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空间工作记忆中不同类型位置编码策略的神经证据。

Neural Evidence for Different Types of Position Coding Strategies in Spatial Working Memory.

作者信息

Purg Nina, Starc Martina, Slana Ozimič Anka, Kraljič Aleksij, Matkovič Andraž, Repovš Grega

机构信息

Department of Psychology, Faculty of Arts, University of Ljubljana, Ljubljana, Slovenia.

Faculty of Medicine, University of Ljubljana, Ljubljana, Slovenia.

出版信息

Front Hum Neurosci. 2022 Apr 20;16:821545. doi: 10.3389/fnhum.2022.821545. eCollection 2022.

Abstract

Sustained neural activity during the delay phase of spatial working memory tasks is compelling evidence for the neural correlate of active storage and maintenance of spatial information, however, it does not provide insight into specific mechanisms of spatial coding. This activity may reflect a range of processes, such as maintenance of a stimulus position or a prepared motor response plan. The aim of our study was to examine neural evidence for the use of different coding strategies, depending on the characteristics and demands of a spatial working memory task. Thirty-one (20 women, 23 ± 5 years) and 44 (23 women, 21 ± 2 years) participants performed a spatial working memory task while we measured their brain activity using fMRI in two separate experiments. Participants were asked to remember the position of a briefly presented target stimulus and, after a delay period, to use a joystick to indicate either the position of the remembered target or an indicated non-matching location. The task was designed so that the predictability of the response could be manipulated independently of task difficulty and memory retrieval process. We were particularly interested in contrasting conditions in which participants (i) could use prospective coding of the motor response or (ii) had to rely on retrospective sensory information. Prospective motor coding was associated with activity in somatomotor, premotor, and motor cortices and increased integration of brain activity with and within the somatomotor network. In contrast, retrospective sensory coding was associated with increased activity in parietal regions and increased functional connectivity with and within secondary visual and dorsal attentional networks. The observed differences in activation levels, dynamics of differences over trial duration, and integration of information within and between brain networks provide compelling evidence for the use of complementary spatial working memory strategies optimized to meet task demands.

摘要

在空间工作记忆任务的延迟阶段持续的神经活动是空间信息的主动存储和维持的神经关联的有力证据,然而,它并未深入了解空间编码的具体机制。这种活动可能反映了一系列过程,例如刺激位置的维持或准备好的运动反应计划。我们研究的目的是根据空间工作记忆任务的特征和要求,研究使用不同编码策略的神经证据。31名(20名女性,23±5岁)和44名(23名女性,21±2岁)参与者在两个独立的实验中进行空间工作记忆任务,同时我们使用功能磁共振成像测量他们的大脑活动。参与者被要求记住一个短暂呈现的目标刺激的位置,在延迟期过后,使用操纵杆指出记住的目标的位置或指定的不匹配位置。该任务的设计使得反应的可预测性可以独立于任务难度和记忆检索过程进行操纵。我们特别感兴趣的是对比参与者(i)可以使用运动反应的前瞻性编码或(ii)必须依赖回顾性感觉信息的条件。前瞻性运动编码与躯体运动、运动前区和运动皮层的活动相关,并且大脑活动与躯体运动网络内部及之间的整合增加。相比之下,回顾性感觉编码与顶叶区域活动增加以及与次级视觉和背侧注意网络内部及之间的功能连接增加相关。观察到的激活水平差异、试验持续时间内差异的动态变化以及大脑网络内部及之间信息的整合,为使用优化以满足任务需求的互补性空间工作记忆策略提供了有力证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16eb/9067305/fcbf95562895/fnhum-16-821545-g0001.jpg

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