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Estimation of encoding of pictorial stimuli from visually evoked magnetic fields

机译:从视觉诱发磁场估计图形刺激的编码

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Magnetic fields were recorded from human subjects during the performance of a 1-back recognition short-term memory task with pictorial stimuli using a whole-head neuromagnetometer. In the memory condition the subjects were required to respond to the same stimuli and memorize the presented pictures for a short period of time, in control condition to respond to all stimuli and not memorize the picture. Magnetic event-related fields (MEFs) were computed and analyzed to reveal information about the encoding process of pictorial stimuli in short-term memory. Based on comparative MEFs analysis between conditions and behavioral response times, the encoding process for pictorial stimuli in this particular memory task was estimated at an interval with peaking activity around 500-550 ms from the stimulus presentation onset. Equivalent current dipoles (ECDs) were fitted to localize the brain sources related to visual information processing and the encoding process. A dipole located in the left anterior medial temporal lobe was estimated as an important source underlying encoding activity.
机译:在使用全头神经元计的图像刺激的1背识别短期记忆任务的性能期间,从人类受试者记录磁场。在内存条件中,需要对象来响应相同的刺激并在短时间内记住所呈现的图片,控制条件以响应所有刺激而不是记忆图像。计算和分析磁事件相关的字段(MEF)以揭示短期内存中图形刺激编码过程的信息。基于条件和行为响应时间之间的比较MEFS分析,在该特定存储器任务中的图像刺激的编码过程以与刺激呈现发作的峰值活动约为500-550ms的间隔估计。等效电流偶极子(ECD)被装配以定位与视觉信息处理相关的大脑来源和编码过程。位于左侧内侧颞叶中的偶极子被估计为重要的编码活动。

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