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Transcranial magnetic stimulation reveals the content of visual short-term memory in the visual cortex

机译:经颅磁刺激揭示了视觉皮层视觉短时记忆的内容

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摘要

Cortical areas involved in sensory analysis are also believed to be involved in short-term storage of that sensory information. Here we investigated whether transcranial magnetic stimulation (TMS) can reveal the content of visual short-term memory (VSTM) by bringing this information to visual awareness. Subjects were presented with two random-dot displays (moving either to the left or to the right) and they were required to maintain one of these in VSTM. In Experiment 1, TMS was applied over the motion-selective area V5/MT+ above phosphene threshold during the maintenance phase. The reported phosphene contained motion features of the memory item, when the phosphene spatially overlapped with memory item. Specifically, phosphene motion was enhanced when the memory item moved in the same direction as the subjects' V5/MT+ baseline phosphene, whereas it was reduced when the motion direction of the memory item was incongruent with that of the baseline V5/MT+ phosphene. There was no effect on phosphene reports when there was no spatial overlap between the phosphene and the memory item. In Experiment 2, VSTM maintenance did not influence the appearance of phosphenes induced from the lateral occipital region. These interactions between VSTM maintenance and phosphene appearance demonstrate that activity in V5/MT+ reflects the motion qualities of items maintained in VSTM. Furthermore, these results also demonstrate that information in VSTM can modulate the pattern of visual activation reaching awareness, providing evidence for the view that overlapping neuronal populations are involved in conscious visual perception and VSTM.
机译:还认为与感觉分析有关的皮质区域也与该感觉信息的短期存储有关。在这里,我们研究了经颅磁刺激(TMS)是否可以通过将这些信息带入视觉意识来揭示视觉短期记忆(VSTM)的内容。向受试者显示两个随机点显示(向左或向右移动),并且要求他们在VSTM中保持其中之一。在实验1中,在维护阶段将TMS应用于高于磷阈值的运动选择区域V5 / MT +。当磷光体在空间上与存储项重叠时,报告的磷化氢包含该存储项的运动特征。具体而言,当记忆项目在与受试者的V5 / MT +基准磷烯相同的方向上移动时,运动得到增强,而当记忆项目的移动方向与基准V5 / MT +磷烯的运动方向不一致时,磷运动降低。当磷光体和存储项之间没有空间重叠时,对磷光体报告没有影响。在实验2中,VSTM维护不会影响从枕骨外侧区域诱发的phosph的外观。 VSTM维护和磷外观之间的这些相互作用表明,V5 / MT +中的活动反映了VSTM中维护的项目的运动质量。此外,这些结果还表明,VSTM中的信息可以调节达到意识的视觉激活模式,从而为有重叠的神经元群体参与意识视觉感知和VSTM提供了证据。

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