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首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Latent inhibition of conditioned taste aversion is not disrupted, but can be enhanced, by selective nucleus accumbens shell lesions in rats.
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Latent inhibition of conditioned taste aversion is not disrupted, but can be enhanced, by selective nucleus accumbens shell lesions in rats.

机译:通过选择性伏隔核对大鼠的皮损,对条件性味觉厌恶的潜在抑制作用不会被破坏,但可以增强。

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摘要

Latent inhibition is a form of negative priming in which repeated non-reinforced pre-exposures to a stimulus retard subsequent learning about the predictive significance of that stimulus. The nucleus accumbens shell and the anatomical projection it receives from the hippocampal formation have been attributed a pivotal role in the control or regulation of latent inhibition expression. A number of studies in rats have demonstrated the efficacy of selective shell lesions to disrupt latent inhibition in different associative learning paradigms, including conditioned active avoidance and conditioned emotional response. Here, we extended the test to the conditioned taste aversion paradigm, in which the effect of direct hippocampal damage on latent inhibition remains controversial. We demonstrated the expected effect of selective shell lesions on latent inhibition of conditioned emotional response and of conditioned active avoidance, before evaluating in a separate cohort of rats the effect of comparable selective lesions on latent inhibition of conditioned taste aversion: a null effect of the lesions was first obtained using parameters known to be sensitive to amphetamine treatment, then an enhancement of latent inhibition was revealed with a modified conditioned taste aversion procedure. Our results show that depending on the associative learning paradigm chosen, shell lesions can disrupt or enhance the expression of latent inhibition; and the pattern is reminiscent of that seen following hippocampal damage.
机译:潜伏抑制是一种负启动的形式,其中对刺激重复进行的非强化预暴露会阻碍后续学习该刺激的预测意义。伏伏核壳及其从海马结构中接收的解剖学投影被认为在潜伏抑制表达的控制或调节中起着关键作用。在大鼠中进行的许多研究表明,选择性壳损破坏了不同联想学习范式中潜在抑制的能力,包括有条件的主动回避和有条件的情绪反应。在这里,我们将测试扩展到条件性厌味范例,其中直接海马损伤对潜伏抑制的影响尚存争议。我们在另一组大鼠中评估了类似的选择性病变对条件味厌恶的潜在抑制的影响之前,我们证明了选择性壳病变对条件性情绪反应和有条件的积极回避的潜在抑制的预期效果:病变的无效影响首先使用已知对苯丙胺处理敏感的参数获得糖,然后通过改良的条件化味觉规避程序揭示潜在抑制的增强。我们的结果表明,根据所选择的联想学习范式,壳损伤可以破坏或增强潜伏抑制的表达。该模式让人联想到海马损伤后的情况。

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