Device for closing defects in the vascular system
The invention relates to a self-expanding device, particularly an implant, for closing defect openings in the human or animal body, which device, in a first state, has the shape of an elongated tube ( 2 ) with slotted segments and, in a second state, has a shortened shape with formation of at least one open or substantially closed hollow structure ( 3 ) of considerable transverse extent, where in the slotted segments of the tube ( 2 ) form individual webs ( 16 ) that are each connected to adjacent webs ( 16 ), such that a net-like overall structure is obtained in the second state.
1. A self-expanding implant for closing of defect openings in human and animal bodies that, in a first state, has the shape of an elongated tube with slit segments and, in a second state, takes on a shorter shape, that defines a proximal and a distal umbrella with a larger lateral extension and a middle piece, the slit segments of the tube forming individual strips ( 16 ) that are respectively connected to adjacent strips, the strips forming the proximal and distal umbrellas having equal length so that an overall net-like structure emerges in the second state with an approximately rhombus-shaped or hexagonal-shaped mesh structure, wherein strips of the proximal and distal umbrellas are directly connected to strips of the middle piece, the strips of which in the first state run diagonally parallel in order to reduce tension and for self-centering the implant after implantation, the implant being formed from connected strips of multiple wires that are merged into an annular or tubular shape at both ends, the strips consisting of braided multiple wires and collectively forming approximately quadrangular parallelograms, rhombi or hexagons that are each connected at the tip to the next parallelogram, rhombus or hexagon thereby facilitating retrieval of the implant.
2. Implant according to claim 1 in the form of a netting or fabric.
3. Implant according to claim 1 , characterised in that, loops are located at the strips ( 16 ) or strips ( 16 ) are connected by loops.
4. Implant according to claim 1 , characterised in that, in the second state, the implant is designed to deform in radial direction against the wall of the opening to be closed so that it can support itself against the wall and can be positioned approximately centrally within the opening.
5. Implant according to claim 1 , characterised in that, the strips exhibited by the middle piece ( 14 ) in the first state are connected, section-wise, by bridges, amongst themselves.
6. Implant according to claim 1 , characterised in that, it exhibits a coupler at least one end.
7. Implant according to claim 6 , characterised in that, the coupler is secured by an inner guidewire ( 11 ).
8. Implant according to claim 1 , characterised in that, it consists entirely or partially of shape memory materials, particularly nitinol.
9. Implant according to claim 1 , characterised in that, it is covered in sub-areas by a membrane.
10. Implant according to claim 1 , characterised in that, it is designed in such a manner that it can be repositioned/explanted.
11. Implant according to claim 10 , characterised in that, the hollow structure has loops at its peripheral strips through which a circumferential thread is guided.
12. A self-expanding implant for closing of defect openings in human and animal bodies that, in a first state, has the shape of an elongated tube with slit segments and, in a second state, takes on a shorter shape, that defines a proximal and a distal umbrella with a larger lateral extension and a middle piece, the slit segments of the tube forming individual strips that are respectively connected to adjacent strips, the strips forming the proximal and distal umbrellas having equal length so that an overall net-like structure emerges in the second state with an approximately rhombus-shaped or hexagonal-shaped mesh structure, wherein strips of the proximal and distal umbrellas are directly connected to strips of the middle piece, the strips of which in the first state run diagonally parallel in order to reduce tension and for self-centering the implant after implantation, the implant being formed from connected strips of multiple wires that are merged into an annular or tubular shape at both ends, the strips, the multiple wires collectively forming approximately quadrangular parallelograms, rhombi or hexagons that are each connected at the tip to the next parallelogram, rhombus or hexagon thereby facilitating retrieval of the implant.