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Parietal alpha-based inhibitory abilities are causally linked to numerosity discrimination

机译:基于alpha的基于alpha的抑制能力因数量辨别而导致

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Processing numerosities relies on the innate capacity to understand and manipulate the number of items in a set, and to additional abilities such as inhibitory skills -which are known to be linked to brain oscillations in the alpha range. Whether these inhibitory skills are causally linked to numerosity processing and critical for it is unclear. To address this question, we used alpha-based brain stimulation (transcranial alternate current stimulation, tACS) to target inhibitory abilities in the context of numerosity discrimination. Twenty-nine young adults received bilateral tACS to the parietal lobe, a brain region critical for numerical processes. tACS at target (alpha, 10 Hz), control oscillation frequencies (theta, 4 Hz; beta, 22 Hz; sham, no stimulation), and control areas (bilateral frontal regions) was paired to an established numerosity paradigm that allows distinguishing between congruent and incongruent numerosity trials, the latter requiring to inhibit task-irrelevant information. Performance significantly and specifically worsened in incongruent numerosity trials following bilateral parietal alpha-tACS relative to sham and to the other stimulations used, possibly due to the desynchronization of parietal neuronal oscillations in the alpha range. No significant changes in performance were observed in parietal beta and theta-tACS, relative to sham, nor in frontal alpha-tACS. Likewise, there were no changes in performing congruent numerosity trials. We therefore concluded that parietal alpha oscillations are causally linked to inhibitory abilities, and reinforced the view that these abilities are intrinsic to numerosity discrimination.
机译:处理符号依赖于理解和操作集合中的物品数量的先天能力,并且已知抑制技能如抑制技能的额外能力与alpha范围内的脑振荡相关联。这些抑制技能是否因数量与数量加工而导致和临界尚不清楚。为了解决这个问题,我们使用基于α的脑刺激(经颅交替电流刺激,TAC)来针对数量鉴别的背景下靶向抑制能力。二十九岁的年轻成年人接受了双侧TACS到顶瓣,一个脑区域对数值过程至关重要。目标(α,10Hz),控制振荡频率(Theta,4 Hz; Beta,22Hz;假,无刺激)和控制区域(双侧正面区域)与允许区分一致的数量范式和不一致的数量试验,后者需要抑制任务 - 无关的信息。在相对于假手术和用于其他刺激之后的双侧间α-TAC后,在双边间α-TAC术后的不一致性试验中的性能显着且可能是由于α范围中的顶视神经元振荡的去同步。在Paretal Beta和Theta-TAC中没有观察到性能的显着变化,相对于假,也不是正面α-TAC。同样,在表演的一致性试验方面没有变化。因此,我们得出结论,顶尖α振荡因抑制能力而导致与抑制能力有关,并加强了这些能力是具有数值鉴别的内在鉴别。

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