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Context-specific differences in fronto-parieto-occipital effective connectivity during short-term memory maintenance

机译:短期记忆维持过程中额顶枕有效连接的上下文特定差异

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摘要

Although visual short-term memory (VSTM) performance has been hypothesized to rely on two distinct mechanisms, capacity and filtering, the two have not been dissociated using network-level causality measures. Here, we hypothesized that behavioral tasks challenging capacity or distraction filtering would both engage a common network of areas, namely dorsolateral prefrontal cortex (dlPFC), superior parietal lobule (SPL), and occipital cortex, but would do so according to dissociable patterns of effective connectivity. We tested this by estimating directed connectivity between areas using conditional Granger causality (cGC). Consistent with our prediction, the results indicated that increasing mnemonic load (capacity) increased the top-down drive from dlPFC to SPL, and cGC in the alpha (8−14 Hz) frequency range was a predominant component of this effect. The presence of distraction during encoding (filtering), in contrast, was associated with increased top-down drive from dlPFC to occipital cortices directly and from SPL to occipital cortices directly, in both cases in the beta (15−25Hz) range. Thus, although a common anatomical network may serve VSTM in different contexts, it does so via specific functions that are carried out within distinct, dynamically configured frequency channels.
机译:尽管已假设视觉短期记忆(VSTM)性能依赖于两个不同的机制(容量和过滤),但尚未使用网络级因果关系度量来分离这两种机制。在这里,我们假设挑战能力或分散注意力过滤的行为任务都将涉及一个共同的区域网络,即背外侧前额叶皮层(dlPFC),顶叶小叶(SPL)和枕叶皮层,但会根据有效的可分离模式进行连接性。我们通过使用条件格兰杰因果关系(cGC)估计区域之间的定向连通性来对此进行测试。与我们的预测一致,结果表明,助记符负载(容量)的增加使自上而下的驱动力从dlPFC到SPL,而在α(8-14 Hz)频率范围内的cGC是此效应的主要组成部分。相比之下,在两种情况下,在beta(15-25Hz)范围内,在编码(过滤)过程中分散注意力的存在与从dlPFC直接到枕叶皮质和从SPL直接到枕叶皮质的自上而下的驱动增加有关。因此,尽管公共解剖网络可以在不同的上下文中为VSTM服务,但它是通过在不同的动态配置的频道中执行的特定功能来实现的。

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