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首页> 外文期刊>Cerebral cortex >Prefrontal cortex lesions augment the location-related firing properties of area TE/perirhinal cortex neurons in a working memory task.
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Prefrontal cortex lesions augment the location-related firing properties of area TE/perirhinal cortex neurons in a working memory task.

机译:前额叶皮层病变增强了工作记忆任务中区域TE /周围神经皮层神经元的位置相关放电特性。

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It has previously been proposed that prefrontal cortex may have some role in keeping temporal cortex-based representations "on-line" during a working memory task. To test this hypothesis, the effects of electrolytic prefrontal cortex lesions on the firing of area TE and perirhinal cortex (PRC) neurons were examined while rats performed a delayed non-match to position task in the T-maze. The behavioural performance of control (n = 4) and lesioned (n = 4) animals were similar during this task, and many neurons displayed a statistically significant location-related variation in firing rate during the sample (44/56 neurons) and test (39/56 neurons) phases. Units from prefrontal-lesioned animals (82%) were more likely to display a significant variation in firing across the maze compared to controls (50%; P < 0.01), and to have more discrete location-related properties (50% of neurons) compared to the control (5%) group (P < 0.0005). This finding suggests that prefrontal cortex normally modulates the transmission and/or processing of spatial information in area TE/PRC during a working memory task. Modulation could be mediated through direct connections between the structures or via prefrontal control of subcortical structures. This finding has implications for our understanding of prefrontal-temporal involvement in memory and cognitive disorders.
机译:先前已经提出,前额叶皮层在工作记忆任务期间保持基于时间皮层的表示“在线”中可能具有某些作用。为了验证这一假设,研究了大鼠前额叶皮层病变对TE区和周围神经皮层(PRC)神经元放电的影响,同时大鼠在T型迷宫中执行了延迟的不匹配位置任务。在此任务期间,对照组(n = 4)和患病(n = 4)动物的行为表现相似,并且在采样(44/56个神经元)和测试期间,许多神经元的放电速率在统计学上具有显着的位置相关变化( 39/56个神经元)阶段。与对照组(50%; P <0.01)相比,前额病变动物的单位(82%)更有可能在整个迷宫中显示出明显的射击差异,并且具有更多与位置相关的离散属性(50%的神经元)与对照组(5%)组相比(P <0.0005)。这一发现表明,前额叶皮层通常在工作记忆任务期间调节区域TE / PRC中空间信息的传输和/或处理。调节可通过结构之间的直接连接或通过皮层下结构的前额叶控制来介导。这一发现对我们对记忆和认知障碍中额叶颞叶受累的理解具有影响。

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