首页> 外文OA文献 >A PSYCHOPHYSICAL INVESTIGATION OF A DYNAMIC DEPTH PERCEPTION THRESHOLD IN THE HUMAN VISUAL SYSTEM USING ROTATING THREE-DIMENSIONAL LISSAJOUS PATTERNS
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A PSYCHOPHYSICAL INVESTIGATION OF A DYNAMIC DEPTH PERCEPTION THRESHOLD IN THE HUMAN VISUAL SYSTEM USING ROTATING THREE-DIMENSIONAL LISSAJOUS PATTERNS

机译:三维三维旋转模式对人眼视觉系统动态深度感知阈值的心理研究

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摘要

A tridimensional optical display is described which is capable of producing real images with no optics between the observer and the image. This display, which is called the Visually Integrated Volumetric Image (VIVID), was developed as a laboratory system designed to be used in vision research. Three dimensional Lissajous patterns were produced, whose rotational position and axial depth could be precisely controlled by a general purpose digital minicomputer. By reversing the direction of rotation of the pattern in a known manner, and recording a subject's ability to perceive the true rotational direction for various amounts of axial image depth, the transition between the kinetic depth effect and true depth perception could be investigated. This transition forms the basis for defining a depth perception threshold for this type of a dynamic three dimensional image. Two experiments were performed using this approach. In the first experiment, ten undergraduate and graduate students (both male and female) observed the pattern during 24 one-minute trials. Eight different axial depth values were used, with three trials at each depth. The patterns were made to reverse rotation direction in a pseudo-random manner which was different for each trial presented to a given subject. The subject indicated the perceived direction of rotation by controlling a two position rotary switch, which was monitored by the computer. The total time during which the subject correctly tracked the rotation was integrated by the computer. The ratio of this correct tracking time to the total trial time was taken as a measure of the subject's ability to perceive the axial depth of the image. Plots of this ratio as a function of image depth are presented and discussed. The results averaged over all subjects produce a remarkably smooth curve, yielding a depth perception threshold of 2 mm for the subject population under the given experimental conditions. The characteristics of the stimulus were: (a) 2 cm high by 2 cm wide pattern; (b) Lissajous pattern frequency ratio of 6:1; (c) Axial distance from observer of 55 cm; (d) Wavelength of 533 nm (green); (e) Horizontal rotation axis; (f) Rotation period of 7 seconds; (g) Neutral background field illumination over a 40° come angle; (h) Image line width of 0.5 mm. The second experiment was a pilot experiment designed to investigate the effect of wavelength variations on this form of depth perception. A single subject was presented with a total of 192 one-minute trials at four wavelengths spanning the visible region (i.e., 6 one-minute trials for each of eight depth values at each wavelength). No significant wavelength dependence was observed in this pilot experiment.
机译:描述了三维光学显示器,其能够产生真实的图像,而在观察者和图像之间没有光学器件。这种显示器称为视觉集成体积图像(VIVID),是作为旨在用于视觉研究的实验室系统而开发的。产生了三个李沙育图形,它们的旋转位置和轴向深度可以由通用数字小型计算机精确控制。通过以已知方式反转图案的旋转方向,并记录对象针对各种轴向图像深度量感知真实旋转方向的能力,可以研究动力学深度效果与真实深度感知之间的过渡。该过渡形成用于定义这种类型的动态三维图像的深度感知阈值的基础。使用这种方法进行了两个实验。在第一个实验中,十个大学生和研究生(男性和女性)在24个一分钟的试验中观察了这种模式。使用了八个不同的轴向深度值,每个深度进行了三个试验。使模式以伪随机方式反转旋转方向,这对于呈现给给定受试者的每个试验都是不同的。受试者通过控制两个位置的旋转开关指示了旋转的方向,该旋转开关由计算机监控。计算机将对象正确跟踪旋转的总时间积分。该正确跟踪时间与总试用时间之比被视为对象感知图像轴向深度的能力的量度。呈现并讨论了该比率与图像深度的关系图。在所有对象上平均的结果会产生非常平滑的曲线,在给定的实验条件下,对象群体的深度感知阈值为2 mm。刺激的特征是:(a)高2 cm,宽2 cm的图案; (b)利萨如模式频率比为6:1; (c)距观察者的轴向距离为55厘米; (d)533 nm的波长(绿色); (e)水平旋转轴; (f)轮换周期为7秒; (g)超过40°入射角的中性背景场照明; (h)图像线宽度为0.5毫米。第二个实验是中试实验,旨在研究波长变化对这种形式的深度感知的影响。单个受试者在横跨可见区域的四个波长上进行了总共192次一分钟试验(即,对于每个波长的八个深度值中的每个,进行了6次一分钟试验)。在该实验中未观察到明显的波长依赖性。

著录项

  • 作者

    Gardner Keith Leroy;

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  • 年度 1980
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  • 原文格式 PDF
  • 正文语种 en_US
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