Stents with proximal and distal end elevations
View Patent ↗A prosthetic stent with a tubular wall having local inwardly or outwardly formed elevations. Stents having such elevations have a higher mechanical stability if bent according to the curvature of the body vessels to be supported or repaired. Also a method for manufacturing a stent with such elevations is described.
1. A body insertable prosthesis, including:
a flexible self-expanding tubular mesh wall comprising a plurality of elongate wire segments cooperating to form multiple crossing points at which different ones of the elongate wire segments cross each other;
wherein at a number of selected crossing points, said number being less than the total number of crossing points, pairs of the elongate wire segments crossing one another are shaped to form respective first and second elevations extended in the same direction radially away from the tubular mesh wall; and
wherein the elevations are arranged in a helical elevation pattern on the tubular mesh wall.
2. The prosthesis of claim 1 wherein:
said elevations extend radially outwardly from the braided tubular wall.
3. The prosthesis of claim 1 wherein:
the plurality of elongate wire segments include a first wire segment wound helically at a first pitch and a second wire segment wound helically at a second pitch different from the first pitch, and the at least one elevation pattern has a third pitch different from the first pitch and different from the second pitch.
4. The prosthesis of claim 1 wherein:
the tubular mesh wall comprises at least one wire wound to form said crossing points, and said elongate wire segments comprise different length-portions of the at least one wire.
5. A stent insertable into the body passageway, including:
a flexible self-expanding braided tubular wall comprising at least one first wire helically wound at a substantially constant first pitch and at least one second wire helically wound at a substantially constant second pitch different from the first pitch whereby the first and second wires cooperate to form multiple crossing points of the at least one first wire and the at least one second wire;
wherein at selected crossing points, each of the first wire and the second wire is shaped to form an elevation extended away from the braided tubular wall in a selected direction radially of the braided tubular wall; and
wherein said elevations are arranged in at least one elevation pattern on the braided tubular wall, and the at least one elevation pattern has a third pitch different from the first pitch and different from the second pitch;
wherein the elevations are arranged in a helical elevation pattern on the braided tubular wall.