Multi-spot laser surgical probe using faceted optical elements
View Patent ↗An optical surgical probe includes a handpiece, a light guide within the handpiece, and a multi-spot generator at a distal end of the handpiece. The handpiece is configured to optically couple to a light source. The light guide is configured to carry a light beam from the light source to a distal end of the handpiece. The multi-spot generator includes a faceted optical element with a faceted end surface spaced from a distal end of the light guide. The faceted end surface includes at least one facet oblique to a path of the light beam.
1. A method of manufacturing a multi-spot optical surgical probe, comprising:
depositing an optical adhesive in a cannula for a handpiece including at least one light guide configured to carry a light beam from a light source through the handpiece, the optical adhesive being deposited around a spherically symmetric ball lens;
forming the optical adhesive to produce a faceted face having planar facets oriented at an oblique angle with a path of the light beam, the faceted face being spaced apart from a distal end of the light guide;
curing the optical adhesive; and
assembling the cannula with the handpiece to form a multi-spot generator that includes the optical adhesive at a distal end of the handpiece, wherein the multi-spot generator is configured to split the light beam into multiple beam-components and to redirect the beam-components to multiple separate spots.
2. The method of claim 1 , wherein:
the optical adhesive is a first optical adhesive having a first refractive index; and
the method further comprises:
depositing a second optical adhesive having a second refractive index different from the first refractive index on the faceted face of the first optical adhesive; and
curing the second optical adhesive.
3. The method of claim 1 , wherein the step of forming the optical adhesive comprises molding the optical adhesive with a molding pin inserted into the cannula.
4. The method of claim 1 , wherein the distal end of the handpiece is sized to be 23 Gauge or smaller.
5. The method of claim 1 , wherein the faceted face is a convex faceted face.
6. The method of claim 1 , wherein the faceted face is a concave faceted face.
7. The method of claim 1 , wherein the handpiece comprises a gradient index (GRIN) lens between the at least one light guide and the multi-spot generator.