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System reconfiguration, not resource depletion, determines the efficiency of visual search

机译:系统重新配置(而不是资源耗尽)决定了可视搜索的效率

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We examined two theories of visual search: resource depletion, grounded in a static, built-in brain architecture, with attention seen as a limited depletable resource, and system reconfiguration, in which the visual system is dynamically reconfigured from moment to moment so as to optimize performance on the task at hand. In a dual-task paradigm, a search display was preceded by a visual discrimination. task and was followed, after a stimulus onset asynchrony (SOA) governed by a staircase procedure, by a pattern mask. Search efficiency, as indexed by the slope of the function relating critical SOA to number of distractors, was impaired under dual-task conditions for tasks that were performed efficiently (shallow search slope) when done singly, but not for tasks performed inefficiently (steep slope) when done singly. These results are consistent with system reconfiguration, but not with resource depletion, models and point to a dynamic, rather than a static, architecture of the visual system.
机译:我们研究了视觉搜索的两种理论:基于静态内置大脑结构的资源枯竭(将注意力视为有限的可耗尽资源)和系统重新配置,其中视觉系统会不时动态地重新配置,以便优化手头任务的性能。在双任务范例中,搜索显示之前是视觉识别。在通过阶梯程序控制的刺激发作异步(SOA)之后,通过图案遮罩进行跟踪。在双任务条件下,对于单次执行时有效执行的任务(浅搜索斜率),但对于低效率执行的任务(陡峭斜率),在双重任务条件下,搜索效率(通过将关键SOA与干扰因素数量相关的函数的斜率索引)被削弱。 )单独完成时。这些结果与系统重新配置一致,但与资源耗尽,模型不一致,并指向可视系统的动态而非静态架构。

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