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Tracking scanning laser ophthalmoscope (TSLO)

机译:跟踪扫描激光眼力镜(TSLO)

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The effectiveness of image stabilization with a retinal tracker in a multi-function, compact scanning laser ophthalmoscope (TSLO) was demonstrated in initial human subject tests. The retinal tracking system uses a confocal reflectometer with a closed loop optical servo system to lock onto features in the fundus. The system is modular to allow configuration for many research and clinical applications, including hyperspectral imaging, multifocal electroretinography (MFERG), perimetry, quantification of macular and photo-pigmentation, imaging of neovascularization and other subretinal structures (drusen, hyper-, and hypo-pigmentation), and endogenous fluorescence imaging. Optical hardware features include dual wavelength imaging and detection, integrated monochromator, higher-order motion control, and a stimulus source. The system software consists of a real-time feedback control algorithm and a user interface. Software enhancements include automatic bias correction, asymmetric feature tracking, image averaging, automatic track re-lock, and acquisition and logging of uncompressed images and video files. Normal adult subjects were tested without mydriasis to optimize the tracking instrumentation and to characterize imaging performance. The retinal tracking system achieves a bandwidth of greater than 1 kHz, which permits tracking at rates that greatly exceed the maximum rate of motion of the human eye. The TSLO stabilized images in all test subjects during ordinary saccades up to 500 deg/sec with an inter-frame accuracy better than 0.05 deg. Feature lock was maintained for minutes despite subject eye blinking. Successful frame averaging allowed image acquisition with decreased noise in low-light applications. The retinal tracking system significantly enhances the imaging capabilities of the scanning laser ophthalmoscope.
机译:在初始人类对象测试中,证明了在多功能扫描激光眼科(TSLO)中具有视网膜跟踪器的图像稳定化的有效性。视网膜跟踪系统使用共用反射仪,其中闭环光学伺服系统锁在眼底的特征上。该系统是模块化的,以允许配置许多研究和临床应用,包括高光谱成像,多焦电流术(MFERG),围绕黄斑和光学色素沉着的定量,新血管形成和其他超自序结构的成像(Drusen,Hyper-和Hypo-色素沉着)和内源荧光成像。光学硬件功能包括双波长成像和检测,集成单色器,高阶运动控制和刺激源。系统软件包括实时反馈控制算法和用户界面。软件增强功能包括自动偏置校正,非对称特征跟踪,图像平均,自动跟踪重新锁定,以及未压缩图像和视频文件的获取和记录。在没有瞳孔的情况下测试正常的成人受试者,以优化跟踪仪器并表征成像性能。视网膜跟踪系统实现了大于1 kHz的带宽,这允许以极大地超过人眼的最大运动速率的速率跟踪。 TSLO在普通鞍区的所有测试对象中稳定图像,高达500°/秒,帧间精度优于0.05°。尽管受到镜子闪烁,但仍需要锁定的特征锁定。成功的帧平均允许图像采集随着低光应用中的噪声减少。视网膜跟踪系统显着提高了扫描激光眼镜镜的成像能力。

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