Howard I P, Allison R S, Zacher J E
Centre for Vision Research, York University, Ontario, Canada.
Exp Brain Res. 1997 Aug;116(1):153-9. doi: 10.1007/pl00005735.
We measured the gain and phase of vertical vergence in response to disjunctive vertical oscillations of dichoptic textured displays. The texture elements were m-scaled to equate visibility over the area of the display and were aperiodic and varied in shape so as to avoid spurious binocular matches. The display subtended 65 degrees and oscillated through peak-to-peak amplitudes from 18 arc min to 4 degrees at frequencies from 0.05 to 2 Hz - larger ranges than used in previous investigations. The gain of vergence was near 1 when the stimulus oscillated at 18 arc min at a frequency of 0.1 Hz or less. As the amplitude of stimulus oscillation increased from 18 arc min to 4 degrees, vergence gain decreased at all frequencies, which is evidence of a nonlinearity. Gain declined with increasing stimulus frequency but was still about 0.5 at 2 Hz for an amplitude of 18 arc min. Phase lag increased from less than 10 degrees at a stimulus frequency of 0.05 Hz to between 100 degrees and 145 degrees at 2 Hz. Overall, the dynamics of vertical vergence resemble the dynamics of horizontal vergence and cyclovergence.
我们测量了在双眼视差纹理显示器的分离垂直振荡刺激下垂直聚散的增益和相位。纹理元素经过m尺度缩放,以使显示器区域内的可见度相等,且为非周期性且形状各异,以避免虚假的双眼匹配。显示器张角为65度,在0.05至2赫兹的频率下,峰峰值振幅从18角分振荡至4度——范围比之前的研究更大。当刺激以0.1赫兹或更低频率在18角分振荡时,聚散增益接近1。随着刺激振荡幅度从18角分增加到4度,在所有频率下聚散增益均下降,这是非线性的证据。增益随刺激频率增加而下降,但对于18角分的振幅,在2赫兹时仍约为0.5。相位滞后从0.05赫兹刺激频率下的小于10度增加到2赫兹时的100度至145度之间。总体而言,垂直聚散的动力学类似于水平聚散和旋转聚散的动力学。