Styles T, Flanagan J G
School of Optometry, University of Waterloo, Ontario, Canada.
Ophthalmic Physiol Opt. 1989 Oct;9(4):405-10.
It is well established that a large variety of psychophysical factors influence the critical flicker fusion frequency (CFF). Several recent studies have examined the relationship between CFF and retinal location with confounding and contradictory results. The aim of this study was to determine the CFF for a number of stimulus sizes and luminances in an attempt to evaluate the interactive effects of these parameters and the quadrantic variation in temporal sensitivity. Retinal sensitivity gradients were measured along the two major oblique meridians out to an eccentricity of 50 degrees. CFF profiles for the 1.724 and 0.431 degree targets were shown to decrease with increasing eccentricity more rapidly in the inferior nasal quadrant (superior temporal retina). No significant difference between superior and inferior visual field temporal processing was evident.
众所周知,多种心理物理因素会影响临界闪烁融合频率(CFF)。最近的几项研究探讨了CFF与视网膜位置之间的关系,但结果相互矛盾且存在混淆。本研究的目的是确定多种刺激大小和亮度下的CFF,以评估这些参数的交互作用以及时间敏感性的象限变化。沿着两条主要的斜子午线测量视网膜敏感度梯度,直至偏心度达到50度。结果显示,对于1.724度和0.431度的目标,在下鼻象限(颞上视网膜),CFF曲线随偏心度增加而下降的速度更快。上视野和下视野的颞部处理之间没有明显差异。