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Stage and load effects on ERP topography during verbal and spatial working memory

机译:言语和空间工作记忆中阶段和负载对ERP地形的影响

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摘要

Frontal-parietal neural networks play a significant role in the functional organization of visual working memory (WM). The relative contribution of material-specific information (e.g., verbal or spatial) on activation of WM circuitry is not fully understood. Process-specific models of WM propose that the activation of WM circuitry is more dependent on the stage of WM than on the type of information being processes. This study investigated the effects of WM information type (verbal, spatial), stage (encoding, maintenance), and load on both the anterior–posterior topography and lateralized scalp distributions of the event-related potential (ERP) P3 amplitude. Seventeen young adults performed verbal and spatial tasks that were equated for stimulus properties and response requirements. Both tasks were presented under 1- and 3-load conditions. The anterior–posterior topography of P3 amplitude at left hemisphere, midline, and right hemisphere scalp locations was affected by the stage of WM and the memory load, but not by the type of information. The encoding stage showed minimal load effects and was associated with a posterior-maximum P3 amplitude distribution. During the maintenance stage, probe letters were presented that were irrelevant to the previously encoded stimuli. Here, higher WM load produced relatively greater frontal and reduced parietal P3 amplitude compared to lower WM load. These anterior–posterior P3 amplitude patterns for encoding and maintenance were similar at left, midline, and right locations. Within the limitations of the study, our results tend to support a process-dependent activation of WM circuits in that P3 amplitude topography only differed as a result of WM stage and load, and not as a result of the type of information (verbal or spatial) presented.
机译:额顶神经网络在视觉工作记忆(WM)的功能组织中起着重要作用。尚未完全了解材料特定信息(例如,言语或空间)对激活WM电路的相对贡献。 WM的特定于流程的模型提出,WM电路的激活更多地取决于WM的阶段,而不是取决于所处理信息的类型。这项研究调查了WM信息类型(语言,空间),阶段(编码,维护)和负载对事件相关电位(ERP)P3振幅的前后地形和侧向头皮分布的影响。 17名年轻人执行了相当于刺激特性和反应要求的口头和空间任务。两项任务均在1和3负载条件下提出。左半球,中线和右半球头皮位置的P3振幅的前后位置受WM的阶段和记忆负荷的影响,但不受信息类型的影响。编码阶段显示出最小的负载影响,并且与后最大P3振幅分布相关。在维护阶段,提出了与先前编码的刺激无关的探针字母。在此,与较低的WM负载相比,较高的WM负载会产生相对较大的额叶前额和减小的壁顶P3振幅。这些用于编码和维持的前后P3振幅模式在左侧,中线和右侧位置相似。在研究的局限范围内,我们的结果倾向于支持WM电路的过程相关激活,因为P3振幅形貌仅是由于WM阶段和负载而不同,而不是由于信息类型(语言或空间信息)引起的) 提出了。

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