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Development and human factors evaluation of a true three-dimensional display: A stereoscopic retinal scanned light display that provides accurate focus cues to ocular accommodation.

机译:真正的三维显示器的开发和人为因素评估:立体视网膜扫描光显示器,可为眼部调节提供准确的聚焦提示。

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摘要

Current state-of-the-art 3D displays rely primarily on the presentation of stereoscopic and vergence (angle between lines of sight of two eyes) cues to convey depth information, but generate conflicting cues to accommodation (eye focus), leading to eye fatigue and headaches in many users and rendering such displays unusable for extended viewing. In response to this shortcoming, I have designed and constructed a prototype "True 3D" display, a new variant of retinal scanning laser display that has the capability to present variable focus cues to accommodation, to better match the vergence demands generated by stereoscopic imagery. A pixel-modulated laser beam is raster-scanned onto the retina, while its focus is dynamically adjusted with a deformable membrane mirror (DMM), to create full-color high-resolution multi-focal images, in which the viewing distance of displayed objects can be shifted throughout the full range of human accommodation (6.25 cm to optical infinity). As under natural viewing conditions, objects at different distances in a scene are at different focal distances. A viewer can naturally shift accommodation to bring different objects into focus. In addition to developing the display, I have conducted a number of interrelated studies to assess the interaction of accommodation with this new display (across a variety of configurations and stages of development) and a range of other scanned light displays. Prior to this research, the accommodation response to retinal scanned light displays was not known. A key finding is that the diameter of the scanning beam plays a primary role in determining the accommodation response to the display. When the diameter of the scanned laser beam is large (>2 mm), accommodation operates under a closed feedback-loop and accurately follows DMM-induced changes in image focus. When the diameter is small (2 mm), the depth of focus of the display increases and accommodation is partially open-looped, resulting in increased variability of accommodation (both between and within subjects), while proximal accommodation cues lead to an increased average accommodation response. The suitability of large and small beam diameters for different applications and the potential of this technology are discussed.
机译:当前最先进的3D显示器主要依靠立体和发散(两只眼睛的视线之间的角度)提示来传达深度信息,但会产生相互矛盾的提示来适应(眼睛聚焦),从而导致眼睛疲劳许多用户的头痛和头痛,并使其无法用于长时间查看。针对此缺点,我设计并制造了原型“ True 3D”显示器,这是视网膜扫描激光显示器的新变体,能够将可变焦点提示呈现给调节器,以更好地匹配立体图像所产生的散度要求。将像素调制的激光束光栅扫描到视网膜上,同时使用可变形膜镜(DMM)动态调整其焦点,以创建全彩色高分辨率多焦点图像,其中显示对象的观看距离可以在整个人类适应范围内移动(6.25厘米至光学无限远)。如同在自然观看条件下一样,场景中不同距离的对象处于不同的焦距。观看者可以自然地调节住处以使不同的物体聚焦。除了开发显示器之外,我还进行了许多相互关联的研究,以评估住宿与该新显示器(在各种配置和开发阶段)以及一系列其他扫描光显示器之间的相互作用。在这项研究之前,对视网膜扫描光显示的适应性反应尚不清楚。一个关键发现是,扫描光束的直径在确定对显示器的调节响应中起主要作用。当扫描的激光束直径较大(> 2 mm)时,调节将在闭合的反馈环路下进行,并准确地跟踪DMM引起的图像焦点变化。当直径较小(<2 mm)时,显示器的焦深会增加,并且容纳空间会部分开环,从而导致容纳空间(对象之间和对象内)的变异性增加,而近端容纳线索会导致平均值增加住宿反应。讨论了大直径和小直径光束对于不同应用的适用性以及该技术的潜力。

著录项

  • 作者

    Schowengerdt, Brian Thomas.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Psychology Physiological.; Engineering General.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 197 p.
  • 总页数 197
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生理心理学;工程基础科学;
  • 关键词

  • 入库时间 2022-08-17 11:43:44

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