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Parametric Alpha- and Beta-Band Signatures of Supramodal Numerosity Information in Human Working Memory

机译:人工作记忆中超峰态色度信息的参量Alpha和Beta带特征

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摘要

Numerosity can be assessed by analog estimation, similar to a continuous magnitude, or by discrete quantification of the individual items in a set. While the extent to which these two processes rely on common neural mechanisms remains debated, recent studies of sensory working memory (WM) have identified an oscillatory signature of continuous magnitude information, in terms of quantitative modulations of prefrontal upper beta activity (20–30 Hz). Here, we examined how such parametric oscillatory WM activity may also reflect the abstract assessment of the numerosity of discrete items. We recorded EEG while participants (n = 24) processed the number of stimulus pulses presented in the visual, auditory, or tactile modality, under otherwise identical experimental conditions. Behavioral response profiles showed varying degrees of analog estimation and of discretized quantification in the different modalities. During sustained processing in WM, the amplitude of posterior alpha oscillations (8–13 Hz) reflected the increased memory load associated with maintaining larger sets of discrete items. In contrast, earlier numerosity-dependent modulations of right prefrontal upper beta (20–30 Hz) specifically reflected the extent to which numerosity was assessed by analog estimation, both between and within presentation modalities. Together, the analog approximation—but not the discretized representation—of numerosity information exhibited a parametric oscillatory signature akin to a continuous sensory magnitude. The results suggest dissociable oscillatory mechanisms of abstract numerosity integration, at a supramodal processing stage in human WM.
机译:可以通过类似于连续量级的模拟估算或通过离散量化一组中的单个项目来评估浊度。尽管这两个过程在多大程度上依赖于常见的神经机制尚存争议,但最近的感觉工作记忆(WM)研究已经从连续的额前信息的定量调制(20-30 Hz )。在这里,我们检查了这种参数振荡WM活动如何也可以反映对离散项目的数量的抽象评估。我们记录了脑电图,而参与者(n = 24)在其他相同的实验条件下处理了视觉,听觉或触觉方式中出现的刺激脉冲数。行为反应概况显示出不同程度的模拟估计和离散量化程度不同。在WM中进行持续处理期间,后α振荡的幅度(8–13 Hz)反映了与维护较大的离散项目集相关的增加的内存负载。相比之下,较早的依赖于数字表达的右前额上半部(20–30 Hz)调制特别反映了呈现方式之间和之内通过模拟估计评估数字表达的程度。总的来说,数字信息的模拟近似(但不是离散表示)表现出类似于连续感官幅度的参数振荡特征。结果表明,在人类WM的超模态处理阶段,抽象数字积分的可解振荡机制。

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