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    • 5. 发明申请
    • MULTI-SPOT LASER PROBE
    • 多点激光探头
    • WO2011075256A1
    • 2011-06-23
    • PCT/US2010/056703
    • 2010-11-15
    • ALCON RESEARCH, LTD.SMITH, Ronald, T.
    • SMITH, Ronald, T.
    • A61N1/00
    • A61F9/008A61B2018/2211A61B2018/2261A61B2018/2266A61F9/00821A61F9/00823A61F2009/00863
    • A multi-spot/multi-fiber laser probe is provided that includes a first adapter; a GRIN lens within the first adapter, the GRIN lens configured to receive a laser beam from a laser source at a proximal end of the GRIN lens and to relay the received laser beam towards a distal end of the GRIN lens; and a multi-fiber array having a proximal end configured to receive the relayed laser light. In addition, a multi-spot/single-fiber laser probe is provided that includes a cannula; an optical fiber positioned within the cannula; a diffractive beam splitter within the cannula; and a GRIN lens within the cannula and arranged between a distal end of the optical fiber and the diffractive beam splitter, wherein the diffractive beam splitter is configured to split a focused laser beam from the GRIN lens into multiple diffracted laser beams.
    • 提供多点/多光纤激光探头,其包括第一适配器; 在所述第一适配器内的GRIN透镜,所述GRIN透镜被配置为在所述GRIN透镜的近端处接收来自激光源的激光束,并且将接收的激光束朝向所述GRIN透镜的远端中继; 以及具有被配置为接收中继的激光的近端的多光纤阵列。 另外,提供了包括套管的多点/单纤维激光探针; 定位在套管内的光纤; 插管内的衍射分束器; 以及套管内的GRIN透镜,并布置在光纤的远端和衍射分束器之间,其中衍射分束器被配置为将聚焦的激光束从GRIN透镜分裂成多个衍射激光束。
    • 9. 发明申请
    • OPTICAL COUPLING EFFICIENCY DETECTION
    • 光耦合效率检测
    • WO2016032797A1
    • 2016-03-03
    • PCT/US2015/045641
    • 2015-08-18
    • NOVARTIS AGSMITH, Ronald T.ULINSKAS, VitTSE, Ben
    • SMITH, Ronald T.ULINSKAS, VitTSE, Ben
    • G01J1/04G01J1/30G01J1/42
    • A61B3/0008G01J1/0425G01J1/30G01J1/4257G02B27/00
    • An ophthalmic endo-illumination system (206) includes a light source that produces a light beam (305), a fiber port that receives an optical fiber (310), a condenser (302) that couples at least a portion of the light beam into the optical fiber received at the fiber port, and a beam splitter (304) disposed between the fiber port and the condenser. The beam splitter is configured to receive the light beam from the condenser and split the light beam into a first beam (312) which is coupled to the optical fiber and a second beam (314) which is coupled to a monitoring fiber (306). An optical sensor (308) is provided to detect an amount of the second beam output from the monitoring fiber. The coupling efficiency of the first beam coupled into the optical fiber may be determined based on the amount of the second beam output from the monitoring fiber.
    • 眼科内照射系统(206)包括产生光束(305)的光源,接收光纤(310)的光纤端口,将至少一部分光束耦合的冷凝器(302) 在光纤端口处接收的光纤和设置在光纤端口和冷凝器之间的分束器(304)。 分束器被配置为接收来自冷凝器的光束并将光束分成耦合到光纤的第一光束(312)和耦合到监视光纤(306)的第二光束(314)。 提供光学传感器(308)以检测从监视光纤输出的第二光束的量。 耦合到光纤中的第一光束的耦合效率可以基于从监视光纤输出的第二光束的量来确定。