Method for producing a body implant, assembly consisting of a guide wire and a body implant, and a medical instrument
The invention relates to a method for producing a body implant comprising the steps of: providing a wire; producing predetermined cuts of the cross section of the wire by means of an ultrashort pulse laser in order to produce a predetermined shape of the body implant. This method can be used to produce, for example, a body implant, an assembly consisting of a guide wire and a body implant, or a medical instrument having a guide wire.
1. An assembly consisting of:
a guide wire; and
a body implant,
wherein the guide wire and the body implant are integrally formed and have a predetermined breaking point,
wherein wire segments are separated from the guide wire, via radial cuts in the guide wire, and are expanded to shape the body implant,
wherein the wire segments are braided from tatting the wire segments,
where the guide wire comprises a first portion, a second portion, and an integrally formed joint for flexibility,
where the integrally formed joint is between the first portion and the second portion, and
wherein the integrally formed joint is narrower than the first portion and the second portion.
2. The assembly according to claim 1 , wherein the body implant has at least one of a stent, a basket, or a filter.
3. The assembly according to claim 1 , wherein the radial cuts are produced by means of an ultrashort pulse laser.
4. The assembly according to claim 1 , wherein a removal of a portion of a cross section of the guide wire produces the integrally formed joint.
5. The assembly according to claim 1 , wherein the guide wire is made of a material having shape-memory properties.
6. The assembly according to claim 1 , wherein the wire segments remain connected to the guide wire at least while the wire segments are expanded to shape the body implant.
7. The assembly according to claim 1 , wherein the radial cuts extend to a center of the guide wire.
8. The assembly according to claim 1 , wherein a height of a cut, of the radial cuts, is smaller than a radius of the guide wire.
9. The assembly according to claim 1 , wherein a diameter of the body implant is equal to or less than an original diameter of the guide wire.
10. A medical instrument comprising:
a guide wire with radial cuts that are produced by means of an ultrashort pulse laser,
wherein wire segments are separated, from a wire that is used for the guide wire,
as a result of the radial cuts that are produced by means of the ultrashort pulse laser,
wherein the wire segments are braided by tatting the wire segments,
wherein the wire segments are expanded to shape a body implant,
where the guide wire comprises a first portion, a second portion, and an integrally formed joint for flexibility,
where the integrally formed joint is between the first portion and the second portion, and
wherein the integrally formed joint is narrower than the first portion and the second portion.
11. The medical instrument according to claim 10 , wherein the guide wire and the body implant are integrally formed and have a predetermined breaking point.
12. The medical instrument according to claim 10 , where the body implant comprises one of a stent, a basket, or a filter.
13. The medical instrument according to claim 10 , wherein a removal of a portion of a cross section of the guide wire produces the integrally formed joint.
14. The medical instrument according to claim 10 , wherein the guide wire is made of a material having shape-memory properties.
15. The medical instrument according to claim 10 , wherein the body implant is connected to the guide wire before being separated from the guide wire.
16. The medical instrument according to claim 10 , wherein the body implant is crimped to an original diameter of the guide wire.
17. The medical instrument according to claim 10 , wherein the wire segments are tatted with a weave type of 1/2, 1/1, or 2/2.