SURGICAL INSTRUMENT WITH A LOOP MADE OF A METAL WIRE
20230123525 · 2023-04-20
Inventors
Cpc classification
A61B18/148
HUMAN NECESSITIES
A61B2018/00607
HUMAN NECESSITIES
A61B2018/1475
HUMAN NECESSITIES
A61B2018/0091
HUMAN NECESSITIES
International classification
Abstract
A surgical instrument with a shaft is constructed as a hollow tube and has a longitudinal axis, proximal and distal ends and a metal wire having a first end section, a shaft section and a working section. The first end section is arranged in the area of the proximal end of the shaft or is guided out of the shaft on the proximal end. The shaft section is guided in the hollow tube and the wire is arranged such that it can move along the longitudinal axis of the shaft into a first position of the working section on the distal end projecting out of the shaft and into a second position of the working section within the shaft. The instrument is constructed as a bipolar instrument, wherein the metal wire is part of a first electrode and a second electrode is arranged in some sections on the shaft.
Claims
1. A Surgical instrument comprising: a shaft that is constructed as a hollow tube and that has a longitudinal axis, a proximal end, and a distal end; a metal wire that has a first end section, a shaft section, and a working section, wherein the first end section is arranged in the area of the proximal end of the shaft or is guided out of the shaft on the proximal end of the shaft, wherein the shaft section is guided in the hollow tube and wherein the wire is arranged such that the wire can move along the longitudinal axis of the shaft into a first position of the working section on the distal end projecting out of the shaft and into a second position of the working section completely within the shaft, wherein the instrument is comprised of a bipolar instrument, wherein the metal wire is part of a first electrode and a second electrode is arranged at least in some sections on the shaft.
2. The surgical instrument according to claim 1, characterized in that the metal wire is manufactured from a shape memory alloy.
3. The surgical instrument according to claim 1, characterized in that the metal wire has the first end section, and two shaft sections, wherein the working section is arranged between the two shaft sections, and a second end section.
4. The surgical instrument according to claim 1, characterized in that the working section forms a loop.
5. The surgical instrument according to claim 4, characterized in that, in the first position, the loop has a diameter of up to ten millimeters (10 mm).
6. The surgical instrument according to claim 1, characterized in that the shaft has, starting from the distal end, a distal end section, in which a first section of the second electrode is arranged on an outer wall of the shaft or forms the distal end section, and a second section of the second electrode is arranged from the distal end section up to the proximal end of the shaft on an inner wall of the shaft.
7. The surgical instrument according to claim 1, characterized in that, on the distal end of the shaft a tubular insulation element is arranged on the shaft.
8. The surgical instrument according to claim 1, characterized in that the shaft has an outer diameter in a range from one and nine tenths millimeters (1.9 mm) to two and one-half millimeters (2.5 mm).
9. The surgical instrument according to claim 1, characterized in that the metal wire has a diameter of less than one millimeter (1 mm), preferably a diameter (DD) in the range from 0.3 mm to 0.7 mm.
10. The surgical instrument according to claim 1, characterized in that the shaft has an axial length of approximately three hundred fifty millimeters (350 mm) to four hundred fifty millimeters (450 mm).
11. The surgical instrument according to claim 1, characterized in that the distal end section has an axial length of approximately thirty millimeters (30 mm) to twenty millimeters (20 mm).
12. The surgical instrument according to claim 1, characterized in that the instrument has an adjustment element to which at least the first end section is fastened, wherein the adjustment element is mounted so that the adjustment element can either move in a direction of the longitudinal axis of the shaft or can rotate about an axis.
13. The surgical instrument according to claim 12, characterized in that, on the proximal end of the shaft, a grip element is arranged, in which the adjustment element is arranged.
14. The surgical instrument according to claim 2, wherein the shape memory alloy is comprised of nitinol.
15. The surgical instrument according to claim 4, wherein the loop has a diameter of up to thirty millimeters (30 mm).
16. The surgical instrument according to claim 8, wherein the range is from two millimeters (2.0 mm) to two and two tenths millimeters (2.2 mm).
17. The surgical instrument according to claim 9, wherein the diameter is in a range from three tenths millimeters (0.3 mm) to seven tenths millimeters (0.7 mm).
18. The surgical instrument according to claim 10, wherein the axial length of the shaft is approximately three hundred ninety millimeters (390 mm) to four hundred ten millimeters (410 mm).
19. The surgical instrument according to claim 18, wherein the axial length of the shaft is approximately four hundred one millimeters (401 mm).
20. The surgical instrument according to claim 11, wherein the axial length of the distal end section is approximately fifteen millimeters (15 mm) to seventeen millimeters (17 mm).
21. The surgical instrument according to claim 20, wherein the axial length of the distal end section is approximately eighteen millimeters (18 mm).
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWING
[0025] The foregoing summary, as well as the following detailed description of the preferred invention, will be better understood when read in conjunction with the appended drawings. For the purpose of illustrating the preferred invention, there are shown in the drawings embodiments which are presently preferred. It should be understood, however, that the invention is not limited to the precise arrangements and instrumentalities shown. In the drawings:
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
[0037]
DETAILED DESCRIPTION OF THE INVENTION
[0038]
[0039] The surgical instrument 10 has a shaft 20 that has a longitudinal axis l, a proximal end 21, and a distal end 22, and a metal wire 30.
[0040] The shaft 20 is constructed as a hollow tube. Furthermore, the shaft 20 has an outer wall 20a and an inner wall 20b. The shaft 20 can be constructed, in particular, as a metal tube. The shaft 20 can have an outer diameter DS in the range from 1.9 mm to 2.5 mm, preferably in the range from 2.0 mm to 2.2 mm. Furthermore, the shaft 20 can have an axial length LS of approximately 350 mm to 450 mm, preferably of approximately 390 mm to 410 mm, especially preferred of approximately 401 mm.
[0041] A grip element 60 can be arranged at the proximal end 21 of the shaft 20, especially such that the shaft 20 is mounted against the grip element 60 so that it can rotate about its longitudinal axis l. The grip element 60 can have a housing that can be assembled, in particular, from two housing shells.
[0042] In this embodiment, the metal wire 30 has a first end section 31, a first shaft section 32, a working section 33, a second shaft section 34, and a second end section 35. The first end section 31 can be guided out from the shaft 20 in the area of the proximal end 21 of the shaft 20 and can be arranged, in particular, in the grip element 60. The first shaft section 32 is arranged in the shaft 20 and runs in particular from the proximal end 21 to the distal end 22 of the shaft 20. The working section 33 can be guided out of the shaft 20 in a first position of the metal wire 30 at the distal end 22 of the shaft 20 and can form a loop. The metal wire 30 is then guided through the distal end 22 back into the shaft 20, in particular, such that the second shaft section 34 is arranged in the shaft 20 and runs essentially parallel to the first shaft section 32. The second end section 35 of the metal wire 30 can also be guided out of the proximal end 21 of the shaft 20. Alternatively, the second end section 35 can be fixed in the shaft 20.
[0043] The metal wire 30 has, in particular, a one-piece design. The metal wire 30 can have a diameter DD of less than 1 mm, preferably a diameter DD in the range from 0.3 mm to 0.7 mm (see
[0044] At least the working section 33, but preferably the complete metal wire 30, can be made from a shape memory alloy, for example, nitinol.
[0045] The metal wire 30 is arranged so that it can move along the longitudinal axis l of the shaft 20, in particular, between a first position and a second position. In the first position of the metal wire 30, the working section 33 can be guided out of the shaft 20 at the distal end 22 of the shaft 20 and can form a loop (see, in particular,
[0046] For moving the wire 30, the surgical instrument 10 can have a first adjustment element 41, to which at least the first end section 31 of the metal wire 30 is attached, for example, it is fixed by clamping. The second end section 35 can also be arranged on the adjustment element 41. Here, the first adjustment element 41 is arranged so that it can move in the direction of the longitudinal axis l of the shaft 20 (see
[0047] The first adjustment element 41 can have an actuation element 42 that can be guided through a groove arranged in the housing of the grip element 60 on the outside of the housing of the grip element 60, wherein the actuation element 42 is arranged so that it can move in the groove. If the first adjustment element 41 is pushed in the direction of the longitudinal axis l, for example, in the direction toward the shaft 20, the first shaft section 32 in the shaft 20 is pushed in the direction toward the distal end 22 of the shaft 20 and the length of the working section 33 that protrudes out of the shaft 20 at the distal end 22 increases, so that a larger loop can be formed. If the first adjustment element 41 moves in the direction parallel 20 to the longitudinal axis l away from the shaft 20, the shaft section 32 is pulled out from the shaft 20 at the proximal end 21 and in this way, the length of the working section 33 protruding out of the shaft 20 at the distal end 22 is shortened, so that a smaller loop is formed (see, in particular,
[0048] The surgical instrument 10 is constructed as a bipolar instrument with a first electrode 71 and a second electrode 72. The metal wire 30 is part of the first electrode 71. The second electrode 72 is arranged at least in some sections on the shaft 20. For this purpose, the shaft 20 can have, starting from the distal end 22, a distal end section 23, in which a first section 72a of the second electrode 72 is arranged on the outer wall 20a of the shaft 20 or forms this end section 23 of the shaft 20, while a second section 72b of the second electrode 72 extending from the distal end section 23 to the proximal end 21 of the shaft 20 is arranged on the inner wall 20b of the shaft 20. An electrically insulating layer can be arranged on the second section 72b of the second electrode 72. The distal end section 23 can have an axial length LE of approximately 10 mm to 20 mm, preferably of approximately 15 mm to 17 mm, especially preferred of approximately 18 mm.
[0049] On the distal end 22 of the shaft 20, exactly one tubular insulation element 25 is arranged in the shaft 20. Through this, the metal wire 30 is guided out from the interior of the shaft 20 and back into the shaft 20 on the distal end 22. In the area of the distal end 22, the insulation element 25 insulates the first electrode 71, i.e., in particular, the metal wire 30, against the second electrode 72. The metal wire 30 is arranged against the tubular insulation element 25 so that it can move in the axial direction, while the tubular insulation element 25 is arranged axially fixed in the shaft 20. The metal wire 30 can be pushed, in particular, with the working section 33, completely into the shaft 20, in particular, the tubular insulation element 25. The two shaft sections 32, 34 of the metal wire 30 can be arranged insulated from one another in the shaft 20, for example, in the insulation element 25. For example, in this way, the two shaft sections 32, 34 can be fixed in position relative to each other in some sections by means of an insulation element 36 such that they are both fixed on the insulation element 36 without touching each other (see
[0050] The surgical instrument 10 can have a power connection 70, for example, in the form of a connector for connecting to a corresponding cable with a connector arranged thereon. Alternatively, there is also the possibility that the surgical instrument 10 has a cordless power supply, for example, with the help of a battery or rechargeable battery.
[0051]
[0052]
[0053] It will be appreciated by those skilled in the art that changes could be made to the embodiments described above without departing from the broad inventive concept thereof. It is understood, therefore, that this invention is not limited to the particular embodiments disclosed, but it is intended to cover modifications within the spirit and scope of the present invention as defined by the appended claims.
LIST OF REFERENCE SYMBOLS
[0054] 10 Surgical instrument [0055] 10′ Surgical instrument [0056] 10″ Surgical instrument [0057] 20 Shaft [0058] 20a Outer wall [0059] 20b Inner wall [0060] 21 Proximal end [0061] 22 Distal end [0062] 23 Distal end section [0063] 25 Insulation element [0064] 30 Metal wire [0065] 31 First end section [0066] 32 First shaft section [0067] 33 Working section [0068] 33′ Working section [0069] 33a′ Section [0070] 33b′ Section [0071] 33″ Working section [0072] 34 Second shaft section [0073] 35 Second end section [0074] 36 Insulation element [0075] 41 Adjustment element [0076] 42 Actuation element [0077] 60 Grip element [0078] 70 Power connection [0079] 71 First electrode [0080] 72 Second electrode [0081] 72a First section [0082] 72b Second section [0083] 73 Insulating layer [0084] l Longitudinal axis [0085] LS Length [0086] LE Length [0087] DS Outer diameter [0088] DD Diameter [0089] DM Diameter