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Role of anterior piriform cortex in the acquisition of conditioned flavour preference

机译:梨状前皮质在获得习性风味偏爱中的作用

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摘要

Flavour aversion learning (FAL) and conditioned flavour preference (CFP) facilitate animal survival and play a major role in food selection, but the neurobiological mechanisms involved are not completely understood. Neuroanatomical bases of CFP were examined by using Fos immunohistochemistry to record neuronal activity. Rats were trained over eight alternating one-bottle sessions to acquire a CFP induced by pairing a flavour with saccharin (grape was CS+ in Group 1; cherry in Group 2; in Group 3, grape/cherry in half of animals; Group 4, grape/cherry in water). Animals were offered the grape flavour on the day immediately after the training and their brains were processed for c-Fos. Neurons evidencing Fos-like immunoreactivity were counted in the infralimbic cortex, nucleus accumbens core, and anterior piriform cortex (aPC). Analysis showed a significantly larger number of activated cells after learning in the aPC alone, suggesting that the learning process might have produced a change in this cortical region. Ibotenic lesions in the aPC blocked flavour-taste preference but did not interrupt flavour-toxin FAL by LiCl. These data suggest that aPC cells may be involved in the formation of flavour preferences and that the integrity of this region may be specifically necessary for the acquisition of a CFP.
机译:风味厌恶学习(FAL)和条件风味偏好(CFP)有助于动物存活并在食物选择中起主要作用,但是涉及的神经生物学机制尚未完全了解。通过使用Fos免疫组织化学检查记录神经元活动来检查CFP的神经解剖基础。对大鼠进行了八次交替的一瓶训练,以获取通过将调味剂与糖精配对而诱导的CFP(第1组葡萄为CS +;第2组葡萄为樱桃;在第3组中,一半动物的葡萄/樱桃;第4组葡萄/樱桃在水中)。训练后的第二天,为动物提供葡萄味,并对其大脑进行c-Fos处理。在下肢皮质,伏隔核核心和梨状前皮质(aPC)中对表现出Fos样免疫反应性的神经元进行计数。分析表明,仅在aPC中学习后,活化细胞的数量就明显增多,这表明学习过程可能在此皮质区域产生了变化。 aPC中的植物学病变阻止了风味口味的偏好,但并未中断LiCl的风味毒素FAL。这些数据表明,aPC细胞可能参与风味偏好的形成,并且该区域的完整性对于获取CFP可能是特别必要的。

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