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首页> 外文期刊>Acta neurobiologiae experimentalis >Lesions of the lateral entorhinal cortex disrupt non-spatial latent learning but spare spatial latent learning in the rat (Rattus norvegicus)
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Lesions of the lateral entorhinal cortex disrupt non-spatial latent learning but spare spatial latent learning in the rat (Rattus norvegicus)

机译:外侧内嗅皮层的病变破坏了大鼠的非空间潜伏学习,但多余的空间潜伏学习(Rattus norvegicus)

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The current study examined the function of the lateral entorhinal cortex (LEC) in a non-spatial latent learning task and a spatial latent learning task. Latent learning is the acquisition of neutral information that does not immediately influence behavior, but can be recalled and utilized when it becomes relevant to the animal. Based on previous research, it was predicted that the LEC would be necessary for latent learning of non-spatial information, but would not be necessary for latent learning of spatial information. Forty-two male Sprague Dawley rats (Rattus norvegicus) were either given pretraining neurotoxic lesions restricted to the LEC or were given sham (SH) lesions. The rats were then trained and tested on two latent learning tasks: the Latent Cue Preference (LCP) task which assesses single-cue (non-spatial) latent learning and a spatial latent learning task utilizing a Barnes maze. Results showed that rats with LEC lesions were impaired on the nonspatial LCP task compared to SH rats, but showed no impairment on the spatial latent learning task. Therefore, the LEC appears to be selectively involved in processing non-spatial latent learning and does not process, or is at least not necessary for, spatial latent learning. These findings indicate a specific role of the LEC in information processing and provide new information about the function of the entorhinal cortex.
机译:当前的研究检查了外侧内嗅皮层(LEC)在非空间潜在学习任务和空间潜在学习任务中的功能。潜在学习是获取中性信息,该信息不会立即影响行为,但是可以在与动物相关时重新调用和利用。根据以前的研究,预计LEC对于潜在学习非空间信息将是必需的,但对于潜在学习空间信息将不是必需的。 42只雄性Sprague Dawley大鼠(Rattus norvegicus)接受了仅限于LEC的预训练神经毒性损伤,或接受了假(SH)损伤。然后在两个潜在学习任务上对大鼠进行训练和测试:评估单个提示(非空间)潜在学习的潜在提示偏好(LCP)任务和使用Barnes迷宫的空间潜在学习任务。结果显示,与SH大鼠相比,具有LEC病变的大鼠在非空间LCP任务上受损,但在空间潜伏学习任务上未显示任何损伤。因此,LEC似乎选择性地参与了处理非空间潜伏学习的过程,并且不处理空间潜伏学习,或者至少对于空间潜伏学习不是必需的。这些发现表明LEC在信息处理中的特定作用,并提供有关内嗅皮质功能的新信息。

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