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视野中视力的不对称性。

Asymmetries in visual acuity around the visual field.

机构信息

Department of Psychology, New York University, New York, NY, USA.

Center for Neural Science, New York University, New York, NY, USA.

出版信息

J Vis. 2021 Jan 4;21(1):2. doi: 10.1167/jov.21.1.2.

Abstract

Human vision is heterogeneous around the visual field. At a fixed eccentricity, performance is better along the horizontal than the vertical meridian and along the lower than the upper vertical meridian. These asymmetric patterns, termed performance fields, have been found in numerous visual tasks, including those mediated by contrast sensitivity and spatial resolution. However, it is unknown whether spatial resolution asymmetries are confined to the cardinal meridians or whether and how far they extend into the upper and lower hemifields. Here, we measured visual acuity at isoeccentric peripheral locations (10 deg eccentricity), every 15° of polar angle. On each trial, observers judged the orientation (± 45°) of one of four equidistant, suprathreshold grating stimuli varying in spatial frequency (SF). On each block, we measured performance as a function of stimulus SF at 4 of 24 isoeccentric locations. We estimated the 75%-correct SF threshold, SF cutoff point (i.e., chance-level), and slope of the psychometric function for each location. We found higher SF estimates (i.e., better acuity) for the horizontal than the vertical meridian and for the lower than the upper vertical meridian. These asymmetries were most pronounced at the cardinal meridians and decreased gradually as the angular distance from the vertical meridian increased. This gradual change in acuity with polar angle reflected a shift of the psychometric function without changes in slope. The same pattern was found under binocular and monocular viewing conditions. These findings advance our understanding of visual processing around the visual field and help constrain models of visual perception.

摘要

人类的视野在整个视场中是不均匀的。在固定的离轴距离处,水平方向的表现优于垂直方向,而下方的表现优于上方。这些不对称的模式,称为表现场,在许多视觉任务中都有发现,包括那些由对比敏感度和空间分辨率介导的任务。然而,目前还不清楚空间分辨率的不对称性是否仅限于主子午线,或者它们是否以及在多大程度上延伸到上下半视野。在这里,我们在等偏心外周位置(10 度离轴距离)测量了周边视力,每隔 15°极角。在每次试验中,观察者判断四个等距、超阈值光栅刺激的方向(±45°),这些刺激的空间频率(SF)不同。在每个块中,我们在 24 个等偏心位置中的 4 个位置上测量了刺激 SF 的性能。我们估计了每个位置的 75%-正确 SF 阈值、SF 截止点(即机会水平)和心理物理函数的斜率。我们发现水平方向的 SF 估计值(即更好的视力)高于垂直子午线,下方的 SF 估计值高于上方的垂直子午线。这些不对称性在主子午线处最为明显,随着与垂直子午线的角度距离增加而逐渐减小。这种随着极角的视力变化反映了心理物理函数的移位,而斜率没有变化。在双眼和单眼观察条件下都发现了相同的模式。这些发现提高了我们对视野周围视觉处理的理解,并有助于约束视觉感知模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e18c/7794272/06d9f8c0ca77/jovi-21-1-2-f001.jpg

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