IP Library Granted Patent US 7,892,203
Granted Patent B2
US 7,892,203 · App. 11/199,566 · Granted Feb 22, 2011

Expandable transluminal sheath

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Quick Facts
Patent No.
US 7,892,203
App. No.
11/199,566
Granted
Feb 22, 2011
Kind
B2
Abstract

Disclosed is an expandable transluminal sheath, for introduction into the body while in a first, low cross-sectional area configuration, and subsequent expansion of at least a part of the distal end of the sheath to a second, enlarged cross-sectional configuration. The distal end of the sheath is maintained in the first, low cross-sectional configuration and expanded using a radial dilatation device. In an exemplary application, the sheath is utilized to provide access for a diagnostic or therapeutic procedure such as ureteroscopy or stone removal.

Claims (30)

1. An expandable transluminal access sheath adapted for providing minimally invasive access to body lumens or cavities, comprising:

an axially elongate sheath tube with a proximal end and a distal end and a central through lumen;

a distal region of the sheath tube which is expandable in circumference in response to pressure applied therein, the distal region being folded along one or more longitudinal creases to a diameter smaller than that of the proximal end of the elongate sheath tube and having a composite structure comprising a malleable reinforcement embedded within an outer layer and an inner layer, the malleable reinforcement being folded and holding the distal region in its folded, smaller diameter configuration by overcoming forces imparted by the sheath tube;

a hub affixed to the proximal end of the sheath tube, the hub adapted to form a tapered internal lumen to facilitate the passage of instrumentation;

a central obturator, which serves to occlude the central lumen of the sheath during insertion; and

a guidewire lumen within the obturator, capable of passing standard medical guidewires;

wherein the obturator is a balloon dilator and radial expansion of the balloon dilator causes the distal region, including the malleable reinforcement, to expand diametrically to an expanded configuration, with the malleable reinforcement maintaining the distal region in its expanded configuration.

2. The transluminal sheath of claim 1 wherein the outer layer and the inner layer comprise a polymer.

3. The transluminal sheath of claim 2 wherein the sheath bends predominantly by plastic deformation rather than elastic deformation.

4. The transluminal sheath of claim 2 wherein the sheath bends predominantly by plastic deformation, said deformation being enhanced by subjecting the sheath to temperatures substantially near those of body temperature.

5. The transluminal sheath of claim 2 wherein the malleable reinforcement is a braided structure fabricated from polymeric materials.

6. The transluminal sheath of claim 2 wherein the malleable reinforcement is substantially deformable in cross-section.

7. The transluminal sheath of claim 2 wherein the sheath tube is substantially deformable in cross-section in response to irregularly shaped objects being advanced or withdrawn therethrough.

8. The transluminal sheath of claim 2 wherein the sheath comprises a radiopaque marker.

9. The sheath of claim 2 wherein the inner surface of the inner layer of the sheath comprises longitudinally running flutes for reducing friction between the inner layer and instrumentation or material being advanced or withdrawn therethrough.

10. The sheath of claim 2 wherein the inner surface of the inner layer is dimpled to enhance liquid surface coating of said liner.

11. The sheath of claim 2 wherein the outer surface of the outer layer comprises longitudinally oriented ridges and adjacent valleys, the purpose of which is to enhance liquid transmission along the outer surface of said sheath.

12. The sheath of claim 2 wherein the malleable reinforcement comprises a coil, wherein the coil is welded or fused to itself at the distal end of the sheath so as to form a ring structure.

13. The sheath of claim 2 wherein the malleable reinforcement comprises a coil, wherein the coil is wound onto the inner layer of the sheath with substantially neutral spring tension.

14. The transluminal sheath of claim 1 wherein the balloon dilator comprises a central guidewire lumen.

15. The obturator of claim 1 further comprising a tapered tip further comprising multiple tapers and diameters.

16. The obturator of claim 1 comprising a tapered tip which is substantially cylindrical at the distal end, tapering up to a larger cylinder at its proximal end.

17. The obturator of claim 1 wherein a distal end of a tapered tip is capable of tracking over a 0.035 to 0.038-inch diameter guidewire around corners as tight as 1.5-cm radius.

18. The obturator of claim 1 wherein the distal tip of the dilator is no larger than 4.5 French in diameter.

19. The obturator of claim 1 wherein the outer surface of said obturator comprises longitudinally oriented ridges and adjacent valleys, the purpose of the ridges and valleys being to minimize friction between the obturator and the inner surface of the sheath.

20. The sheath of claim 1 further comprising a cap hub on the obturator that securely and reversibly fastens to the hub on the sheath and locks in two substantially orthogonal axes.

21. The sheath of claim 1 wherein the inner surface of the sheath comprises longitudinally running ridges and adjacent valleys.

22. The sheath of claim 1 further comprising an atraumatic tip.

23. The sheath of claim 1 further comprising a sheath tube tip fabricated from materials softer than those used on the sheath tube.

24. The sheath of claim 1 wherein a proximal region of the sheath tube is non-expandable.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 20, 2024
From: ONSET MEDICAL CORPORATION
To: TERUMO MEDICAL CORPORATION
Reel/Frame 066849/0857 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 7, 2005
From: LENKER, JAY; NANCE, EDWARD J.; BISHOP, JOSEPH; KICK, GEORGE F.
To: ONSET MEDICAL CORPORATION
Reel/Frame 017185/0596 →