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首页> 外文期刊>Vision Research: An International Journal in Visual Science >Flanker effects in peripheral contrast discrimination--psychophysics and modeling.
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Flanker effects in peripheral contrast discrimination--psychophysics and modeling.

机译:边缘对比度判别中的侧翼效应-心理物理学和建模。

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We studied lateral interactions in the periphery by measuring how contrast discrimination of a peripheral Gabor patch is affected by flankers. In the psychophysical experiments, two Gabor targets appeared simultaneously to the left and right of fixation (4 degrees eccentricity). Observers reported which contrast was higher (spatial 2-alternative-forced-choice). In different conditions, Gabor flankers of different orientation, phase, and contrast were present above and below the two targets, at a distance of three times the spatial Gabor period. The data show that collinear flanks impair discrimination performance for low pedestal contrasts but have no effect for high pedestal contrasts. The transition between these two result patterns occurs typically at a pedestal contrast which is similar to the flanker contrast. For orthogonal flanks, we find facilitation at low pedestal contrasts, and suppression at intermediate contrasts. We account for this complex interaction pattern by a model that assumes that flankers can provide additive input to the target unit, and that they further contribute to the target's gain control, but only in a limited range of pedestal contrasts; once the target contrast exceeds a critical value, inhibition becomes subtractive rather than divisive. We further make specific propositions on how this model could be implemented at the neuronal level and show that a simple integrate and fire unit that receives time-modulated inhibition behaves in a fashion strikingly similar to the model inferred from the psychophysical data.
机译:我们通过测量外围Gabor斑块的对比度歧视如何受到侧翼的影响来研究外围的横向相互作用。在心理物理实验中,两个Gabor目标同时出现在注视的左侧和右侧(4度偏心率)。观察者报告了哪种对比更高(空间2替代强迫选择)。在不同条件下,两个目标的上方和下方都存在方向,相位和对比度不同的Gabor侧翼,其距离是空间Gabor周期的三倍。数据显示,共线侧面削弱了低基座对比度的辨别性能,但对高基座对比度没有影响。这两种结果模式之间的过渡通常发生在与侧翼对比度相似的基座对比度下。对于正交的侧面,我们发现在较低的基座对比度下会获得便利,而在中间对比度下会受到抑制。我们通过一个模型来解释这种复杂的交互模式,该模型假定侧翼可以向目标单元提供附加输入,并且它们进一步有助于目标的增益控制,但仅在有限的基座对比度范围内;一旦目标对比度超过临界值,抑制作用将变为消减而非分裂。我们进一步对如何在神经元水平上实现该模型提出了具体的建议,并表明,一个简单的整合和发射单元受到时间调制的抑制,其行为方式与从心理物理数据推断出的模型极为相似。

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