Stent delivery device and method for manufacturing same
First Claim
Patent Images
1. A stent delivery device comprising:
- an elongated sheath having a distal area with a distal end;
a self-expandable stent having proximal and distal end portions with proximal and distal ends and a braided tubular wall, said stent being placed in contracted condition within the distal area of the sheath;
elongated core means having proximal and distal areas, said core means arranged in said sheath for relative longitudinal motion between the sheath and core means; and
drive means between the distal area of the core means and the self-expandable stent, whereby relative longitudinal motion between said sheath and core means results in longitudinal relative motion between said stent and sheath so as to cause radial self-expansion of at least a longitudinal portion of the stent out of the distal area of the sheath or radial contraction of at least a longitudinal portion of the stent into the distal area of the sheath, and scratch protection tubular means of biocompatible material having an inner wall surrounding at least an end portion of the stent when the stent is in contracted condition in the distal area of the sheath.
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Abstract
The stent delivery device has an elongated sheath with a self-expandable stent placed in contracted condition within the distal area of the sheath. An elongated core is arranged in the sheath for relative longitudinal motion between core and sheath, and drive means are arranged between the core and the stent. Scratch protection tubular means comprise a reinforcement ring secured in the sheath and surrounding the distal end portion of the stent when the stent is in contracted condition in the sheath and a tube of thermoformable material heat shrunk over the proximal end portion of the stent and over the core.
588 Citations
19 Claims
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1. A stent delivery device comprising:
- an elongated sheath having a distal area with a distal end;
a self-expandable stent having proximal and distal end portions with proximal and distal ends and a braided tubular wall, said stent being placed in contracted condition within the distal area of the sheath;
elongated core means having proximal and distal areas, said core means arranged in said sheath for relative longitudinal motion between the sheath and core means; and
drive means between the distal area of the core means and the self-expandable stent, whereby relative longitudinal motion between said sheath and core means results in longitudinal relative motion between said stent and sheath so as to cause radial self-expansion of at least a longitudinal portion of the stent out of the distal area of the sheath or radial contraction of at least a longitudinal portion of the stent into the distal area of the sheath, and scratch protection tubular means of biocompatible material having an inner wall surrounding at least an end portion of the stent when the stent is in contracted condition in the distal area of the sheath. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15, 16)
- an elongated sheath having a distal area with a distal end;
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17. A stent delivery device comprising:
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(a) an inner member; (b) a radially self-expanding stent disposed about the inner member, the stent having a proximal portion; (c) a sheath disposed about at least part of the radially self-expanding stent; and (d) a tubular scratch protection element disposed about at least part of the proximal stent portion and between at least part of the proximal stent portion and at least part of the sheath. - View Dependent Claims (18)
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19. A method for manufacturing a stent delivery device comprising:
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(a) engaging on a mandrel a reinforcement ring having a proximal end, a distal end, and a first outer diameter; (b) engaging on the mandrel and proximally of the proximal end of the reinforcement ring a first tube of thermoformable material having a second outer diameter greater than said first outer diameter; (c) engaging on the reinforcement ring a second tube of thermoformable material having a third outer diameter substantially equal to said second outer diameter of the first tube of thermoformable material; (d) engaging on the first and second tubes of thermoformable material a third tube of thermoformable material; (e) heat shrinking said third tube of thermoformable material over said first and second tubes of thermoformable material and reinforcement ring; (f) withdrawing the mandrel out of the reinforcement ring and first tube of thermoformable material; and (g) taking off unwanted surplus portions of the heat shrunk material at the distal end of the reinforcement ring.
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Specification