp, non-conductive cutting end of the Ultra Electrosurgical Blade, and cutting or coagulation by activating both the active and return electrodes contained on the Electrosurgical Blade. [0004] The ultrapolar electrosurgical blade of the present invention has a non-conductive planar member having first and second opposing planar sides, a cutting end and an opposing non-cutt...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): A61B17/3211A61B18/12A61B18/14A61B18/16
CPCA61B17/3211A61B18/148A61B2018/00601A61B2018/1412A61B2018/162
Inventor 伊恩·考斯麦斯库
Owner IC MEDICAL
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