The role of the parahippocampal cortex in memory consolidation for scenes.

IF 1.8 4区 医学 Q4 NEUROSCIENCES
Learning & memory Pub Date : 2025-05-02 Print Date: 2025-04-01 DOI:10.1101/lm.054053.124
Weizhen Xie, Susan G Wardle, Jenna Langbein, Oceane Fruchet, Molly Baumhauer, Audrey Phan, Ai Phuong Tong, Shruti Japee, Sara K Inati, Chris I Baker, Kareem A Zaghloul
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引用次数: 0

Abstract

Classic models propose that forming lasting visual memories involves coordinated interactions between visually selective neocortical structures and the hippocampus during memory consolidation. However, the precise role of visually selective neocortical structures in memory consolidation remains elusive, given their potential contributions spanning from initial perceptual encoding to subsequent memory reactivation. We capitalized on a unique opportunity, involving direct recording from the posterior parahippocampus and its subsequent resection in a neurological patient, to investigate the impact of scene-selective neocortical lesions on visual memory consolidation. First, with intracranial EEG, we confirmed the functional relevance of the patient's resected tissues in representing a specific visual category, in this case, scene images. Subsequently, we identified disruption of memory for scenes relative to faces and objects during the participant's postoperative visit. This finding prompted a comprehensive analysis of visual memory across different visual categories in this participant, as well as an examination of similar functions in other neurological patients with intact parahippocampi and a cohort of online participants. Through these within- and between-participant comparisons, we identified greater time-dependent reduction in visual memory for scene images following the resection of the posterior parahippocampus. Importantly, these changes in memory retention could not be attributed to a general reduction in initial memory encoding following neocortical lesions. Our findings, therefore, suggest that reactivating scene-selective neocortical areas is essential for converting transient visual perceptual experiences into lasting long-term scene memories.

海马旁皮层在情景记忆巩固中的作用。
经典模型提出,在记忆巩固过程中,形成持久的视觉记忆涉及视觉选择性新皮质结构和海马体之间的协调相互作用。然而,视觉选择性新皮质结构在记忆巩固中的确切作用仍然难以捉摸,因为它们的潜在贡献跨越了最初的感知编码到随后的记忆再激活。我们利用了一个独特的机会,包括对神经系统患者的后副海马体的直接记录及其随后的切除,来研究场景选择性新皮层病变对视觉记忆巩固的影响。首先,通过颅内脑电图,我们确认了患者切除组织在代表特定视觉类别方面的功能相关性,在这种情况下,是场景图像。随后,我们确定了参与者在术后访问期间对面孔和物体相关场景的记忆中断。这一发现促使对该参与者不同视觉类别的视觉记忆进行了全面分析,并对其他海马体旁完整的神经系统患者和一组在线参与者进行了类似功能的检查。通过这些参与者内部和参与者之间的比较,我们发现在切除后海马旁区后,对场景图像的视觉记忆有更大的时间依赖性减少。重要的是,这些记忆保留的变化不能归因于新皮质损伤后初始记忆编码的普遍减少。因此,我们的研究结果表明,重新激活场景选择的新皮质区域对于将短暂的视觉感知体验转化为持久的长期场景记忆至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Learning & memory
Learning & memory 医学-神经科学
CiteScore
3.60
自引率
5.00%
发文量
45
审稿时长
6-12 weeks
期刊介绍: The neurobiology of learning and memory is entering a new interdisciplinary era. Advances in neuropsychology have identified regions of brain tissue that are critical for certain types of function. Electrophysiological techniques have revealed behavioral correlates of neuronal activity. Studies of synaptic plasticity suggest that some mechanisms of memory formation may resemble those of neural development. And molecular approaches have identified genes with patterns of expression that influence behavior. It is clear that future progress depends on interdisciplinary investigations. The current literature of learning and memory is large but fragmented. Until now, there has been no single journal devoted to this area of study and no dominant journal that demands attention by serious workers in the area, regardless of specialty. Learning & Memory provides a forum for these investigations in the form of research papers and review articles.
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