Forceps guide plug

AU2025203505B2Pending Publication Date: 2026-07-23GYRUS ACMI INC
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Patent Information

Application Number
AU2025203505
Authority / Receiving Office
AU · AU
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-05-15
Publication Date
2026-07-23

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Abstract

Abstract Surgical forceps can include a drive pin an outer tube, a first jaw, a second jaw, and an inner tube. The outer tube can define a longitudinal axis. The first jaw can be pivotably connected to the outer tube. The first jaw can include a pair of flanges located at a proximal portion of the first jaw, where each flange can include a track receiving the drive pin. The inner tube can be located within the outer tube and can extend along the longitudinal axis. The inner tube can include a pair of arms extending from a distal portion of the inner tube. The drive pin can be securable to the pair of arms. The inner tube can be translatable within the outer tube to drive the drive pin along the tracks to move the second jaw between open and closed positions.
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Claims

1. A surgical tool comprising:an outer tube extending along a longitudinal axis, the outer tube including a pair of outer arms;an end effector connected to the outer arms;an inner tube located within the outer tube and extending along the longitudinal axis, the inner tube connected to the end effector, and the inner tube translatable along the outer tube to operate the end effector; anda distal plug secured to the outer tube between the outer arms and proximal of the end effector, the distal plug including a wire routing bore extending therethrough.

2. The surgical tool of claim 1, wherein the inner tube includes a pair of inner arms extending from a distal portion of the inner tube in a position laterally inward of the outer tube, the distal plug configured to allow the inner arms to translate past the plug when the inner tube translates within the outer tube to operate the end effector.

3. The surgical tool of claim 2, wherein the distal plug includes channels located on opposing laterally outer surfaces of the distal plug, the respective channels configured to allow translation of the inner arms past the plug.

4. The surgical tool of claim 2, wherein the inner arms are located laterally inward of the outer arms.

5. The surgical tool of claim 4, wherein the inner arms and outer arms are substantially centered about the longitudinal axis.

6. The surgical tool of claim 1, wherein the distal plug includes a blade channel extending axially along the distal plug, the blade channel configured to allow a blade to translate within the blade channel relative to the distal plug.2025203505   15 Jun 20267. The surgical tool of claim 6, wherein the blade channel extends through a laterally outer edge of the distal plug.

8. The surgical tool of claim 7, wherein the inner tube includes a pair of inner arms extending from a distal portion of the inner tube in a position laterally inward of the outer tube, the distal plug configured to allow the inner arms to translate past the plug when the inner tube translates within the outer tube to operate the end effector, and wherein the distal plug includes channels located on opposing laterally outer surfaces of the distal plug, the respective channels configured to allow translation of the inner arms past the plug, and wherein the laterally outer edge of the distal plug is positioned between the channels on opposing outer surfaces of the distal plug.

9. The surgical tool of claim 8, further comprises a projection extending inward across a portion of the blade channel to provide a reduced size opening of the blade channel at an outward portion of the blade channel.

10. The surgical tool of claim 9, wherein a width of the blade channel is sized to support a width of the blade, and wherein a height of the blade channel is sized to support a height of the blade.

11. The surgical tool of claim 6, further comprising a blade located within the inner tube and extending axially parallel to the longitudinal axis and wherein the blade is translatable to extend at least partially into the end effector.

12. The surgical tool of claim 6, wherein the blade channel is offset of the longitudinal axis.

13. The surgical tool of claim 12, further comprising a blade located within the inner tubeand extending axially parallel to the longitudinal axis and wherein the blade is translatable to extend at least partially into the end effector.2025203505   15 Jun 202614. The surgical tool of claim 12, wherein the wire routing bore is offset of the longitudinal axis opposite the blade channel.

15. The surgical tool of claim 14, further comprising:a pair of wires extending axially through the inner tube in a position laterally outward of a first set of flanges of a first jaw of the end effector and a second set of flanges of a second jaw of the end effector.

16. The surgical tool of claim 6, wherein the distal plug includes a second wire routing bore extending therethrough, the second wire routing bore offset of the longitudinal axis opposite the blade channel, the wire routing bore offset of the longitudinal axis and the second wire routing bore offset an opposite side of the longitudinal axis from the wire routing bore.

17. The surgical tool of claim 2, wherein the distal plug includes a projection extending outward from a body of the distal plug, the projection engaged with a wall of the outer tube in an interference fit to secure the distal plug to the outer tube.

18. The surgical tool of claim 1, wherein the distal plug includes a sleeve extending proximally from a body of the distal plug, the sleeve insertable into the inner tube.

19. A surgical tool comprising:an outer tube extending along a longitudinal axis, the outer tube including a pair of outer arms;an end effector connected to the outer tube;an inner tube located within the outer tube and extending along the longitudinal axis, the inner tube connected to the end effector, and the inner tube translatable along the outer tube to operate the end effector; anda distal plug securable to the outer tube between the pair of outer arms and proximal of the end effector, the distal plug comprising:2025203505   15 Jun 2026a body;a projection extending laterally outward from a body of the distal plug, the projection engaged with a wall of the outer tube in an interference fit to secure the distal plug to the outer tube; anda sleeve extending proximally from the body of the distal plug, the sleeve insertable into the inner tube.

20. A surgical tool comprising:an outer tube extending along a longitudinal axis, the outer tube including a pair of outer arms;an end effector connected to the outer arms;an inner tube located within the outer tube and extending along the longitudinal axis, the inner tube connected to the end effector, and the inner tube translatable along the outer tube to operate the end effector, the inner tube including a pair of inner arms extending from a distal portion of the inner tube; anda distal plug affixed to the outer tube, at least a portion of the distal plug located at a distal portion of the outer tube between the outer arms, and the distal plug located proximal of the end effector, the distal plug configured to allow the inner arms to translate past the plug when the inner tube translates within the outer tube to operate the end effector, the distal plug including a first wire routing bore extending therethrough; anda guide tube located within the inner tube and the outer tube, the guide tube located proximal of the distal plug, the guide tube including a second wire routing bore extending therethrough.

Citation Information

Patent Citations

  • Wire retention unit for a surgical instrument

    US20150088126A1