首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >High-resolution lesion-mapping strategy links a hot spot in rat insular cortex with impaired expression of taste aversion learning
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High-resolution lesion-mapping strategy links a hot spot in rat insular cortex with impaired expression of taste aversion learning

机译:高分辨率的病灶映射策略将大鼠岛状皮质的热点与味觉学习障碍的表达联系起来

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摘要

Gustatory cortex (GC), an assemblage of taste-responsive neurons in insular cortex, is widely regarded as integral to conditioned taste aversion (CTA) retention, a link that has been primarily established using lesion approaches in rats. In contrast to this prevailing view, we found that even the most complete bilateral damage to GC produced by ibotenic acid was insufficient to disrupt postsurgical expression of a presurgical CTA; nor were such lesions sufficient to disrupt postsurgical acquisition and initial expression of a second CTA. However, some rats with lesions were significantly impaired on these tests. Further examination of all conditioned rats with lesions, regardless of the lesion topography, revealed a significant positive association between damage in the posterior portion of GC and especially within adjacent posterior regions of insular cortex. Accordingly, we developed a high-resolution lesion-mapping program that permitted the overlay of the individual lesion maps from rats with CTA impairments to produce a groupwise aggregate lesion map. Comparison of this map with one derived from the unimpaired counterparts indicated a specific lesion “hot spot” associated with CTA deficits that included the most posterior end of GC and overlying granular layer and encompassed an area provisionally referred to in the literature as visceral cortex. Thus, the detailed mapping of the lesion in behaviorally defined subgroups of rats allowed us to exploit the variability in performance to uncloak an important potential component of the functional topography of insular cortex; such an approach could have general applicability to other brain structure–function endeavors as well.
机译:味觉皮层(GC)是岛状皮层中味觉响应神经元的集合,被广泛认为是条件性味觉厌恶(CTA)保留的组成部分,条件性味觉厌恶(CTA)保留主要是使用大鼠的病变方法建立的。与这种普遍观点相反,我们发现,即使是由ibotenic acid产生的对GC的最完全的双边损害也不足以破坏术前CTA的术后表达。这样的病变也不足以破坏术后的获取和第二个CTA的初始表达。但是,一些有损伤的大鼠在这些测试中明显受损。进一步检查所有有条件的有病变的大鼠,无论病变的地形如何,都显示GC后部的损伤,特别是岛状皮层的相邻后部区域的损伤之间存在显着的正相关。因此,我们开发了一种高分辨率的病灶映射程序,该程序允许CTA损伤大鼠的单个病灶图进行叠加,以生成成组的总病灶图。将该图谱与未受损的对应图谱进行的比较表明,与CTA缺陷相关的特定病变“热点”包括GC的最后端和上覆的颗粒层,并涵盖了文献中临时称为内脏皮层的区域。因此,在行为定义的亚组中对病变进行详细的定位,使我们能够利用表现的可变性来隐瞒岛状皮层功能性地形的重要潜在组成部分。这种方法也可能普遍适用于其他大脑结构-功能方面的努力。

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