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首页> 外文期刊>Journal of Neurophysiology >Three-dimensional ocular kinematics underlying binocular single vision
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Three-dimensional ocular kinematics underlying binocular single vision

机译:双眼单视的三维眼运动学

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We have analyzed the binocular coordination of the eyes during far-to-near refixation saccades based on the evaluation of distance ratios and angular directions of the projected target images relative to the eyes’ rotation centers. By defining the geometric point of binocular single vision, called Helmholtz point, we found that disparities during fixations of targets at near distances were limited in the subject’s three-dimensional visual field to the vertical and forward directions. These disparities collapsed to simple vertical disparities in the projective binocular image plane. Subjects were able to perfectly fuse the vertically disparate target images with respect to the projected Helmholtz point of single binocular vision, independent of the particular location relative to the horizontal plane of regard. Target image fusion was achieved by binocular torsion combined with corrective modulations of the differential half-vergence angles of the eyes in the horizontal plane. Our findings support the notion that oculomotor control combines vergence in the horizontal plane of regard with active torsion in the frontal plane to achieve fusion of the dichoptic binocular target images.
机译:我们根据相对于眼睛旋转中心的投射目标图像的距离比和角度方向的评估,分析了近距离固定扫视运动期间眼睛的双眼协调性。通过定义双目单视觉的几何点(称为亥姆霍兹点),我们发现在固定目标近距离时视差在对象的三维视野中沿垂直方向和向前方向受到限制。这些视差在投影双目像平面中崩溃为简单的垂直视差。受试者能够相对于单个双目视觉的投影亥姆霍兹点完美地融合垂直分散的目标图像,而与相对于水平面的特定位置无关。目标图像融合是通过将双眼扭转与水平平面中眼睛的不同半收敛角的校正调制相结合来实现的。我们的发现支持以下观点:动眼控制将视线水平面的发散与额叶面的主动扭转相结合,以实现双目双目目标图像的融合。

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