BIPOLAR ELECTROSURGICAL CUTTING AND COAGULATION INSTRUMENT
20190175253 ยท 2019-06-13
Inventors
Cpc classification
A61B2018/00958
HUMAN NECESSITIES
A61B18/148
HUMAN NECESSITIES
A61B2018/00928
HUMAN NECESSITIES
A61B2018/00607
HUMAN NECESSITIES
A61B18/1482
HUMAN NECESSITIES
A61B2018/0016
HUMAN NECESSITIES
International classification
Abstract
A bipolar surgical instrument having a front region (3) with at least four coagulation elements (6, 7, 8, 9) entered in the slots at the at least four corners of a rectangle or at least four quarters of a circle of the insulation body (22) for coagulating and one cutting element at the centre of insulating body for cutting the tissue and/or vessel in the body, thereby having an at least five electrode arrangement for handling and treating the tissue and/or vessel. The cutting element (10) can be at least one blade or at least one needle and it can be fixed or moved longitudinally in an advanced position or retracted position.
Claims
1. A surgical instrument comprising: at least four coagulation elements placed in respective slots that are positioned in at least four corners of a rectangle or in at least four quarters of a circle of an insulator body; and at least one cutting element near the center of the insulator body and separated from the at least four coagulation elements through insulation, wherein the at least four coagulation elements are utilized to coagulate a tissue and/or vessel and said at least one cutting element is utilized to cut the tissue and/or vessel.
2. The surgical instrument as claimed in claim 1 wherein said insulator body has four sides and a front surface, where two of the sides have a larger surface area and are utilized to coagulate larger bleeding tissues and/or vessels, while the other two of the sides have a smaller surface area and are utilized to coagulate smaller bleeding tissues and/or vessels, and wherein the front surface is utilized to coagulate at the front surface-, and wherein any of the sides are configured so as to enable coagulation of the tissue and/or vessel and stop bleeding after a cut is performed by at least one cutting element without reorientation of the instrument.
3. The surgical instrument as claimed in claim 2, wherein when the tissue and/or vessel is cut at a first side by the at least one cutting element, first coagulation elements configured at the first side are utilized to coagulate, and when the tissue and/or vessel is cut at a second side by the cutting element, second coagulation elements configured at the second side ware utilized to coagulate.
4. The surgical instrument as claimed in claim 1, wherein the at least one cutting element is any or a combination of a blade, needle, cutter, or a sharp element.
5. The surgical instrument as claimed in claim 1, wherein the at least one cutting element slightly protrudes out compared to the at least four coagulation elements.
6. The surgical instrument as claimed in claim 1, wherein the at least one cutting element is fixed or moved longitudinally in an advanced position or in a retracted position.
7. The surgical instrument as claimed in claim 1, wherein the at least one cutting element has a thin area/size and conducts current in a manner such that the coagulation elements are electrically short to create a thin and fine cutting area at tip of cutting electrode to cut the tissue and/or vessel.
8. The surgical instrument as claimed in claim 1, wherein size of the at least four coagulation elements are same or different.
9. The surgical instrument as claimed in claim 1, wherein the coagulation elements are electrically configured as part of a first unit having a common terminal, while coagulation elements are electrically configured as part of a second unit having a common terminal, wherein the at least one cutting element is connected to the common terminal for conduction of current.
10. The surgical instrument as claimed in claim 1, wherein one or more of the at least four coagulation elements or electrodes operatively coupled thereto comprise: non-sticky or superconductive coatings or are made of superconductive materials; or non-conductive material with conductive coating on the surface.
11. The surgical instrument as claimed in claim 1, wherein the one or more of the at least four coagulation elements or electrodes operatively coupled thereto have any or a combination of rectangular, square, circular, or curved cross section area.
12. The surgical instrument as claimed in claim 1, wherein tips of said surgical instrument are configured so as to allow articulation at desired angle using any or a combination of hand control, motorised control, console, or robotic systems.
13. The surgical instrument as claimed in claim 1, wherein handle of said surgical instrument is operated using a single hand for performing any or a combination of a cut, coagulation, and to and fro movement of said at least one cutting element.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DESCRIPTION OF THE INVENTION
[0034] The invention discloses a surgical instrument with a front region of a tube having at least four coagulation elements entered in respective slots at the at least four corners of a rectangle or at least four quarters of a circle of insulating body at the front region 3 for coagulation of the tissue and/or vessel and one cutting element at the centre of the insulator body for cutting of the tissue and/or vessel in a laparoscopic or open surgery, or any other surgical procedure. Together the front region 3 of the instrument is having an at least Five electrode arrangement for handling and treating the tissue and/or vessel.
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[0040] Insulator body 22 is of construction such that insulation is provided in between the coagulation elements 6 and 7.
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[0042] The front region 3 comprises of an insulating material support 20 at the back end of the front region 3 that fits with the tube 2 and an insulator body 22. Insulating material support 20 and insulator body 22 can be same part or may be different parts of same material or different material.
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[0045] In an embodiment, there can be more than five electrodes that will enable numerous applications and effects.
[0046] The cutting element 10 slightly protrudes out of the surface and is slightly in elevated form and fixed compared to the coagulation elements 6,7,8,9 or the cutting element can move to and fro.
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[0048] It can be clearly illustrated here that the coagulation elements 6,7,8,9 are electrodes that coagulate the tissue and/or vessel. Cutting element 10 is an electrode that cuts the tissue and/or vessel. The size of all the at least four coagulation elements is the same, hence produces the same intensity current and produces same heat with same effect. The size of the cutting element is thinner than the coagulation elements. This means the coagulation elements 6,7,8,9 have larger surface area and cutting element 10 has a smaller surface area.
[0049] When the cutting element 10 conducts current, due to its size and area being thin, the coagulation elements are electrically short which creates a thin and fine cutting area creating an arc at the tip of cutting electrode to cut the tissue and/or vessel leading to the cutting effect. The cutting element 10 can be a blade, needle, cutter, sharp element or any other material or there can be more than one cutting element without limitation that conducts electricity. Coagulation elements can also be of any material without limitation that conducts electricity. The coagulation elements can be more than four without limitation as per requirement increasing the usage and the number of effect. There can also be three coagulation elements as per requirement.
[0050] As can be seen from the
[0051] In such a way, coagulating elements 6, 7 can be utilized to coagulate the tissue and/or vessel where side A has a larger surface area. When tissue and/or vessel is cut at side B by the cutter, coagulating elements 7, 8 can be utilized to coagulate. Similarly, coagulating elements 8, 9 can be utilized to coagulate the tissue and/or vessel where side C has a larger surface area. When tissue and/or vessel is cut at side D by the cutter, coagulating elements 9, 6 can be utilized to coagulate. Front surface E is utilized in any other cases to coagulate.
[0052] Insulation is provided between all the coagulation elements that separates all the elements from each other. Cutting element 10 is also insulated from all sides from all at least four coagulation elements 6,7,8,9. Thus all the elements are separate and insulated from one another.
[0053] The shape of the whole arrangement is plane region on all the four sides. The front view shows a rectangular shape of the arrangement. The shape without limitation can be curved or circular or square in front or any other desired shape.
[0054] When the larger bleeding tissue and/or vessel need to be coagulated then the coagulating elements 6, 7 or 8, 9 can be utilized to coagulate the tissue and/or vessel since the surface area of Side A and Side C is greater than Side B and Side D. When the smaller bleeding tissue and/or vessel need to be coagulated then the coagulating elements 7, 8 or 9, 6 can be utilized. In a way the surgeon can decide on the placement of the sides as per tissue area.
[0055] Only the cutting element 10 can sometimes be directly utilized for cutting purpose of the tissue and/or vessel. Alternatively, only the coagulation elements 6, 7, 8, 9 can sometimes be directly utilized by the surgeon for coagulating the tissue and/or vessel by placing only the sides or front surface on the tissue and/or vessel.
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[0058] The at least four coagulation elements 6,7,8,9 are arranged at the at least four corners 15,14,12,13 of the insulator body 22 which then together with the cutting element 10 which is in slot 11 forms the front region 3 of the instrument.
[0059] In an embodiment as illustrated in
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[0068] As illustrated in
[0069] Single hand control can be achieved for all activities like cut, coagulation, and needle adjustment while the surgeon can use other hand for holding other devices/tools.
[0070] The instrument can be used without limitation for all other surgical procedures.
[0071] All the electrodes/elements can have non sticky/superconductive coatings or can be made of superconductive materials or have special chemical coatings for improved results.
[0072] Electrodes/elements can have rectangular, square or circular or curved cross section area.
[0073] Electrodes/elements can be made up of nonconductive material with conductive coating surface.
[0074] The present disclosure relates to a surgical instrument comprising at least four coagulation elements (6, 7, 8, 9) placed in respective slots that are positioned in at least four corners of a rectangle or in at least four quarters of a circle of an insulator body; and at least one cutting element near the center of the insulator body and separated from the at least four coagulation elements through insulation, wherein the at least four coagulation elements are utilized to coagulate a tissue and/or vessel and said at least one cutting element is utilized to cut the tissue and/or vessel.
[0075] In an aspect, the coagulation elements 7, 9 are electrically configured as part of a first unit having a common terminal 31, while coagulation elements 6, 8 are electrically configured as part of a second unit having a common terminal 30, wherein the at least one cutting element is connected to the common terminal 31 for conduction of current.