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The accommodative characteristics of gazing at stereoscopic images on a 3-D display

机译:三维显示屏立体图像凝视的容纳特征

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PURPOSE: We measured the accommodative response in order to investigate the influence of a visual function when gazing at stereoscopic images presented on a three dimensional display. METHODS: Accommodative step responses were measured using an infrared optometer, setting the far target at the distance of 1 m and the near target at the distance of 50 cm. The step response of the right eye was examined 6 times at 10-second intervals. The far target was a starburst as a real image and the near target was a white circle on a random dot background on a parallax barrier system three-dimensional display as a stereoscopic image generated with a 90-min arc binocular crossed disparity(+1.5 degrees) and a 90-min arc binocular uncrossed disparity (-1.5 degrees), and a 0-min disparity (0 degree). The near target was presented in 4 ways: 1. -1.5 degrees disparity alone, 2. 0-min disparity alone, 3. +1.5 degrees disparity alone, and 4. +1.5 degrees and -1.5 degrees disparity alternately. RESULTS: In conditions 1 to 3, the mean +/- standard deviation values of the accommodative response were 0.59 +/- 0.16 D, 0.72 +/- 0.11 D, and 1.03 +/- 0.21 D, respectively. The accommodative response was very large at the disparity of +1.5 degrees compared with the disparity of 0 degree (p = 0.0300). It was not significant although there was a tendency to become small at the disparity of -1.5 degrees (p = 0.0707). In condition 4, the mean +/- standard deviation values of the accommodative response were 0.62 +/- 0.12 D in the condition of -1.5 degrees and 1.03 +/- 0.26 D in condition +1.5 degrees with significant difference (p = 0.0122). CONCLUSIONS: The over accommodation response is induced when gazing at a stereoscopic image under the condition of binocular crossed disparity. This indicates that gazing at stereoscopic images has ill effects on the accommodative system.
机译:目的:我们测量了适应性响应,以便在凝视在三维显示器上呈现的立体图像时对视觉功能的影响。方法:使用红外晶圆测量待平整的步骤响应,将远定目标设置在1米的距离和50cm距离的距离处。右眼的步进响应以10秒的间隔检查6次。远定目标是作为真实形象的恒星,附近的目标是在视差屏障系统上的随机点背景上是一个白色圆圈,作为具有90分钟的弧形双筒码差异产生的立体图像(+1.5度) )和90分钟的电弧双目未交叉的视差(-1.5度)和0分钟(0度)。近靶以4种方式提出:1. -1.5度差距,仅为0分差距,仅3. + 1.5度差距,4. +1.5度和-1.5度差距交替。结果:在条件1至3条件下,平均+/-标准偏差值分别为0.59 +/- 0.16d,0.72 +/- 0.11d和1.03 +/- 0.21d。与0度的差异相比,差距+1.5度的差​​距非常大(P = 0.0300)。虽然在-1.5度的差​​异倾向于较小(P = 0.0707),但它并不重要。在条件4中,平均+/-标准偏差值在-1.5度和1.03 +/- 0.26d的条件下为0.62 +/- 0.12d,条件+1.5度,具有显着差异(P = 0.0122) 。结论:在双目交叉差距的条件下凝视立体图像时诱导过度的住宿响应。这表明凝视立体图像对容纳系统产生了不良影响。

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