Invention Grant
US08582096B2 System and method for efficient coherence anti-stokes raman scattering endoscopic and intravascular imaging and multimodal imaging
有权
系统和方法用于有效的一致性反kes散射内镜和血管内成像和多模态成像
- Patent Title: System and method for efficient coherence anti-stokes raman scattering endoscopic and intravascular imaging and multimodal imaging
- Patent Title (中): 系统和方法用于有效的一致性反kes散射内镜和血管内成像和多模态成像
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Application No.: US12969295Application Date: 2010-12-15
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Publication No.: US08582096B2Publication Date: 2013-11-12
- Inventor: Zhongping Chen , Gangjun Liu , Mihael Balu , Bruce Tromberg , Eric Olaf Potma
- Applicant: Zhongping Chen , Gangjun Liu , Mihael Balu , Bruce Tromberg , Eric Olaf Potma
- Applicant Address: US CA Oakland
- Assignee: The Regents of the University of California
- Current Assignee: The Regents of the University of California
- Current Assignee Address: US CA Oakland
- Agent Marcus C. Dawes; Daniel L. Dawes
- Main IPC: G01J3/44
- IPC: G01J3/44

Abstract:
A fiber-delivered probe suitable for CARS imaging of thick tissues is practical. The disclosed design is based on two advances. First, a major problem in CARS probe design is the presence of a very strong anti-Stokes component in silica delivery fibers generated through a FWM process. Without proper spectral filtering, this component affects the CARS image from the tissue sample. The illustrated embodiments of the invention efficiently suppress this spurious anti-Stokes component through the use of a separate fiber for excitation delivery and for signal detection, which allows the incorporation of dichroic optics for anti-Stokes rejection. Second, the detection of backscattered CARS radiation from the sample is optimized by using a large core multi mode fiber in the detection channel. This scheme produces high quality CARS images free of detector aperture effects. Miniaturization of this fiber-delivered probe results in a practical handheld probe for clinical CARS imaging.
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