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The mechanisms of collinear integration

机译:共线整合的机制

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Low-contrast visual contour fragments are easier to detect when presented in the context of nearby collinear contour elements (U. Polat & D. Sagi, 1993). The spatial and temporal determinants of this collinear facilitation have been studied extensively (J. R. Cass & B. Spehar, 2005; Y. Tanaka & D. Sagi, 1998; C. B. Williams & R. F. Hess, 1998), although considerable debate surrounds the neural mechanisms underlying it. Our study examines this question using a novel stimulus, whereby the flanking "contour" elements are rotated around their own axis. By measuring contrast detection thresholds to a brief foveal target presented at various phases of flanker rotation, we find peak facilitation after flankers have rotated beyond their collinear phase. This optimal facilitative delay increases monotonically as a function of target–flanker separation, yielding estimates of cortical propagation of 0.1 m/s, a value highly consistent with the dynamics of long-range horizontal interactions observed within primary visual cortex (V1). A curious new finding is also observed: Facilitative peaks also occur when the target flash precedes flanker collinearity by 20–80 ms, a range consistent with contrast-dependent cortical onset latencies. Together, these data suggest that collinear facilitation involves two separate mechanisms, each possessing distinct dynamics: (i) slowly propagating horizontal interactions within V1 and (ii) a faster integrative mechanism, possibly driven by synchronous collinear cortical onset.
机译:当在附近的共线轮廓元素中显示低对比度的视觉轮廓片段时,更易于检测(U. Polat&D. Sagi,1993)。共线促进的时空决定因素已被广泛研究(JR Cass和B. Spehar,2005; Y。Tanaka和D. Sagi,1998; CB Williams和RF Hess,1998),尽管围绕神经机制的争论颇多。它。我们的研究使用一种新颖的刺激方法来研究这个问题,从而使侧面的“轮廓”元素绕其自身的轴旋转。通过测量侧翼旋转各个阶段出现的短暂中央凹目标的对比检测阈值,我们发现侧翼旋转超过共线相位后峰值促进作用。最佳促成性延迟随靶标-侧翼间隔的变化而单调增加,估计皮层传播为0.1 m / s,该值与在初级视皮层(V1)内观察到的远程水平相互作用的动力学高度一致。还观察到一个有趣的新发现:当目标闪光在侧翼共线性之前20-80 ms时,也会出现促进峰,该范围与对比度相关的皮质发作潜伏期一致。总之,这些数据表明共线促进涉及两种独立的机制,每种机制具有不同的动力学:(i)在V1内缓慢传播水平相互作用,以及(ii)可能由同步共线皮质发作驱动的更快的整合机制。

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