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Differential Contributions of Dorso-Ventral and Rostro-Caudal Prefrontal White Matter Tracts to Cognitive Control in Healthy Older Adults

机译:健康老年人的背腹和前尾顶额叶白色物质对认知控制的不同贡献。

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摘要

Prefrontal cortex mediates cognitive control by means of circuitry organized along dorso-ventral and rostro-caudal axes. Along the dorso-ventral axis, ventrolateral PFC controls semantic information, whereas dorsolateral PFC encodes task rules. Along the rostro-caudal axis, anterior prefrontal cortex encodes complex rules and relationships between stimuli, whereas posterior prefrontal cortex encodes simple relationships between stimuli and behavior. Evidence of these gradients of prefrontal cortex organization has been well documented in fMRI studies, but their functional correlates have not been examined with regard to integrity of underlying white matter tracts. We hypothesized that (a) the integrity of specific white matter tracts is related to cognitive functioning in a manner consistent with the dorso-ventral and rostro-caudal organization of the prefrontal cortex, and (b) this would be particularly evident in healthy older adults. We assessed three cognitive processes that recruit the prefrontal cortex and can distinguish white matter tracts along the dorso-ventral and rostro-caudal dimensions –episodic memory, working memory, and reasoning. Correlations between cognition and fractional anisotropy as well as fiber tractography revealed: (a) Episodic memory was related to ventral prefrontal cortex-thalamo-hippocampal fiber integrity; (b) Working memory was related to integrity of corpus callosum body fibers subserving dorsolateral prefrontal cortex; and (c) Reasoning was related to integrity of corpus callosum body fibers subserving rostral and caudal dorsolateral prefrontal cortex. These findings confirm the ventrolateral prefrontal cortex's role in semantic control and the dorsolateral prefrontal cortex's role in rule-based processing, in accordance with the dorso-ventral prefrontal cortex gradient. Reasoning-related rostral and caudal superior frontal white matter may facilitate different levels of task rule complexity. This study is the first to demonstrate dorso-ventral and rostro-caudal prefrontal cortex processing gradients in white matter integrity.
机译:前额叶皮层通过沿背-腹和弓尾轴组织的电路介导认知控制。沿背腹轴,腹侧PFC控制语义信息,而背侧PFC编码任务规则。沿腹-尾轴,前额叶皮层编码复杂的规则和刺激之间的关系,而后额叶皮层编码刺激和行为之间的简单关系。在fMRI研究中已充分证明了这些前额叶皮层组织梯度的证据,但尚未就其基础白质束的完整性检查它们的功能相关性。我们假设(a)特定白质束的完整性与认知功能有关,且其方式与前额叶皮层的背腹和头尾肌组织一致,并且(b)这在健康的老年人中尤为明显。我们评估了三个认知过程,这些过程募集了前额叶皮层,并且可以区分沿背腹和左尾背维度的白质束–周期性记忆,工作记忆和推理。认知与分数各向异性以及纤维束成像之间的相关性揭示:(a)发作性记忆与腹侧前额叶皮层-丘脑-海马纤维的完整性有关; (b)工作记忆与维护背外侧前额叶皮层的call体纤维的完整性有关; (c)推理与sub体和尾侧背外侧前额叶皮层的integrity体纤维的完整性有关。这些发现证实了腹侧前额叶皮层在语义控制中的作用以及背侧前额叶皮层在基于规则的处理中的作用,这与背腹前额叶皮层梯度一致。与推理相关的喙和尾上额白质可能会促进不同级别的任务规则复杂性。这项研究是第一个证明白质完整性中的背腹和腹尾前额叶皮层加工梯度。

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