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Representation of 3-Dimenstional Objects by the Rat Perirhinal Cortex

机译:大鼠Perirhinal皮层的三维物体表示

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摘要

The perirhinal cortex (PRC) is known to play an important role in object recognition. Little is known, however, regarding the activity of PRC neurons during the presentation of stimuli that are commonly used for recognition memory tasks in rodents, that is, 3-dimensional objects. Rats in the present study were exposed to 3-dimensional objects while they traversed a circular track for food reward. Under some behavioral conditions the track contained novel objects, familiar objects, or no objects. Approximately 38% of PRC neurons demonstrated ‘object fields’ (a selective increase in firing at the location of one or more objects). Although the rats spent more time exploring the objects when they were novel compared to familiar, indicating successful recognition memory, the proportion of object fields and the firing rates of PRC neurons were not affected by the rats’ previous experience with the objects. Together these data indicate that the activity of PRC cells is powerfully affected by the presence of objects while animals navigate through an environment, but under these conditions, the firing patterns are not altered by the relative novelty of objects during successful object recognition.
机译:众所周知,周围神经皮层(PRC)在物体识别中起着重要作用。然而,关于在刺激的呈现期间PRC神经元的活动知之甚少,刺激通常用于啮齿动物即3维物体的识别记忆任务。本研究中的老鼠在穿越圆形轨道以获得食物奖励时暴露于3维物体。在某些行为条件下,轨道包含新颖的物体,熟悉的物体或没有物体。大约38%的PRC神经元表现出“物场”(在一个或多个物体位置发射的选择性增加)。尽管与熟悉的老鼠相比,它们在新颖时耗费了更多的时间探索物体,这表明它们具有成功的识别记忆能力,但是物体场的比例和PRC神经元的放电速度不受大鼠先前对物体的体验的影响。这些数据加在一起表明,PRC细胞的活性受动物在环境中航行时物体的存在的强烈影响,但是在这些条件下,成功识别物体的过程中,发射方式不会因物体的相对新颖性而改变。

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