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The lower bounds of massive memory: Investigating memory for object details after incidental encoding

机译:大规模存储器的下限:在附带编码后调查物体细节的内存

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摘要

Visual long-term memory capacity appears massive and detailed when probed explicitly. In the real world, however, memories are usually built from chance encounters. Therefore, we investigated the capacity and detail of incidental memory in a novel encoding task, instructing participants to detect visually distorted objects among intact objects. In a subsequent surprise recognition memory test, lures of a novel category, another exemplar, the same object in a different state, or exactly the same object were presented. Lure recognition performance was above chance, suggesting that incidental encoding resulted in reliable memory formation. Critically, performance for state lures was worse than for exemplars, which was driven by a greater similarity of state as opposed to exemplar foils to the original objects. Our results indicate that incidentally generated visual long-term memory representations of isolated objects are more limited in detail than recently suggested.
机译:显式探测时,视觉长期内存容量出现巨大且详细。 然而,在现实世界中,记忆通常是由机会遭遇而建造的。 因此,我们调查了新颖的编码任务中附带内存的能力和细节,指示参与者在完整对象之间检测视觉扭曲的对象。 在随后的令人惊喜识别存储器测试中,呈现新类别的诱惑,另一个示例,在不同状态下的相同对象,或者完全相同的对象。 Lure识别性能超过机会,表明偶然编码导致可靠的记忆形成。 批判性地,状态诱导的性能比示例性更差,其由与原始物体的示例性箔相对的状态更大的状态驱动。 我们的结果表明,偶然生成的隔离物体的视觉长期记忆表示比最近建议更有限。

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