Device and method for dilation of a tubular anatomical structure
Described is a method and device for dilating a tubular anatomical structure. The device and method can be useful for extracting a blood clot in an artery of a mammal by concentrically irradiating an inner wall of the occluded artery using an ultraviolet (UV) laser beam delivered by an optical fiber. Dilation results from photophysical production and release of nitric oxide from the cells lining the arterial wall when UV laser light is projected as a ring beam onto the inner arterial wall.
1. A combination guidewire and optical fiber capable of carrying UV laser light, wherein said guidewire is formed as a hollow tube and has disposed within the hollow tube the optical fiber for carrying UV laser light from a UV laser light source emitting UV laser light at a wavelength of about 300-400 nm and an intensity of about 3-20 Watts/cm 2 , wherein the optical fiber has a distal end having a configuration selected from the group consisting of an external cone, an inverted cone, and a flat distal end comprising concentric circular grooves etched into the flat distal end, wherein the laser light is refractively emitted from the distal end of the optical fiber as a conical ring beam to impinge on a tubular anatomical structure.
2. The combination guidewire and optical fiber capable of carrying UV laser light of claim 1 , wherein the hollow guidewire and optical fiber capable of carrying UV laser light are affixed to one another.
3. The combination guidewire and optical fiber capable of carrying UV laser light of claim 1 , wherein the distal end of the optical fiber capable of carrying UV laser light is provided as a separate tip in optical communication with the optical fiber.
4. The combination guidewire and optical fiber capable of carrying UV laser light of claim 3 , wherein the separate tip in optical communication with the optical fiber comprises diamond.
5. The combination guidewire and optical fiber capable of carrying UV laser light of claim 3 , wherein the separate tip in optical communication with the optical fiber comprises zirconium oxide.
6. The combination guidewire and optical fiber capable of carrying UV laser light of claim 1 , wherein the UV laser light is emitted at a wavelength of about 355 nm.