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Dissociation of mnemonic and perceptual processes during spatial and nonspatial working memory using fMRI

机译:fMRI在空间和非空间工作记忆过程中记忆和知觉过程的解离

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摘要

Neuroimaging studies in humans have consistently found robust activation of frontal, parietal, and temporal regions during working memory tasks. Whether these activations represent functional networks segregated by perceptual domain is still at issue. Two functional magnetic resonance imaging experiments were conducted, both of which used multiple‐cycle, alternating task designs. Experiment 1 compared spatial and object working memory tasks to identify cortical regions differentially activated by these perceptual domains. Experiment 2 compared working memory and perceptual control tasks within each of the spatial and object domains to determine whether the regions identified in experiment 1 were driven primarily by the perceptual or mnemonic demands of the tasks, and to identify common brain regions activated by working memory in both perceptual domains. Domain‐specific activation occurred in the inferior parietal cortex for spatial tasks, and in the inferior occipitotemporal cortex for object tasks, particularly in the left hemisphere. However, neither area was strongly influenced by task demands, being nearly equally activated by the working memory and perceptual control tasks. In contrast, activation of the dorsolateral prefrontal cortex and the intraparietal sulcus (IPS) was strongly task‐related. Spatial working memory primarily activated the right middle frontal gyrus (MFG) and the IPS. Object working memory activated the MFG bilaterally, the left inferior frontal gyrus, and the IPS, particularly in the left hemisphere. Finally, activation of midline posterior regions, including the cingulate gyrus, occurred at the offset of the working memory tasks, particularly the shape task. These results support a prominent role of the prefrontal and parietal cortices in working memory, and indicate that spatial and object working memory tasks recruit differential hemispheric networks. The results also affirm the distinction between spatial and object perceptual processing in dorsal and ventral visual pathways. © 1998 Wiley‐Liss, Inc.
机译:人体的神经影像学研究一直发现在工作记忆任务期间,额叶,顶叶和颞叶区域的活化作用很强。这些激活是否代表按感知域隔离的功能网络仍然存在争议。进行了两个功能性磁共振成像实验,两个实验均使用多周期,交替任务设计。实验1比较了空间和对象工作记忆任务,以识别由这些感知域差异激活的皮质区域。实验2比较了每个空间域和对象域中的工作记忆和知觉控制任务,以确定实验1中确定的区域主要是由任务的知觉还是助记符驱动的,并确定了在工作记忆中激活的常见大脑区域两个感知领域。特定领域的激活发生在空间任务的顶叶下皮质,以及目标任务的枕下皮质,尤其是在左半球。但是,这两个区域都不受任务需求的强烈影响,几乎都被工作记忆和感知控制任务激活。相比之下,背外侧前额叶皮层和顶内沟(IPS)的激活与任务密切相关。空间工作记忆主要激活右中额回(MFG)和IPS。对象工作记忆在两侧激活了MFG,左下额回和IPS,尤其是在左半球。最后,中线后部区域(包括扣带回)的激活发生在工作记忆任务(尤其是形状任务)的偏移处。这些结果支持前额叶和顶叶皮层在工作记忆中的重要作用,并表明空间和对象工作记忆任务募集了不同的半球网络。该结果还证实了背侧和腹侧视觉通路中空间和物体感知处理之间的区别。 ©1998 Wiley‐Liss,Inc.

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