Bipolar electrosurgical instruments

US2025025226A1 · US · A1

Patent metadata
FieldValue
Publication numberUS-2025025226-A1
Application numberUS-202418910341-A
CountryUS
Kind codeA1
Filing dateOct 9, 2024
Priority dateJun 13, 2018
Publication dateJan 23, 2025
Grant date

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  1. Title

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  2. Abstract

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  4. Key dates

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  5. First independent claim

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Abstract

Official abstract text for this publication.

A bipolar surgical instrument comprises a body, first and second opposed jaws located at the distal end of a shaft, the first jaw being movable with respect to the second jaw between an open position in which the first and second jaws are spaced apart from one another, and a closed position in which the first and second jaws are adjacent one another. The first and second elongate jaw members have respective first and second electrodes. A controller is operable to determine a starting voltage for application to the jaws.

First claim

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1 . An electrosurgical system comprising: a bipolar electrosurgical instrument comprising: a body; an elongate shaft attached to the body, the elongate shaft extending to a distal end; first and second elongate jaw members at the distal end of the elongate shaft, the first elongate jaw member carrying a first electrode and the second elongate jaw member carrying a second electrode, the jaw members being movable relative to one another between an open position in which the first and second electrodes are spaced apart from one another and a closed position in which the first electrode is adjacent the second electrode to engage tissue; a power cable comprising a pair of electrically conductive elements, and comprising a first end for connection with a source of radio frequency electromagnetic energy and a second end for connection to the first and second electrodes; and a waveform generator connectable to the power cable and comprising: a radio frequency signal generator configured to supply a radio frequency signal to the first and second electrodes via the power cable; and a controller configured to control operation of the radio frequency signal generator, wherein the controller is configured to: control the radio frequency generator, during an initiation stage, prior to tissue heating and sealing stages, in which characteristics of the tissue are not intended to be substantially altered, to supply the radio frequency signal of a predetermined constant power level to the first and second electrodes for a predetermined time period comprising an end time, and to measure a voltage level between the first and second electrodes at the end time, the voltage level being stored as a starting voltage for subsequent supply of radio frequency signals to the first and second electrodes, and during the tissue sealing stage performed immediately after the tissue heating stage, ramp up an applied voltage throughout the tissue sealing stage, the applied voltage starting from a final voltage of the tissue heating stage and ramping up at a rate faster than a ramp up rate during the tissue heating stage 2 . An electrosurgical system as claimed in claim 1 , wherein the predetermined power level is 10 W, and the predetermined time period is 100 ms. 3 . An electrosurgical system as claimed in claim 1 , wherein the ramp up of the applied voltage occurs in a linear manner. 4 . An electrosurgical system as claimed in claim 1 , wherein the controller is further configured to monitor for short circuit faults by determining whether current flow is greater than a predetermined threshold for a current flow predetermined time period. 5 . An electrosurgical system comprising: a bipolar electrosurgical instrument comprising: a body; an elongate shaft attached to the body, the elongate shaft extending to a distal end; first and second elongate jaw members at the distal end of the elongate shaft, the first elongate jaw member carrying a first electrode and the second elongate jaw member carrying a second electrode, the jaw members being movable relative to one another between an open position in which the first and second electrodes are spaced apart from one another and a closed position in which the first electrode is adjacent the second electrode to engage tissue; a power cable comprising a pair of electrically conductive elements, and comprising a first end for connection with a source of radio frequency electromagnetic energy and a second end for connection to the first and second electrodes; and a waveform generator connectable to the power cable and comprising: a radio frequency signal generator configured to supply a radio frequency signal to the first and second electrodes via the power cable; and a controller configured to control operation of the radio frequency signal generator, wherein the controller is configured to control the radio frequency generator, during an initiation stage, prior to tissue heating and sealing stages, in which characteristics of the tissue are not intended to be substantially altered, to supply the radio frequency signal of a predetermined constant power level to the first and second electrodes for a predetermined time period comprising an end time, and to measure a voltage level between the first and second electrodes at the end time, the voltage level being stored as a starting voltage for subsequent supply of radio frequency signals to the first and second electrodes, and wherein the tissue sealing stage includes a size detection process whereby the controller is configured to, at an end of a hold time period, measure an impedance of the vessel and compare the measured impedance to a threshold impedance to thereby determine whether a vessel size is small or large. 6 . An electrosurgical system as claimed in claim 5 , wherein the controller is configured to, when determined that the vessel size is small, perform a ramp-up stage for a predetermined time and subsequently perform a seal-completed check stage which measures an impedance for a predetermined time at a predetermined power level to determine a correctness of a seal made during the tissue sealing stage. 7 . An electrosurgical system as claimed in claim 5 , wherein the controller is configured to, when determined that the vessel size is large, perform a re-ramping sequence by reducing an applied power for a fixed period and performing another tissue heating stage. 8 . An electrosurgical system as claimed in claim 7 , wherein, during the re-ramping sequence, the controller is configured to perform another tissue sealing after the another heating stage and repeating the another heating stage and the another sealing stage until the measured impedance is greater than or equal to the threshold impedance. 9 . An electrosurgical system as claimed in claim 5 , wherein the predetermined power level is 10 W, and the predetermined time period is 100 ms. 10 . An electrosurgical system as claimed in claim 5 , wherein the controller is further configured to monitor for short circuit faults by determining whether current flow is greater than a predetermined threshold for a current flow predetermined time period. 11 . An electrosurgical system comprising: a bipolar electrosurgical instrument comprising: a body; an elongate shaft attached to the body, the elongate shaft extending to a distal end; first and second elongate jaw members at the distal end of the elongate shaft, the first elongate jaw member carrying a first electrode and the second elongate jaw member carrying a second electrode, the jaw members being movable relative to one another between an open position in which the first and second electrodes are spaced apart from one another and a closed position in which the first electrode is adjacent the second electrode to engage tissue; a power cable comprising a pair of electrically conductive elements, and comprising a first end for connection with a source of radio frequency electromagnetic energy and a second end for connection to the first and second electrodes; and a waveform generator connectable to the power cable and comprising: a radio frequency signal generator configured to supply a radio frequency signal to the first and second electrodes via the power cable; and a controller configured to control operation of the radio frequency signal generator, wherein the controller is configured to: control the radio frequency generator, during an initiation stage, prior to tissue heating and sealing stages, in which characteristics of the tissue are not intended to be substantially altered, to supply the radio frequency signal of a predetermined constant power level to the first and second electrodes for a predeter

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What does patent US2025025226A1 cover?
A bipolar surgical instrument comprises a body, first and second opposed jaws located at the distal end of a shaft, the first jaw being movable with respect to the second jaw between an open position in which the first and second jaws are spaced apart from one another, and a closed position in which the first and second jaws are adjacent one another. The first and second elongate jaw members ha…
Who is the assignee on this patent?
Gyrus Medical Ltd
What technology area does this patent fall under?
Primary CPC classification A61B18/1445. Mapped technology areas include Human Necessities.
When was this patent published?
Publication date Thu Jan 23 2025 00:00:00 GMT+0000 (Coordinated Universal Time) (A1). Legal status and post-grant events are not shown on this page.
What related patents are in patentsdb?
We list 8 related publications on this page (citations in our corpus or others sharing the same primary CPC).