Multistrand coil for interventional therapy
View Patent ↗The embolic coil includes a microcoil and an elongated wire electrically connected to the microcoil for accelerating embolization of an aneurysm into which the embolic coil is placed. The microcoil is formed of a first metallic material having a first reduction potential, and the elongated wire is formed of a second metallic material having a second reduction potential lower than the first reduction potential of the first metallic material.
1. An embolic coil for placement within an interior aqueous fluid environment of an aneurysm in a person's vasculature for accelerating embolization of the aneurysm, comprising:
a microcoil having a distal end and a proximal end, including a plurality of helical coils defining an interior space along a length of the microcoil, said microcoil being formed of a first metallic material having a first reduction potential; and
an elongated wire having a distal end and a proximal end, said elongated wire being electrically connected to said microcoil at said proximal end of said microcoil, and said elongated wire being formed of a second metallic material having a second reduction potential different from the first reduction potential of the first metallic material, whereby said first and second metallic materials create a galvanic cell when the embolic coil is placed in the aqueous fluid environment of the aneurysm;
a rounded tip secured to the distal end of the microcoil, wherein said rounded tip is also secured to the distal end of the elongated wire; and
a ring secured to said microcoil and said elongated wire at the proximal end of the microcoil.
2. The embolic coil of claim 1 , wherein said first metallic material is a metal selected from the group consisting of platinum and a platinum alloy.
3. The embolic coil of claim 1 , wherein said elongated wire is disposed in an interior space of the microcoil and extends between said distal end and said proximal end of said microcoil.
4. The embolic coil of claim 1 , wherein said second reduction potential is lower than the first reduction potential.
5. The embolic coil of claim 1 , wherein said second metallic material is a metal selected from the group consisting of zinc and a zinc alloy.
6. The embolic coil of claim 1 , wherein said rounded tip has a spherical or ovoid shape.