IP Library Patent Application 18849433
Patent Application
App. No. 18/849,433

METHODS AND DEVICES OF ACCESS SHEATH SYSTEMS

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Quick Facts
Patent No.
US None
App. No.
18/849,433
Abstract

An access sheath system is described that can include an access sheath and a dilator. For example, the access sheath can be sized and shaped to be introduced into an artery and include a protective distal end having an atraumatic surface. The dilator can include an atraumatic tip and a guide sheath. For example, the atraumatic tip can have a proximal portion that is formed to extend along a sheath passageway of the guide sheath and a distal portion having a tapered distal surface. The atraumatic tip can be formed to mate with and cover at least a part of a distal end of the guide sheath to protect the artery from the distal end of the guide sheath.

Claims (41)

1 . An access sheath system, comprising:

an access sheath comprising an elongated sheath body that is sized and shaped to be introduced into an artery, the access sheath comprising a protective distal end having an atraumatic surface, the elongated sheath body comprising an inner lumen extending between a proximal sheath end and a distal sheath end; and

a dilator comprising an atraumatic tip and a guide sheath, the atraumatic tip having a proximal portion and a distal portion, the proximal portion of the atraumatic tip being formed to extend along a sheath passageway of the guide sheath, the distal portion of the atraumatic tip comprising a tapered distal surface, the atraumatic tip being formed to mate with and cover at least a part of a distal end of the guide sheath to protect the artery from the distal end of the guide sheath.

2 . The access sheath system of claim 1 , further comprising:

a guidewire sized to extend along at least a dilator passageway of the atraumatic tip.

3 . The access sheath system of claim 1 , wherein the atraumatic tip of the dilator includes an inflatable balloon tip element.

4 . The access sheath system of claim 3 , wherein the inflatable balloon tip element includes a stepped proximal surface that is formed to mate against and cover the distal end of the guide sheath when the inflatable balloon is in an inflated state.

5 . The access sheath system of claim 3 , wherein the inflatable balloon tip element includes a proximal section having a first outer diameter and a distal section having a second outer diameter, the first outer diameter being smaller than the second outer diameter, and the proximal section being formed to couple to the sheath passageway.

6 . The access sheath system of claim 1 , wherein the atraumatic tip is moveable relative to the guide sheath and along a longitudinal axis of the guide sheath for forming a first position and a second position of the dilator.

7 . The access sheath system of claim 6 , wherein the first position comprises a proximal surface of the atraumatic tip being mated against and at least partially covering the distal end of the guide sheath.

8 . The access sheath system of claim 7 , wherein the proximal surface is part of a stepped proximal surface of the atraumatic tip, the stepped proximal surface being proximal to the tapered surface.

9 . The access sheath system of claim 8 , wherein the stepped proximal surface is positioned a distance away from the distal end of the guide sheath when the dilator is in the second position.

10 . The access sheath system of claim 6 , wherein the second position comprises a flexible extension of the atraumatic tip being radially expanded and positioned along an outer surface of the distal end of the guide sheath.

11 . The access sheath system of claim 1 , wherein the sheath body of the access sheath includes at least one arm that, when pulled in a direction away from a longitudinal axis of the sheath body, separates the sheath body into more than one part.

12 . A dilator for use with an access sheath system, the dilator comprising:

a guide sheath having a sheath passageway; and

an atraumatic tip having a proximal portion and a distal portion, the proximal portion being formed to extend along the sheath passageway, the distal portion of the atraumatic tip comprising a tapered distal surface, the atraumatic tip being formed to mate with a distal end of the guide sheath to protect an artery from the distal end of the guide sheath.

13 . The dilator of claim 12 , wherein the atraumatic tip includes a dilator passageway that allows a guidewire to extend therealong and through the atraumatic tip.

14 . The dilator of claim 12 , wherein the atraumatic tip of the dilator includes an inflatable balloon tip element.

15 . The dilator of claim 14 , wherein the inflatable balloon tip element includes a stepped proximal surface that is formed to mate against the distal end of the guide sheath when the inflatable balloon is an inflated state.

16 . The dilator of claim 14 , wherein the inflatable balloon tip element includes a proximal section having a first outer diameter and a distal section having a second outer diameter, the first outer diameter being smaller than the second outer diameter, and the proximal section being formed to couple to the sheath passageway.

17 . The dilator of claim 12 , wherein the atraumatic tip is moveable relative to the guide sheath and along a longitudinal axis of the guide sheath for forming a first position and a second position.

18 . The dilator of claim 17 , wherein the first position comprises a proximal surface of the atraumatic tip being mated against and at least partially covering the distal end of the guide sheath.

19 . The dilator of claim 18 , wherein the proximal surface is part of a stepped proximal surface of the atraumatic tip, the stepped proximal surface being proximal to the tapered surface.

20 . The dilator of claim 19 , wherein the stepped proximal surface is positioned a distance away from the distal end of the guide sheath when the dilator is in the second position.

21 . The dilator of claim 17 , wherein the second position comprises a flexible extension of the atraumatic tip being radially expanded and positioned along an outer surface of the distal end of the guide sheath.

22 . A method, comprising:

advancing an access sheath into an artery, the access sheath comprising a protective distal end having an atraumatic surface, the elongated sheath body comprising an inner lumen extending between a proximal sheath end and a distal sheath end; and

advancing a dilator along the inner lumen of the access sheath, the dilator comprising an atraumatic tip and a guide sheath, the atraumatic tip having a proximal portion and a distal portion, the proximal portion being formed to extend along a sheath passageway of the guide sheath, the distal portion of the atraumatic tip comprising a tapered distal surface, the atraumatic tip being formed to mate with and cover at least a part of a distal end of the guide sheath to protect the artery from the distal end of the guide sheath.

23 . The method of claim 22 , further comprising:

advancing a guidewire along a dilator passageway of the atraumatic tip.

24 . The method of claim of claim 22 , wherein the atraumatic tip of the dilator includes an inflatable balloon tip element.

25 . The method of claim 24 , wherein the inflatable balloon tip element includes a stepped proximal surface that is formed to mate against and cover the distal end of the guide sheath when the inflatable balloon is an inflated state.

26 . The method of claim 25 , wherein the inflatable balloon tip element includes a proximal section having a first outer diameter and a distal section having a second outer diameter, the first outer diameter being smaller than the second outer diameter, and the proximal section coupling to the sheath passageway of the guide sheath.

27 . The method of claim 22 , further comprising:

moving the atraumatic tip relative to the guide sheath and along a longitudinal axis of the guide sheath for forming a first position or a second position.

28 . The method of claim 27 , wherein the first position comprises a proximal surface of the atraumatic tip being mated against and at least partially covering the distal end of the guide sheath.

29 . The method of claim 28 , wherein the proximal surface is part of a stepped proximal surface of the atraumatic tip, the stepped proximal surface being proximal to the tapered surface.

30 . The method of claim 29 , wherein the stepped proximal surface is positioned a distance away from the distal end of the guide sheath when the dilator is in the second position.

31 . The method of claim 27 , wherein the second position comprises a flexible extension of the atraumatic tip being radially expanded and positioned along an outer surface of the distal end of the guide sheath.

32 . The method of claim 22 , wherein the sheath body of the access sheath includes at least one arm that, when pulled in a direction away from a longitudinal axis of the sheath body, separates the sheath body into more than one part.