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High-capacity, transient retention of direction-of-motion information for multiple moving objects

机译:大容量,瞬时保留多个移动物体的运动方向信息

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The multiple-object tracking paradigm (MOT) has been used extensively for studying dynamic visual attention, but the basic mechanisms which subserve this capability are as yet unknown. Among the unresolved issues surrounding MOT are the relative importance of motion (as opposed to positional) information and the role of various memory mechanisms. We sought to quantify the capacity and dynamics for retention of direction-of-motion information when viewing a multiple-object motion stimulus similar to those used in MOT. Observers viewed three to nine objects in random linear motion and then reported motion direction after motion ended. Using a partial-report paradigm and varying the parameters of set size and time of retention, we found evidence for two complementary memory systems, one transient with high capacity and a second sustained system with low capacity. For the transient high-capacity memory, retention capacity was equally high whether object motion lasted several seconds or a fraction of a second. Also, a graded deterioration in performance with increased set size lends support to a flexible-capacity theory of MOT.
机译:多目标跟踪范例(MOT)已被广泛用于研究动态视觉注意,但是尚不知道支持这种能力的基本机制。围绕MOT尚未解决的问题包括运动(相对于位置)信息的相对重要性以及各种存储机制的作用。当查看类似于MOT中使用的多对象运动刺激时,我们试图量化保留运动方向信息的能力和动力学。观察者以随机线性运动观察了三到九个对象,然后在运动结束后报告了运动方向。使用部分报告范式并更改设置大小和保留时间的参数,我们发现了两个互补存储系统的证据,一个是高容量的瞬态,另一个是低容量的持续性系统。对于瞬态大容量存储器,无论对象运动持续几秒钟或几分之一秒,保留容量都同样高。而且,随着设备尺寸的增加,性能的逐级降低也为MOT的灵活容量理论提供了支持。

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