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首页> 外文期刊>Vision Research: An International Journal in Visual Science >Relation between fixation disparity and the asymmetry between convergent and divergent disparity step responses.
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Relation between fixation disparity and the asymmetry between convergent and divergent disparity step responses.

机译:固定视差与收敛视差阶跃响应和发散视差阶跃响应之间的不对称之间的关系。

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摘要

The neural network model of Patel et al. [Patel, S. S., Jiang, B. C., & Ogmen, H. (2001). Vergence dynamics predict fixation disparity. Neural Computation, 13(7), 1495-1525] predicts that fixation disparity, the vergence error for a stationary fusion stimulus, is the result of asymmetrical dynamic properties of disparity vergence mechanisms: faster (slower) convergent than divergent responses give rise to an eso (exo) fixation disparity, i.e., over-convergence (under-convergence) in stationary fixation. This hypothesis was tested in the present study with an inter-individual approach: in 16 subjects we estimated the vergence step response to a 1deg disparity stimulus with a subjective nonius procedure. Dichoptic nonius lines were flashed for 100ms with various amounts of delay after the disparity step stimulus (0, 100, 200, 300, 400, and 1000ms). Measured fixation disparity was significantly correlated with the prediction of Patel et al. (2001) based on the asymmetry in convergent and divergent vergence velocity (r=.7, n=14), which explained about 50% (r(2)) of the inter-individual variability in fixation disparity. All subjects with an exo fixation disparity (i.e., static under-convergence) had a weaker dynamic response for convergent than for divergent step stimuli. This confirms a relation between static vergence and asymmetric dynamic vergence, which both are idiosyncratic vergence parameters.
机译:Patel等人的神经网络模型。 [Patel,S. S.,Jiang,B. C.,&Ogmen,H.(2001)。融合动力学预测注视差异。 [Neural Computation,13(7),1495-1525]预测,固定差异(固定融合刺激的融合误差)是差异融合机制的不对称动态特性的结果:收敛速度快于收敛响应(较慢) eso(exo)固定差异,即固定固定中的过度收敛(收敛不足)。该假设在本研究中使用个体间方法进行了测试:在16名受试者中,我们通过主观nonius程序估计了对1度视差刺激的收敛阶跃响应。视差阶跃刺激后(0、100、200、300、400和1000ms),两极非连续线以各种延迟量闪烁100ms。测得的固定差异与Patel等人的预测显着相关。 (2001年)基于收敛和发散速度的不对称性(r = .7,n = 14),这解释了固定差异中个体间差异的50%(r(2))。具有固定外视差(即静态欠收敛)的所有受试者对收敛的动态响应比对发散的步进刺激的动态响应更弱。这证实了静态聚散度和非对称动态聚散度之间的关系,它们都是特有的聚散度参数。

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