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Slot-like capacity and resource-like coding in a neural model of multiple-item working memory

机译:在多项工作存储器的神经模型中的插槽相同的容量和资源编码

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For the past decade, research on the storage limitations of working memory has been dominated by two fundamentally different hypotheses. On the one hand, the contents of working memory may be stored in a limited number of "slots," each with a fixed resolution. On the other hand, any number of items may be stored but with decreasing resolution. These two hypotheses have been invaluable in characterizing the computational structure of working memory, but neither provides a complete account of the available experimental data or speaks to the neural basis of the limitations it characterizes. To address these shortcomings. we simulated a multiple-item working memory task with a cortical network model, the cellular resolution of which allowed us to quantify the coding fidelity of memoranda as a function of memory load, as measured by the discriminability, regularity, and reliability of simulated neural spiking. Our simulations account for a wealth of neural and behavioral data from human and nonhuman primate studies, and they demonstrate that feedback inhibition lowers both capacity and coding fidelity. Because the strength of inhibition scales with the number of items stored by the network, increasing this number progressively lowers fidelity until capacity is reached. Crucially, the model makes specific. testable predictions for neural activity on multiple-item working memory tasks.
机译:在过去的十年中,对工作记忆存储局限的研究已经由两个从根本不同的假设主导。一方面,工作存储器的内容可以存储在有限数量的“时隙”中,每个数量具有固定分辨率。另一方面,可以存储任何数量的项目,但是通过降低分辨率。这两个假设在表征工作存储器的计算结构时非常有价值,但既不提供可用的实验数据的完整帐户,或者与其表征的局限性的神经基础说话。解决这些缺点。我们模拟了一种具有皮质网络模型的多项工作存储器任务,其蜂窝分辨率允许我们量化备忘录的编码保真度作为内存负荷的函数,如模拟神经尖刺的辨别性,规则性和可靠性所测量的。我们的模拟占人类和非洲灵长类动物研究的丰富神经和行为数据,他们证明反馈抑制降低了能力和编码保真度。由于抑制力量的强度随网络存储的物品数量,因此增加该数量逐渐降低保真度,直到达到容量。至关重要的是,该模型使得具体。多项工作内存任务对神经活动的可测试预测。

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