Smith Rachelle, Keramatian Kamyar, Christoff Kalina
Department of Psychology, University of British Columbia, Canada.
Neuroimage. 2007 Jul 15;36(4):1387-96. doi: 10.1016/j.neuroimage.2007.04.032. Epub 2007 Apr 25.
The functions of the rostrolateral prefrontal cortex (RLPFC) have recently become the target of multiple theories and empirical investigations. This region can be loosely defined as the lateral portion of Brodmann area (BA) 10. One of the challenges in testing theories about RLPFC functions is the difficulty in defining its boundaries when formulating predictions for its recruitment. Here we present a procedure that goes beyond the currently available anatomical definitions to attempt a functional localization of RLPFC. A combination of functional and anatomical criteria was employed, consistent with other localizer procedures. Functional localization was performed by comparing a relational condition involving relational matching to a control condition involving feature matching. It was expected that within an anatomically defined BA10 region, this procedure would produce functional activations in the lateral but not the medial subregions. The task was administered in the course of a single 13-min fMRI session. Results showed remarkable consistency, with all subjects activating RLPFC and activations consistently localized in the lateral part of BA10. These results demonstrate the practical feasibility of localizing RLPFC using a short procedure and a combination of functional and anatomical criteria. Such localization presents with a number of potential advantages for testing theories of RLPFC functions, including improved anatomical precision of experimental predictions, as well as the possibility of reduction in the rate of false-negative findings across studies. In addition, the results provide further support for the previously proposed functional dissociation between lateral and medial BA10.
前额叶皮质腹外侧部(RLPFC)的功能近来已成为多种理论及实证研究的目标。该区域可大致定义为布罗德曼区(BA)10的外侧部分。在检验有关RLPFC功能的理论时,其中一项挑战在于,在为其激活制定预测时难以界定其边界。在此,我们提出一种超越当前可用解剖学定义的程序,以尝试对RLPFC进行功能定位。采用了功能和解剖学标准相结合的方法,这与其他定位程序一致。通过将涉及关系匹配的关系条件与涉及特征匹配的对照条件进行比较来进行功能定位。预计在解剖学定义的BA10区域内,该程序会在外侧而非内侧子区域产生功能激活。该任务在一次13分钟的功能磁共振成像(fMRI)实验过程中进行。结果显示出显著的一致性,所有受试者均激活了RLPFC,且激活区域始终定位于BA10的外侧部分。这些结果证明了使用简短程序以及功能和解剖学标准相结合来定位RLPFC的实际可行性。这种定位对于检验RLPFC功能理论具有诸多潜在优势,包括提高实验预测的解剖学精度,以及有可能降低各项研究中假阴性结果的发生率。此外,这些结果为先前提出的BA10外侧和内侧之间的功能分离提供了进一步支持。