Fournier Danielle I, Cheng Han Yin, Robinson Siobhan, Todd Travis P
Department of Psychological and Brain Sciences, Dartmouth College, Hanover, NH, United States.
Program in Neuroscience, Psychology Department, Hamilton College, Clinton, NY, United States.
Front Behav Neurosci. 2021 May 19;15:682426. doi: 10.3389/fnbeh.2021.682426. eCollection 2021.
In higher-order conditioning paradigms, such as sensory preconditioning or second-order conditioning, discrete (e.g., phasic) or contextual (e.g., static) stimuli can gain the ability to elicit learned responses despite never being directly paired with reinforcement. The purpose of this mini-review is to examine the neuroanatomical basis of high-order conditioning, by selectively reviewing research that has examined the role of the retrosplenial cortex (RSC) in sensory preconditioning and second-order conditioning. For both forms of higher-order conditioning, we first discuss the types of associations that may occur and then review findings from RSC lesion/inactivation experiments. These experiments demonstrate a role for the RSC in sensory preconditioning, suggesting that this cortical region might contribute to higher-order conditioning via the encoding of neutral stimulus-stimulus associations. In addition, we address knowledge gaps, avenues for future research, and consider the contribution of the RSC to higher-order conditioning in relation to related brain structures.
在高阶条件作用范式中,如感觉预条件作用或二级条件作用,离散(如相位性)或情境(如静态)刺激尽管从未直接与强化物配对,但仍能获得引发习得反应的能力。本综述的目的是通过选择性地回顾研究扣带回后皮质(RSC)在感觉预条件作用和二级条件作用中的作用的研究,来探讨高阶条件作用的神经解剖学基础。对于这两种高阶条件作用形式,我们首先讨论可能发生的关联类型,然后回顾RSC损伤/失活实验的结果。这些实验证明了RSC在感觉预条件作用中的作用,表明该皮质区域可能通过对中性刺激-刺激关联的编码来促进高阶条件作用。此外,我们还讨论了知识空白、未来研究的方向,并考虑了RSC与相关脑结构在高阶条件作用中的贡献。