Reynolds Jeremy R, McDermott Kathleen B, Braver Todd S
Department of Psychology, Washington University, Saint Louis, MO 63139, USA.
Cereb Cortex. 2006 Apr;16(4):519-28. doi: 10.1093/cercor/bhi131. Epub 2005 Jul 27.
Retrieval of information from episodic memory reliably engages regions within the anterior prefrontal cortex (aPFC). This observation has led researchers to suggest that these regions may subserve processes intimately tied to episodic retrieval. However, the aPFC is also recruited by other complex tasks not requiring episodic retrieval. One hypothesis concerning these results is that episodic retrieval recruits a general cognitive process that is subserved by the aPFC. The current study tested a specific version of this hypothesis--namely, that the integration of internally represented information is this process. Event-related fMRI was employed in a 2 (memory task: encoding versus retrieval) x 2 (level of integration: low versus high) factorial within-subjects design. A functional dissociation was observed, with one aPFC subregion uniquely sensitive to level of integration and another jointly sensitive to level of integration and memory task. Analysis of event-related activation latencies indicated that level of integration and memory task effects occurred with significantly different timing. The results provide the first direct evidence regarding the functional specialization within lateral aPFC and the nature of its recruitment during complex cognitive tasks. Moreover, the study highlights the benefits of activation latency analysis for understanding functional contributions and dissociations between closely linked brain regions.
从情景记忆中提取信息会可靠地激活前额叶前部皮质(aPFC)内的区域。这一观察结果促使研究人员提出,这些区域可能支持与情景提取密切相关的过程。然而,aPFC也会被其他不需要情景提取的复杂任务所激活。关于这些结果的一种假设是,情景提取会激活一种由aPFC支持的一般认知过程。当前的研究对这一假设的一个特定版本进行了测试——即,内部表征信息的整合就是这个过程。在一项2(记忆任务:编码与提取)×2(整合水平:低与高)的被试内析因设计中采用了事件相关功能磁共振成像技术。观察到一种功能分离,其中一个aPFC子区域对整合水平具有独特的敏感性,另一个则对整合水平和记忆任务都敏感。对事件相关激活潜伏期的分析表明,整合水平和记忆任务效应的发生时间显著不同。这些结果提供了关于外侧aPFC内功能特化及其在复杂认知任务中被激活的性质的首个直接证据。此外,该研究强调了激活潜伏期分析对于理解紧密相连的脑区之间的功能贡献和分离的益处。