Minimally invasive surgical devices and methods
Surgical tools for use during scarless or near scarless surgical procedures. At least some of the surgical tools can include a handle portion and a working end removably connected to the handle portion.
1. A scarless surgical tool comprising:
a handle portion comprising:
a central shaft having a diameter of less than or equal to about 2.5 mm; and
a plurality of stabilizing shafts surrounding the central shaft, each of the plurality of stabilizing shafts being sufficiently rigid to puncture the skin without leaving a scar, each of the plurality of stabilizing shafts having a diameter of less than or equal to about 1.0 mm, at least a distal portion of the plurality of stabilizing shafts is not surrounded by an outer shaft, such that the plurality of stabilizing shafts can puncture the skin; and
a working end configured to be removably secured to the handle portion, the working end comprising:
a securing member at a proximal portion of the working end, the securing member configured to be removably secured to and surround the plurality of stabilizing shafts;
a housing portion configured to receive a distal portion of the central shaft; and
a tool portion at a distal portion of the working end, the central shaft configured to control movement of the tool portion when the working end is secured to the handle portion.
2. The scarless surgical tool of claim 1 , wherein the securing member surrounds the central shaft when the securing member is secured to the plurality of stabilizing shafts.
3. The scarless surgical tool of claim 1 , wherein each of the stabilizing shafts has a sharpened distal tip capable of forming an opening.
4. The scarless surgical tool of claim 1 , wherein a length of the central shaft is longer than a length of each of the plurality of stabilizing shafts.
5. The scarless surgical tool of claim 1 , wherein the securing member comprises a locking mechanism configured to fix the position of the plurality of stabilizing shafts relative to each other.
6. The scarless surgical tool of claim 5 , wherein the locking mechanism comprises a retaining ring configured to form a friction fit with the securing member.
7. The scarless surgical tool of claim 1 , wherein the working end further comprises a slide member positioned in the housing portion, the slide member configured to control movement of the tool portion.
8. The scarless surgical tool of claim 7 , wherein the slide member is configured to receive the distal portion of the central shaft, such that the slide member is positioned radially between the central shaft and the housing.
9. The scarless surgical tool of claim 1 , wherein the tool portion is graspers, and wherein axial movement of the central shaft can move the graspers between an open configuration and a closed configuration.
10. A method of assembling a scarless surgical tool comprising:
securing a proximal portion of a working end to a handle portion, the handle portion comprising a plurality of stabilizing shafts surrounding a central shaft, each of the plurality of stabilizing shafts being sufficiently rigid to puncture the skin without leaving a scar, at least a distal portion of the plurality of stabilizing shafts is not surrounded by an outer shaft, such that the plurality of stabilizing shafts can puncture the skin, the working end comprising:
a securing member at the proximal portion of the working end;
a housing portion extending from the securing member; and
a tool portion at a distal portion of the working end; and
positioning a distal portion of the central shaft in the housing portion of the working end, the central shaft configured to control movement of the tool portion when the working end is removably secured to the handle portion,
wherein securing the proximal portion of the working end to the handle portion comprises removably securing the securing member to the plurality of stabilizing shafts and surrounding the proximal portion of the working end around the plurality of stabilizing shafts.
11. The method of claim 10 , wherein the securing member surrounds the central shaft when the securing member is secured to the plurality of stabilizing shafts.
12. The method of claim 10 , wherein each of the plurality of stabilizing shafts has a diameter of less than or equal to about 1.0 mm.
13. The method of claim 10 , wherein each of the stabilizing shafts has a sharpened distal tip configured to form an opening.
14. The method of claim 10 , wherein a length of the central shaft is longer than a length of each of the plurality of stabilizing shafts.
15. The method of claim 10 , wherein securing the securing member to the plurality of stabilizing shafts comprises a locking the position of the plurality of stabilizing shafts relative to each other.
16. The method of claim 15 , wherein locking the position of the plurality of stabilizing shafts relative to each other comprises forming a friction fit between a retaining ring and the securing member, the plurality of stabilizing shafts positioned radially between the retaining ring an outer periphery of the securing member.
17. The method of claim 10 , wherein positioning the distal portion of the central shaft in the housing portion comprises positioning the central shaft in a slide member, such that the slide member is positioned radially between the central shaft and the housing, the slide member configured to control movement of the tool portion.
18. The method of claim 10 , wherein the tool portion is graspers, and wherein axial movement of the central shaft moves the graspers between an open configuration and a closed configuration.