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    • 2. 发明授权
    • Motion-compensated optical coherence tomography system
    • 运动补偿光学相干断层扫描系统
    • US09115974B2
    • 2015-08-25
    • US13618810
    • 2012-09-14
    • Jin U. KangYong Huang
    • Jin U. KangYong Huang
    • G01B11/02G01B9/02A61B5/00
    • G01B9/02076A61B5/0066A61B5/6886A61B5/721A61B34/75G01B9/0205G01B9/02054G01B9/02068G01B9/02091
    • A motion-compensated optical coherence tomography system includes an optical coherence tomography sensor that includes a common-path optical fiber having an end for emitting light, reflecting reference light and receiving returned light for detection; a motion-compensation system attached to the common-path optical fiber and operable to move at least a portion of the optical fiber so as to compensate for motion between the end of the common-path optical fiber and an object being imaged; and a feedback control system configured to communicate with the optical coherence tomography sensor and the motion-compensation system. The feedback control system is configured to receive information concerning a measured distance of the end of the common-path optical fiber from the object and provide instructions to the motion-compensation system to decrease an amount of deviation of the measured distance from a desired distance.
    • 运动补偿光学相干断层摄影系统包括光学相干断层摄影传感器,其包括具有用于发射光的一端的共轨光纤,反射参考光并接收用于检测的返回光; 运动补偿系统,其附接到所述公共路径光纤并且可操作以移动所述光纤的至少一部分,以便补偿所述公共路径光纤的端部与被成像的物体之间的运动; 以及配置成与光学相干断层摄影传感器和运动补偿系统通信的反馈控制系统。 反馈控制系统被配置为从物体接收关于公共路径光纤的端部的测量距离的信息,并且向运动补偿系统提供指令以减少测量距离与期望距离的偏差量。
    • 5. 发明申请
    • REAL-TIME, DISPERSION-COMPENSATED LOW-COHERENCE INTERFEROMETRY SYSTEM
    • 实时,分散补偿的低相干干涉系统
    • US20140063506A1
    • 2014-03-06
    • US14114678
    • 2012-05-04
    • Jin U. KangKang Zhang
    • Jin U. KangKang Zhang
    • G01B9/02
    • G01B9/02091G01B9/02044G01B9/02058G01B9/02083
    • A real-time, dispersion-compensated low coherence interferometric system includes a fiber-optic, a bulk-optic, or a combination of bulk and fiber-optic system comprising a reference path and an observation path; a light source optically coupled to the fiber-optic, bulk-optic, or combination of bulk and fiber-optic system to illuminate the reference and observation paths; an optical detection system arranged to receive combined light returned along the reference and observation paths, the optical detection system providing detection signals; and a data processing system arranged to communicate with the optical detection system to receive the detection signals. The data processing system includes a parallel processor configured to process the detection signals to provide real-time dispersion compensation to numerically compensate for dispersion in the reference path relative to the observation path.
    • 实时色散补偿低相干干涉测量系统包括光纤,体光学或包括参考路径和观察路径的大量和光纤系统的组合; 光源,其光耦合到光纤,体光学,或散装和光纤系统的组合以照亮参考和观察路径; 光学检测系统,布置成接收沿着参考和观察路径返回的组合光,所述光学检测系统提供检测信号; 以及数据处理系统,被布置成与光学检测系统通信以接收检测信号。 数据处理系统包括并行处理器,其被配置为处理检测信号以提供实时色散补偿,以数字地补偿参考路径中相对于观察路径的色散。
    • 6. 发明申请
    • MOTION-COMPENSATED CONFOCAL MICROSCOPE
    • 运动补偿的共焦显微镜
    • US20140063225A1
    • 2014-03-06
    • US14114885
    • 2012-05-04
    • Kang ZHANGJin U. KANGYong HUANGThe Johns Hopkins University
    • Jin U. KangYong HuangKang Zhang
    • G01B9/04
    • G01B9/04A61B5/0066A61B5/0068A61B5/721G02B21/0032
    • A motion-compensated confocal microscope includes a laser scanning system, a fiber-optic component having a proximal end and a distal end such that the fiber-optic component is optically coupled to the laser scanning system to receive illumination light at the proximal end and to emit at least a portion of the illumination light at the distal end, and a detection system configured to receive and detect light returned from a specimen being observed and to output an image signal. The light returned from the specimen is received by the distal end of the fiber-optic component and transmitted back and out the proximal end of the fiber-optic component. The motion-compensated confocal microscope also includes a motion compensation system connected to at least one of the distal end of the fiber-optic component or to the specimen to move at least one of the distal end of the fiber-optic component or the specimen to compensate for relative motion between the distal end of the fiber-optic component and a portion of the specimen being observed.
    • 运动补偿共焦显微镜包括激光扫描系统,具有近端和远端的光纤部件,使得光纤部件光学耦合到激光扫描系统以在近端接收照明光,并且 发射远端的照明光的至少一部分,以及被配置为接收和检测从观察到的样本返回的光并且输出图像信号的检测系统。 从样品返回的光被光纤部件的远端接收并被传出并离开光纤部件的近端。 运动补偿共聚焦显微镜还包括连接到光纤部件的远端中至少一个或运动补偿系统的运动补偿系统,以将至少一个光纤部件或样本的远端移动到 补偿光纤部件的远端和正在观察的部分试样之间的相对运动。