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Electrophysiological correlates of deficient encoding in a case of post-anoxic amnesia.

机译:在缺氧后遗忘症中编码不足的电生理相关性。

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Little is known about the initial stages of information processing in amnesia as compared to normal memory. In this study, we used electrical spatiotemporal mapping to compare cortical activation during encoding and recognition in a 56-year-old patient with severe, chronic post-anoxic amnesia and an age-matched control group. Event-related potentials were recorded as the subjects performed a continuous recognition task composed of meaningful designs. Activation in the control group rapidly progressed through eight different electrocortical configurations over 700 ms after onset of new stimuli. In contrast, activation in the amnesic patient was highly monotonous: it showed varying electrocortical patterns only during the first 150 ms but then remained abnormally stable for the remainder of the analysed time window. Electrical source localisation revealed that the patient failed to activate distributed cortical networks and that his processing was confined to visual areas. The present study suggests thatthe rapid activation of distributed cortical networks is critical for efficient encoding.
机译:与正常记忆相比,对健忘症中信息处理的初始阶段知之甚少。在这项研究中,我们使用电时空图比较了56岁重度,慢性缺氧后健忘症患者和年龄匹配的对照组在编码和识别期间的皮质激活。当受试者执行由有意义的设计组成的连续识别任务时,记录与事件相关的电位。在新刺激开始后的700毫秒内,对照组中的激活通过八种不同的皮质皮质构造迅速进行。相比之下,健忘症患者的激活高度单调:仅在前150毫秒内显示出变化的电皮层模式,但随后在所分析的时间范围内保持异常稳定。电源的本地化显示该患者未能激活分布式皮层网络,并且其处理仅限于视觉区域。本研究表明,分布式皮质网络的快速激活对于有效编码至关重要。

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