Reduced profile and enhanced flexibility delivery catheters for light activated agents
A delivery catheter for delivery, then photo-activation of photo sensitive material has a photo-sensitive substance-delivery part and an activation part. The catheter delivers substances such as biomaterials to a target site, followed by illumination of the target using optics located at the distal tip of the catheter which are optically coupled to an extracorporeal light source. The light may be delivered by a single or multi-lumen needle, or a separate light guide passed over the catheter.
1. A method for treating tissue, the method comprising:
placing a catheter distal end adjacent the tissue, the catheter including a needle tip and a light-emitting portion;
embedding the needle tip into the tissue;
dispensing a photo-sensitive substance into the tissue;
displacing the light emitting portion to enable light from the light emitting portion to reach the tissue, and
photo-activating the substance in the tissue using the light from the light emitting portion,
wherein the displacing of the light emitting portion includes displacing a sheath having a fiber optic over the catheter.
2. The method of claim 1 , further comprising displacing a fiber optic within a bore of the needle.
3. The method of claim 1 , wherein the the fiber optic is a spiral fiber optic.
4. A method for treating tissue, the method comprising:
disposing a catheter tip of a catheter adjacent the tissue;
injecting a photo-sensitive substance into the tissue from a tip of a needle;
transmitting light energy to the tissue from the tip of the needle;
displacing a sheath having a fiber optic over the catheter to enable light from the fiber optic of the sheath to reach the tissue; and
photo-activating the substance in the tissue with light from the fiber optic of the sheath.
5. The method of claim 4 , wherein the transmitting of light energy to the tissue from the tip of the needle includes transmitting the light energy through a solid medium.
6. The method of claim 4 , wherein the transmitting of light energy to the tissue from the tip of the needle includes transmitting the light energy through a fluid medium.
7. The method of claim 4 , further comprising curing the substance injected into the tissue by the transmitted light energy from the tip of the needle.
8. The method of claim 4 , wherein the needle has a lumen extending through the needle, and the transmitting light energy and injecting the photo-sensitive substance both occur within the lumen.
9. The method of claim 8 , wherein the transmitting includes transmitting the light energy through a fiber optic within the lumen.
10. The method of claim 8 , wherein the transmitting includes transmitting the light energy through a fluid within the lumen.