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Novel Microscope-Integrated Stereoscopic Display for Intrasurgical Optical Coherence Tomography

机译:用于釉外光学相干断层扫描的新型显微镜综合立体显示

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The first generation of intrasurgical optical coherence tomography (OCT) systems displayed OCT data onto a separate computer monitor, requiring surgeons to look away from the surgical microscope. In order to provide real-time OCT feedback without requiring surgeons to look away during surgeries, recent prototype research and commercial intrasurgical OCT systems have integrated heads-up display (HUD) systems into the surgical microscopes to allow the surgeons to access the OCT data and the surgical field through the oculars concurrently. However, all current intrasurgical OCT systems with a HUD are only capable of imaging through one ocular limiting the surgeon's depth perception of OCT volumes. Stereoscopy is an effective technology to dramatically increase depth perception by presenting an image from slightly different angles to each eye. Conventional stereoscopic HUD use a pair of micro displays which require bulky optics. Several new approaches for HUDs are reported to use only one micro display at the expense of image brightness or increased footprint. Therefore, these techniques for HUD are not suitable to be integrated into microscopes. We have developed a novel stereoscopic HUD which uses spatial multiplexing to project stereo views into both oculars simultaneously with only one micro-display and three optical elements for our microscope-integrated OCT system. Simultaneous stereoscopic views of OCT volumes are computed in real time by GPU-enabled OCT system software. We present, to our knowledge, the first microscope integrated stereoscopic HUD used for intrasurgical OCT with a novel optical design for stereoscopic viewing devices and report on its preliminary use in human vitreoretinal surgeries.
机译:第一代钝化光学光学相干断层扫描(OCT)系统将OCT数据显示到单独的计算机监视器上,需要外科医生远离手术显微镜。为了提供实时的OCT反馈,无需外科医生在手术期间远离外科医生,最近的原型研究和商业纤过的OCT系统将朝上显示器(HUD)系统集成到外科显微镜中,以允许外科医生访问OCT数据和外科手术场同时通过眼镜。然而,具有HUD的所有当前尿液型OCT系统仅能够通过一个眼睛限制外科医生对OCT体积的深度感知进行成像。立体镜是一种有效的技术,可以通过向每只眼睛呈现略微不同的角度来显着增加深度感知。传统的立体静脉使用需要庞大的光学器件的一对微显示器。据报道,几种新的HUD方法仅使用一个微显示器,以牺牲图像亮度或增加的占地面积。因此,HUD的这些技术不适合集成到显微镜中。我们开发了一种新颖的立体HUD,它使用空间多路复用来将立体视图项目立体声视图与只有一个微显示器和三个光学元件一起投入到两个眼镜上,为我们的显微镜集成OCT系统同时。 OCT卷的同时立体视图由GPU的OCT系统软件实时计算。我们介绍了我们的知识,第一显微镜综合立体静脉HUD用于墨西哥元,具有用于立体观察装置的新型光学设计,并报告人体培养物前手术中的初步用途。

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