Personalization of excimer laser fibers
The invention provides personalized laser probes for use in laser systems, wherein each laser probe includes one or more characteristics tailored to a given user to thereby improve performance of and outcome of a laser treatment procedure.
1. A system for use in performing an intraocular procedure, said system comprising:
a laser unit comprising a laser source; and
a plurality of single-use, disposable laser probes coupleable, one at a time, to said laser unit, each single-use, disposable laser probe comprising:
a handheld component; and
a fiber optic core extending through the handheld component, the fiber optic core including a proximal end detachably coupleable to the laser unit and a distal end including a delivery tip for emitting laser energy, transmitted via the fiber optic core from said laser source when coupled thereto, to a target tissue for ablation thereof, wherein each of said plurality of single-use, disposable laser probes comprises one or more characteristics tailored to a respective user, including wherein said plurality of single-use, disposable laser probes includes a first probe having a first delivery tip with a first flexibility level and a second probe having a second delivery tip with a second flexibility level different from the first flexibility level.
2. The system of claim 1 , wherein said handheld component comprises dimensions, including width, length, and diameter, based on a preference of said respective user.
3. The system of claim 1 , wherein said delivery tip is straight or angled based on a preference of said respective user.
4. The system of claim 1 , further comprising an outer jacket surrounding said fiber optic core.
5. The system of claim 4 , wherein said outer jacket has a degree of rigidity or flexibility based on a preference of said respective user.
6. The system of claim 1 , wherein said intraocular procedure is a laser trabeculostomy.
7. The system of claim 6 , wherein said target tissue comprises at least one of a trabecular meshwork and Schlemm's canal.
8. A kit for use in performing an intraocular procedure, said kit comprising:
a plurality of single-use, disposable laser probes coupleable, one at a time, to a laser unit comprising an excimer laser source, each single-use, disposable laser probe comprising:
a handheld component;
a fiber optic core extending through the handheld component, the fiber optic core including a proximal end detachably coupleable to the laser unit and a distal end including a delivery tip for emitting laser energy, transmitted via the fiber optic core from said laser source when coupled thereto, to a target tissue for ablation thereof;
wherein each of said plurality of single-use, disposable laser probes comprises one or more characteristics tailored to a respective user, including wherein said plurality of single-use, disposable laser probes includes a first probe having a first delivery tip with a first flexibility level and a second probe having a second delivery tip with a second flexibility level different from the first flexibility level.
9. The kit of claim 8 , wherein said handheld component comprises dimensions, including width, length, and diameter, based on a preference of said respective user.
10. The kit of claim 8 , wherein said delivery tip is straight or angled based on a preference of said respective user.
11. The kit of claim 8 , wherein each single-use, disposable laser probe comprises an outer jacket surrounding said fiber optic core.
12. The kit of claim 11 , wherein said outer jacket has a degree of rigidity or flexibility based on a preference of said respective user.
13. The kit of claim 8 , wherein said intraocular procedure is a laser trabeculostomy.
14. The kit of claim 13 , wherein said target tissue comprises at least one of a trabecular meshwork and Schlemm's canal.
15. The system of claim 1 , wherein the first probe and the second probe are provided such that a desired probe with a desired flexibility level is selectable by a surgeon to provide desired feel and maneuverability during the intraocular procedure.
16. The system of claim 1 , wherein, during the intraocular procedure, the delivery tip of each of the plurality of single-use, disposable laser probes is configured for:
insertion through a corneal incision of an eye,
movement through the eye toward a trabecular meshwork of the eye, and
placement of the delivery tip relative to the trabecular meshwork, such that upon emitting the laser energy from the delivery tip a channel is created in the trabecular meshwork.
17. The system of claim 1 , wherein the first probe or the second probe is selectable by an operator of the system for performing a given intraocular procedure to enhance proper placement of the delivery tip relative to a trabecular meshwork of the eye.
18. The system of claim 1 , wherein the first probe or the second probe is further selectable by the operator of the system to avoid unintended collateral tissue damage or the creation of channels in a trabecular meshwork of an eye that are inadequate and do not provide desired drainage of aqueous humor fluid through the trabecular meshwork into a Schlemm's canal of the eye.
19. A system for use in performing an intraocular procedure, said system comprising:
a laser unit comprising a laser source; and
a plurality of single-use, disposable laser probes coupleable, one at a time, to said laser unit, each single-use, disposable laser probe comprising:
a handheld component; and
a fiber optic core extending through the handheld component, the fiber optic core including a proximal end detachably coupleable to the laser unit and a distal end including a delivery tip for emitting laser energy, transmitted via the fiber optic core from said laser source when coupled thereto, to a target tissue for ablation thereof, wherein:
said plurality of single-use, disposable laser probes includes a first probe having a first delivery tip with a first flexibility level and a second probe having a second delivery tip with a second flexibility level different from the first flexibility level, and
the first probe or the second probe is selectable by an operator of the system for performing a given intraocular procedure to provide desired maneuverability for placement of the delivery tip relative to a trabecular meshwork of an eye during the intraocular procedure.