Minimally invasive coring vein harvester
The invention provides a system and method for harvesting a vessel section. The system comprises a vessel support member, a handle, and a tubular cutting device. The vessel support member is introduced into the vessel section to be harvested. The tubular cutting device may comprise an outer tubular member or an outer and an inner tubular member. The outer tubular member carries at least one cutting element. The tubular member or members are advanced over the vessel section and vessel support member to core out the vessel section and tissue adjoining the vessel section.
1. A cutting device for harvesting a vessel section, comprising:
an outer tubular member having at least one cutting element positioned adjacent to a distal end of the outer tubular member;
an inner tubular member slidably received within a lumen of the outer tubular member, wherein the outer and inner tubular members are capable of being advanced over a vessel section to core out the vessel section and tissue adjoining the vessel section;
a rollout intravascular sheath to protect the vessel's endothelial layer during insertion of a vessel support device, wherein the sheath terminates at opposing, first and second ends; and
an inner tube that rolls out the rollout sheath as the inner tube is advanced into the vessel, the inner tube defining an outer surface, an inner passageway, a leading end and a trailing end;
wherein the first end of the sheath is slidably coupled to the outer surface, an intermediate section of the sheath is inverted about and abuttingly contacts the leading end and the opposing second end of the sheath projects from the inner passageway and beyond the trailing end such that as the first end of the sheath is held stationary and the inner tube is longitudinally advanced relative to the first end, the sheath unrolls.
2. The device of claim 1 , wherein the rollout sheath is a flexible tube.
3. The device of claim 1 , wherein the vessel support device is an inflatable vessel support member.
4. The device of claim 1 , further comprising means for providing hemostatic control of branch vessels severed by the cutting element as the outer tubular member is advanced over the vessel section.
5. The device of claim 4 , wherein the hemostatic control means comprises a biological sealant.
6. The device of claim 5 , wherein the biological sealant comprises a platelet gel.
7. The device of claim 1 , wherein the outer tubular member and the inner tubular member are co-axially arranged relative to one another.
8. The device of claim 1 , wherein the rollout intravascular sheath comprises a material body terminating at the opposing, first and second ends, and further wherein the rollout intravascular sheath is configured to transition from an initial state to a deployed state by longitudinal movement of the first end relative to the second end.