Guidewires and thin film catheter-sheaths and method of making same
View Patent ↗Guidewires and thin-film catheter-sheaths, fabricated using vacuum deposition techniques, which are monolayer or plural-layer members having ultra-thin wall thicknesses to provide very-low profile delivery assemblies for introduction and delivery of endoluminal devices.
1. An assembly for delivering a medical device via a patient's vascular system, the assembly comprising: (a) a medical device; (b) a guidewire having a guidewire body, the guidewire body comprising a first thin-film of a first biocompatible metal formed by a vacuum deposition technique; and (c) a catheter-sheath having generally tubular catheter-sheath body, the catheter-sheath body comprising a second thin-film of a second biocompatible metal formed by a vacuum deposition technique, the catheter-sheath body defining a catheter-sheath lumen; wherein the guidewire is positioned coaxially within the lumen of the catheter-sheath, and wherein the medical device is concentrically positioned within a distal portion of the catheter-sheath lumen and intermediate the catheter-sheath body and the guidewire body, thereby forming the assembly, wherein at least one of the first thin-film and the second thin-film comprises a plurality of layers.
2. The assembly of claim 1 , wherein the guidewire body is generally tubular.
3. The assembly of claim 1 , wherein at least one of the guidewire body and the catheter-sheath body further comprises a plurality of microperforations that impart at least one of longitudinal compliance and radial compliance.
4. The assembly of claim 1 , wherein the first and second biocompatible metals are similar.
5. The assembly of claim 1 , wherein the medical device is selected from the group consisting of a stent, a graft, a stent-graft, a valve, a filter, an occluder, and a patch.
6. The assembly of claim 1 , wherein a radiopaque metal is used to form at least on the layers.
7. The assembly of claim 1 , wherein the first-thin film and the second thin-film each comprise a plurality of layers.
8. An assembly for delivering a medical device via a patient's vascular system, the assembly comprising: (a) a medical device; (b) a guidewire having a guidewire body, the guidewire body comprising a first thin-film of a first biocompatible metal formed by a vacuum deposition technique; and (c) a catheter-sheath having generally tubular catheter-sheath body, the catheter-sheath body comprising a second thin-film of a second biocompatible metal formed by a vacuum deposition technique, the catheter-sheath body defining a catheter-sheath lumen; wherein the guidewire is positioned coaxially within the lumen of the catheter-sheath, and wherein the medical device is concentrically positioned within a distal portion of the catheter-sheath lumen and intermediate the catheter-sheath body and the guidewire body, thereby forming the assembly, wherein the first thin-film and the second thin-film each comprise a plurality of layers.
9. The assembly of claim 8 , wherein the guidewire body is generally tubular.
10. The assembly of claim 8 , wherein at least one of the guidewire body and the catheter-sheath body further comprises a plurality of microperforations that impart at least one of longitudinal compliance and radial compliance.
11. The assembly of claim 8 , wherein the first and second biocompatible metals are similar.
12. The assembly of claim 8 , wherein the medical device is selected from the group consisting of a stein, a graft, a stent-graft, a valve, a filter, an occiuder, and a patch.
13. The assembly of claim 8 , wherein a radiopaque metal is used to form at least on the layers.