Implant introducer with helical trigger wire
View Patent ↗A delivery device for deploying an expandable, endoluminal prosthesis within a body vessel is disclosed. The delivery device may include one or more stent graft retention scaffolds having a plurality of arches, each arch encompassing an aperture forming a helical path and a trigger wire passing through at least two of the apertures following the helical path, wherein at least a portion of the stent graft is retained in a compressed configuration on the delivery device by the retention scaffold and trigger wire.
1. An endovascular delivery device, comprising:
a central catheter;
a stent graft circumferentially located about a portion of the central catheter, the stent graft comprising a tubular body of a biocompatible material with a lumen therethrough;
a retention scaffold comprising a plurality of arches, each arch encompassing an aperture forming a helical path wherein the retention scaffold further comprises distal and proximal ends and the arches bow radially outward when one of the distal and proximal ends moves longitudinally toward the other one of the distal and proximal ends;
a trigger wire passing through at least two of the apertures following the helical path, wherein at least a portion of the stent graft is retained in a compressed configuration on the delivery device by the retention scaffold and the trigger wire.
2. The delivery device of claim 1 , wherein the stent graft comprises stent struts comprising openings and forming gaps between adjacent stent struts.
3. The delivery device of claim 2 , wherein the arches extend through the stent strut openings.
4. The delivery device of claim 2 , wherein the arches extend through the stent strut gaps.
5. The delivery device of claim 2 , wherein the arches extend through the stent strut openings and the stent strut gaps.
6. The delivery device of claim 1 , wherein the arches are helically located about the central catheter.
7. The delivery device of claim 1 , wherein the retention scaffold is integral with the central catheter.
8. The delivery device of claim 1 , wherein the retention scaffold is located circumferentially on the central catheter.
9. An endovascular delivery device, comprising:
a central catheter;
a shaft;
a stent graft circumferentially located about a portion of the central catheter, the stent graft comprising a tubular body of a biocompatible material with a lumen therethrough;
a retention scaffold comprising a proximal end and a piloting end and a plurality of arches, each arch encompassing an aperture forming a helical path wherein the retention scaffold further comprises distal and proximal ends and the arches bow radially outward when one of the distal and proximal ends moves longitudinally toward the other one of the distal and proximal ends, and wherein the piloting end interlocks with the shaft for rotating or longitudinally displacing a portion of the retention scaffold;
a trigger wire passing through at least two of the apertures following the helical path, wherein the stent graft is retained in a compressed configuration on the delivery device by the retention scaffold and the trigger wire.
10. The delivery device of claim 9 , wherein the stent graft comprises stent struts comprising openings and forming gaps between adjacent stent struts.
11. The delivery device of claim 10 , wherein the arches extend through the stent strut openings.
12. The delivery device of claim 10 , wherein the arches extend through the stent strut gaps.
13. The delivery device of claim 10 , wherein the arches extend through the stent strut openings and the stent strut gaps.
14. The delivery device of claim 9 , wherein the retention scaffold is integral with the central catheter.
15. A method of deploying a stent graft in a patient, comprising:
providing an endovascular delivery device, comprising:
a central catheter;
a stent graft circumferentially located about the central catheter comprising a tubular body of a biocompatible material with a lumen therethrough;
a retention scaffold comprising a plurality of arches, each arch encompassing an aperture forming a helical path herein the retention scaffold further comprises distal and proximal ends and the arches bow radially outward when one of the distal and proximal ends moves longitudinally toward the other one of the distal and proximal ends;
a trigger wire passing through at least two of the apertures in the helical path, wherein the stent graft is retained in a compressed configuration on the delivery device by the retention scaffold and the trigger wire; and
withdrawing the trigger wire through the apertures.