Stillesjö Sara, Nyberg Lars, Wirebring Linnea Karlsson
Department of Integrative Medical Biology, Umeå University, Umeå, Sweden.
Umeå Center for Functional Brain Imaging, Umeå University, Umeå, Sweden.
Front Hum Neurosci. 2019 Jul 16;13:228. doi: 10.3389/fnhum.2019.00228. eCollection 2019.
The brain networks underlying human , the judgment of a continuous criterion based on multiple cues, have been examined in a few recent studies, and the ventral precuneus has been found to be a key region. Specifically, activation differences in (as measured with functional magnetic resonance imaging, fMRI) has been linked to an exemplar-based judgment process, where judgments are based on memory for previous similar cases. Ventral precuneus is implicated in various episodic memory processes, notably such that activity during learning in this region as well as in the ventromedial prefrontal cortex (vmPFC) and the medial temporal lobes (MTL) have been linked to retrieval success. The present study used fMRI during a multiple-cue judgment task to gain novel neurocognitive evidence informative for the link between learning-related activity changes in ventral precuneus and exemplar-based judgment. Participants ( = 27) spontaneously learned to make judgments during fMRI, in a multiple-cue judgment task specifically designed to induce exemplar-based processing. Contrasting brain activity during late learning to early learning revealed activity in ventral precuneus, the bilateral MTL, and the vmPFC. Activity in the ventral precuneus and the vmPFC was found to parametrically increase between each judgment event, and activity levels in the ventral precuneus predicted performance after learning. These results are interpreted such that the ventral precuneus supports the aspects of exemplar-based processes that are related to episodic memory, tentatively by building, storing, and being implicated in retrieving memory representations for judgment.
最近的一些研究对人类基于多种线索对连续标准进行判断的大脑网络进行了考察,发现腹侧楔前叶是一个关键区域。具体而言,(通过功能磁共振成像,即fMRI测量的)激活差异与基于范例的判断过程有关,在该过程中判断基于对先前类似案例的记忆。腹侧楔前叶参与各种情景记忆过程,特别是该区域以及腹内侧前额叶皮层(vmPFC)和内侧颞叶(MTL)在学习过程中的活动与检索成功有关。本研究在多线索判断任务中使用fMRI,以获取关于腹侧楔前叶与学习相关的活动变化和基于范例的判断之间联系的新的神经认知证据。参与者(n = 27)在fMRI期间在一个专门设计用于诱导基于范例处理的多线索判断任务中自发学习进行判断。将学习后期与早期的大脑活动进行对比,发现腹侧楔前叶、双侧MTL和vmPFC有活动。发现腹侧楔前叶和vmPFC的活动在每个判断事件之间呈参数性增加,并且腹侧楔前叶的活动水平预测学习后的表现。这些结果的解释是,腹侧楔前叶支持与情景记忆相关的基于范例过程的各个方面,初步认为是通过构建、存储并参与检索用于判断的记忆表征来实现的。