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Single-channel stereoscopic ophthalmology microscope based on TRD

机译:基于TRD的单通道立体眼科显微镜

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A stereoscopic imaging modality was developed for the application of ophthalmology surgical microscopes. A previous study has already introduced a single-channel stereoscopic video imaging modality based on a transparent rotating deflector (SSVIM-TRD), in which two different view angles, image disparity, are generated by imaging through a transparent rotating deflector (TRD) mounted on a stepping motor and is placed in a lens system. In this case, the image disparity is a function of the refractive index and the rotation angle of TRD. Real-time single-channel stereoscopic ophthalmology microscope (SSOM) based on the TRD is improved by real-time controlling and programming, imaging speed, and illumination method. Image quality assessments were performed to investigate images quality and stability during the TRD operation. Results presented little significant difference in image quality in terms of stability of structural similarity (SSIM). A subjective analysis was performed with 15 blinded observers to evaluate the depth perception improvement and presented significant improvement in the depth perception capability. Along with all evaluation results, preliminary results of rabbit eye imaging presented that the SSOM could be utilized as an ophthalmic operating microscopes to overcome some of the limitations of conventional ones.
机译:立体成像模态被开发用于眼科手术显微镜。先前的研究已经介绍了基于透明旋转偏转器(SSVIM-TRD)的单通道立体视频成像模式,其中通过安装在透明旋转偏转器(TRD)上的成像生成两个不同的视角,即图像视差。步进电机,并放置在镜头系统中。在这种情况下,图像视差是折射率和TRD的旋转角度的函数。通过实时控制和编程,成像速度和照明方法,改进了基于TRD的实时单通道立体眼科显微镜(SSOM)。进行图像质量评估以调查TRD操作期间的图像质量和稳定性。根据结构相似性(SSIM)的稳定性,结果在图像质量上几乎没有显着差异。对15位盲观察者进行了主观分析,以评估深度感知的改善,并提出了深度感知能力的显着改善。连同所有评估结果,兔眼成像的初步结果表明,SSOM可以用作眼科手术显微镜,以克服常规显微镜的某些局限性。

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