Claims
- 1. A slitting tool for severing a tubular body, comprising:
a body portion extending along a first axis and including means for gripping by a hand of a user; a nose portion joined to the body portion, the nose portion extending along a second axis and including means for severing the tubular body; wherein the second axis extends at an angle between approximately 5 degrees and approximately 90 degrees with respect to the first axis; and the means for gripping directs the means for severing toward the tubular body such that a wrist for the hand of the user is in a neutral position.
- 2. A slitting tool, comprising:
an inner gripping zone; an outer gripping zone; a body portion extending along a first axis and including an inner surface forming a first portion of the inner gripping zone and an outer surface forming the outer gripping zone; a nose portion joined to the body portion, the nose portion extending along a second axis, and including an inner surface forming a second portion of the inner gripping zone, a bottom surface, a leading edge terminating the bottom surface, and a cutting edge recessed from the leading edge; wherein the second axis extends at an angle between approximately 5 degrees and approximately 90 degrees with respect to the first axis.
- 3. The slitting tool of claim 2, wherein the cutting edge is formed by a wedge and extends from the leading edge toward the inner surface of the nose portion.
- 4. The slitting tool of claim 2, wherein the outer gripping zone includes a first channel adapted to engage a lead body.
- 5. The slitting tool of claim 2, wherein the outer gripping zone includes a recessed area.
- 6. The slitting tool of claim 2, wherein the bottom surface of the nose portion includes a channel starting in proximity to the leading edge and extending toward the body portion.
- 7. The slitting tool of claim 2, wherein the bottom surface of the nose portion includes a channel starting in proximity to the leading edge and extends along a length of the outer surface of the body portion.
- 8. The slitting tool of claim 2, wherein the nose portion further includes a forward edge terminating the inner surface of the nose portion and extending toward the bottom surface to limit a height of the cutting edge, the cutting edge recessed from the forward edge.
- 9. The slitting tool of claim 2, further comprising a tail portion, the tail portion joined to the body portion and substantially aligned with the body portion.
- 10. The slitting tool of claim 2, wherein the inner gripping zone includes a textured surface.
- 11. The slitting tool of claim 2, wherein the inner gripping zone includes a polymer overlay
- 12. The slitting tool of claim 2, wherein the outer gripping zone includes a textured surface.
- 13. The slitting tool of claim 2, wherein the outer gripping zone includes a polymer overlay.
- 14. The slitting tool of claim 3, wherein, to form the cutting edge, the wedge is sharpened by a process selected from the group comprising grinding, chemical milling, and wire EDM.
- 15. The slitting tool of claim 3, wherein the wedge has an angle between approximately 10 degrees and approximately 50 degrees.
- 16. The slitting tool of claim 3, wherein the cutting edge extends at an angle from the first axis, the angle between approximately 5 degrees and 70 degrees.
- 17. The slitting tool of claim 3, wherein the body portion and the nose portion are formed as a unitary and continuous part.
- 18. The slitting tool of claim 17, wherein the part is comprised of a material including a ceramic.
- 19. The slitting tool of claim 17 wherein the part is comprised of a material selected from the group consisting of stainless steel, titanium, nickel alloys, and steel alloys.
- 20. The slitting tool of claim 19, wherein the part is formed by a machining process.
- 21. The slitting tool of claim 19, wherein the part is formed by an injection molding process.
- 22. The slitting tool of claim 19, wherein all or a portion of the part is toughened by a surface or sub-surface modification technique selected from the group comprising ion implantation, nitriding, and carborizing.
- 23. The slitting tool of claim 19, wherein the cutting edge is sharpened by a secondary process selected from the group comprising grinding, chemical milling, and wire EDM.
- 24. The slitting tool of claim 2, further comprising,
a captured component including an extension, the leading edge, the cutting edge, and a portion of the bottom surface; and a shell including a cavity and the outer gripping zone; wherein the cavity of the plastic shell surrounds the extension of the captured component.
- 25. The slitting tool of claim 24, wherein the shell further includes the inner gripping zone.
- 26. The slitting tool of claim 24, wherein the captured component further includes a channel formed in the portion of the bottom surface.
- 27. The slitting tool of claim 26 wherein the shell further includes a second portion of the bottom surface and a second channel substantially aligned with the channel of the captured component.
- 28. The slitting tool of claim 24 wherein the shell further includes a channel formed in the outer gripping zone.
- 29. The slitting tool of claim 24, wherein the shell further includes a recess formed in the outer gripping zone.
- 30. The slitting tool of claim 24, wherein the shell is comprised of a material including a hard plastic.
- 31. The slitting tool of claim 24, wherein the shell includes two pieces adapted to be joined together by means of a process selected from the group comprising press fit, snap fit, welding, and bonding.
- 32. A slitting tool, comprising:
an inner gripping zone; an outer gripping zone including a recessed area; a body portion extending along a first axis and including an inner surface forming a first portion of the inner gripping zone and an outer surface forming the outer gripping zone; a nose portion joined to the body portion, extending along a second axis, and including a bottom surface, a leading edge, a cutting edge, a forward edge, and an inner surface, the inner surface forming a second portion of the inner gripping zone; wherein,
the second axis extends at an angle between approximately 5 degrees and approximately 90 degrees with respect to the first axis; the bottom surface includes a channel starting in proximity to the leading edge and extending toward the body portion; the leading edge terminates the bottom surface; and the cutting edge, recessed from the leading edge and the forward edge, is formed by a wedge extending from the leading edge toward the inner surface of the nose portion.
- 33. The slitting tool of claim 32, wherein the body portion and the nose portion are formed as a unitary and continuous part, the part comprised of a material including a metal and formed by an injection molding process.
- 34. A delivery system, comprising
a sheath including a wall formed about a lumen, the wall having a maximum thickness; an implantable medical device including an elongated body adapted to be inserted within the lumen of the sheath for delivery to an implant site, the elongated body including a first portion within the lumen of the sheath, a second portion extending proximally from the first portion to outside the lumen, and a third portion extending proximally from the second portion; and a slitting tool including an inner gripping zone, an outer gripping zone, a body portion extending along a first axis and including an inner surface forming a first portion of the inner gripping zone and an outer surface forming the outer gripping zone; and a nose portion joined to the body portion, extending along a second axis, and including a bottom surface, a leading edge terminating the bottom surface, an inner surface forming a second portion of the inner gripping zone, a forward edge terminating the inner surface of the nose portion, and a cutting edge recessed from the leading edge and the forward edge, the cutting edge formed by a wedge extending from the leading edge toward the inner surface of the nose portion; wherein the second axis of the slitting tool extends at an angle between approximately 5 degrees and approximately 90 degrees with respect to the first axis; the leading edge of the slitting tool is adapted to fit adjacent to the first portion of the elongated body within the lumen of the sheath; the bottom surface of the slitting tool is adapted to be substantially aligned and adjacent to the second portion of the elongated body; the forward edge of the slitting tool is adapted to constrain a height of the cutting edge to be approximately equal to the maximum thickness of the wall of the sheath; and the outer gripping zone of the slitting tool is adapted to be held adjacent to the third portion of the elongated body.
- 35. The delivery system of claim 34, wherein the outer gripping zone of the slitting tool includes a first channel adapted to engage a lead body.
- 36. The delivery system of claim 34, wherein the outer gripping zone further includes a recessed area.
- 37. The delivery system of claim 34, wherein the bottom surface of the nose portion of the slitting tool includes a channel starting in proximity to the leading edge and extending toward the body portion.
- 38. The delivery system of claim 34, wherein the slitting tool further includes a tail portion, the tail portion joined to the body portion and substantially aligned with the body portion.
- 39. The delivery system of claim 34, wherein, to form the cutting edge of the slitting tool, the wedge is sharpened by a process selected from the group comprising grinding, chemical milling, and wire EDM.
- 40. The delivery system of claim 34, wherein the wedge of the slitting tool has an angle between approximately 10 degrees and approximately 50 degrees.
- 41. The delivery system of claim 34, wherein the cutting edge of the slitting tool extends at an angle from the first axis, the angle between approximately 5 degrees and 70 degrees.
- 42. The delivery system of claim 34, wherein the body portion and the nose portion of the slitting tool are formed as a unitary and continuous part.
- 43. The delivery system of claim 42, wherein the slitting tool part is comprised of a material selected from the group consisting of stainless steel, titanium, nickel alloys, and steel alloys.
- 44. The delivery system of claim 43, wherein the slitting tool part is formed by a machining process.
- 45. The delivery system of claim 43, wherein the slitting tool part is formed by an injection molding process.
- 46. The delivery system of claim 43, wherein the cutting edge of the slitting tool part is sharpened by a secondary process selected from the group consisting of grinding, chemical milling, and wire EDM
- 47. The slitting tool of claim 43, wherein all or a portion of the part is toughened by a surface or sub-surface modification technique selected from the group comprising ion implantation, nitriding, and carborizing.
PRIORITY CLAIM
[0001] This application is a continuation-in-part of U.S. patent application Ser. No. 10/078,026 (P-10097), filed Feb. 15, 2002, entitled “Improved Slitting Tool” which is incorporated herein by reference in its entirety.
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
10078026 |
Feb 2002 |
US |
Child |
10367420 |
Feb 2003 |
US |