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An Image-Based Method for Measuring Strabismus in Virtual Reality

机译:基于图像的虚拟现实中斜视测量方法

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Strabismus is a visual disorder characterized by eye misalignment. The effect of Panum’s Fusional Area (PFA) compensates for small misalignments. However, prominent misalignments affect binocular vision and when present in childhood it may lead to amblyopia, a developmental disorder of the visual system. With the advent of Virtual Reality (VR) technology, possibilities for novel binocular treatments to amblyopia arise in which the measurement of strabismus is crucial to correctly compensate for it. Thus, VR yields great potential due to the ability of displaying content to each eye independently. Major research in VR addresses this topic using eye-tracking while there is a paucity of research on image-based assessment methods. In this work, we propose a VR application for measuring strabismus in nine lines of sight. We conducted a study with 14 healthy participants to evaluate the system under two conditions: no strabismus and an artificial deviation induced by prism lenses. Further, we evaluated the effect of PFA on the system by measuring its extent in horizontal and vertical lines of sight. Results show significant difference between the expected deviation induced by prism lenses and the measured deviation. The existing difference within the measurements can be explained with the recorded extent of the PFA.
机译:Strabismus是一种视觉疾病,其特征是眼睛未对准。面包沉重地区(PFA)的效果补偿了小的错位。然而,显着的未对准影响双目视觉,并且当存在儿童时期时,它可能导致弱视,视觉系统的发育障碍。随着虚拟现实(VR)技术的出现,出现了新型双目治疗的可能性,其中斜视的测量对于正确弥补它至关重要。因此,VR由于为每只眼睛独立地显示内容的能力而产生巨大潜力。 VR的主要研究通过眼跟踪解决了本主题,同时存在对基于图像的评估方法的研究。在这项工作中,我们提出了VR应用程序在九条视线中测量斜视。我们对14名健康参与者进行了一项研究,以评估两个条件下的系统:棱镜镜片没有斜视和人工偏差。此外,我们通过测量水平和垂直视线的程度来评估PFA对系统的影响。结果显示棱镜镜片诱导的预期偏差和测量偏差之间的显着差异。测量内的现有差异可以通过PFA的记录范围来解释。

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