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Anatomical Limitations of the Visual Field of View: An Example of Driving Perspective

机译:视野视野的解剖局限性:驾驶透视的示例

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Visual acuity is defined as the spatial resolution capacity of the visual system. It is commonly accepted that the foveal, or on-center visual acuity, is far better than the peripheral acuity due to retinal and cortex constructions. Other factors affect the way an individual visually perceives their surroundings as well. This paper seeks to illustrate the variance of the visual field in terms of several compounding factors including acuity, depth perception, and color perception and their effect on a vehicle operator's visual field. Within accident reconstruction, digital renderings of an accident are often re-created from the vantage point of one or more persons to illustrate what they may have perceived prior to and during an event. However, typically no compensations are made to account for any general and/or individual visual-based sensory degradation. The only limits imposed with the renderings are the screen and its subsequent resolution and the camera settings utilized. Within this study, a digital rendering of a driving scenario was used along with several visual-based filters to illustrate the difference between general animation renderings and one in which anatomical limitations are accounted. The results of this study depict significant differences in image perception when visual acuity impairments were incorporated and thus it was concluded that basic animations give an unnatural awareness to the surrounding scene. However, with the proper visual-based filters applied, the image provides a more accurate and true representation of what an accident witness perceives and thus is a preferred application.
机译:视阳被定义为视觉系统的空间分辨率容量。通常接受的是,由于视网膜和皮质结构,温度或中心视力远远优于周边敏感性。其他因素影响了个人视觉视觉察觉周围环境的方式。本文旨在说明视觉领域的差异,包括几种复合因子,包括敏锐度,深度感知和颜色感知及其对车辆操作员的视野的影响。在事故重建中,事故的数字效果通常从一个或多个人的有利程度重新创建,以说明在事件之前和在事件期间都可能被感知。然而,通常不会对任何一般和/或个人视觉的感官劣化进行补偿。渲染施加的唯一限制是屏幕及其随后的分辨率和所使用的相机设置。在该研究中,使用驾驶场景的数字渲染以及多个基于视觉滤波器来说明一般动画渲染的差异,以及解剖局限性的一个。该研究的结果描述了当纳入视力损伤时图像感知的显着差异,因此它的结论是,基本动画对周围的场景给出了不自然的意识。然而,通过应用适当的视觉滤波器,图像提供了更准确和真实的表示事故证人所感知,因此是优选的应用。

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