Decoding Salience: A Functional Magnetic Resonance Imaging Investigation of Reward and Contextual Unexpectedness in Memory Encoding and Retrieval.

IF 3.5 2区 医学 Q1 NEUROIMAGING
Yeo-Jin Yi, Michael C Kreißl, Oliver Speck, Emrah Düzel, Dorothea Hämmerer
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引用次数: 0

Abstract

The present study investigated the neuromodulatory substrates of salience processing and its impact on memory encoding and behaviour, with a specific focus on two distinct types of salience: reward and contextual unexpectedness. 46 Participants performed a novel task paradigm modulating these two aspects independently and allowing for investigating their distinct and interactive effects on memory encoding while undergoing high-resolution fMRI. By using advanced image processing techniques tailored to examine midbrain and brainstem nuclei with high precision, our study additionally aimed to elucidate differential activation patterns in subcortical nuclei in response to reward-associated and contextually unexpected stimuli, including distinct pathways involving in particular dopaminergic modulation. We observed a differential involvement of the ventral striatum, substantia nigra (SN) and caudate nucleus, as well as a functional specialisation within the subregions of the cingulate cortex for the two salience types. Moreover, distinct subregions within the SN in processing salience could be identified. Dorsal areas preferentially processed salience related to stimulus processing (of both reward and contextual unexpectedness), and ventral areas were involved in salience-related memory encoding (for contextual unexpectedness only). These functional specialisations within SN are in line with different projection patterns of dorsal and ventral SN to brain areas supporting attention and memory, respectively. By disentangling stimulus processing and memory encoding related to two salience types, we hope to further consolidate our understanding of neuromodulatory structures' differential as well as interactive roles in modulating behavioural responses to salient events.

解码显著性:记忆编码和检索中奖励和情境意外的功能磁共振成像研究。
本研究探讨了显著性加工的神经调节底物及其对记忆编码和行为的影响,特别关注两种不同类型的显著性:奖励和情境意外。参与者在进行高分辨率功能磁共振成像(fMRI)时,完成了一个新的任务范式,独立调节这两个方面,并允许调查它们对记忆编码的独特和交互影响。通过使用先进的图像处理技术来高精度地检查中脑和脑干核,我们的研究还旨在阐明皮层下核在响应奖励相关和情境意外刺激时的不同激活模式,包括涉及特定多巴胺能调节的不同途径。我们观察到腹侧纹状体、黑质(SN)和尾状核的不同受损伤,以及扣带皮层亚区中两种突出类型的功能特化。此外,可以识别出SN中加工显著性的不同子区域。背侧区域优先处理与刺激处理相关的显著性(奖励和情境意外),而腹侧区域参与显著性相关的记忆编码(仅针对情境意外)。这些SN内的功能专门化分别与背侧和腹侧SN向支持注意力和记忆的大脑区域的不同投影模式相一致。通过解开与两种显著性类型相关的刺激处理和记忆编码,我们希望进一步巩固我们对神经调节结构在调节显著事件的行为反应中的差异和相互作用的理解。
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来源期刊
Human Brain Mapping
Human Brain Mapping 医学-核医学
CiteScore
8.30
自引率
6.20%
发文量
401
审稿时长
3-6 weeks
期刊介绍: Human Brain Mapping publishes peer-reviewed basic, clinical, technical, and theoretical research in the interdisciplinary and rapidly expanding field of human brain mapping. The journal features research derived from non-invasive brain imaging modalities used to explore the spatial and temporal organization of the neural systems supporting human behavior. Imaging modalities of interest include positron emission tomography, event-related potentials, electro-and magnetoencephalography, magnetic resonance imaging, and single-photon emission tomography. Brain mapping research in both normal and clinical populations is encouraged. Article formats include Research Articles, Review Articles, Clinical Case Studies, and Technique, as well as Technological Developments, Theoretical Articles, and Synthetic Reviews. Technical advances, such as novel brain imaging methods, analyses for detecting or localizing neural activity, synergistic uses of multiple imaging modalities, and strategies for the design of behavioral paradigms and neural-systems modeling are of particular interest. The journal endorses the propagation of methodological standards and encourages database development in the field of human brain mapping.
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