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Activation of dorsolateral prefrontal cortex in a dual neuropsychological screening test: An fMRI approach

机译:在双重神经心理学筛查测试中激活背外侧前额叶皮层:fMRI方法

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Background The Kana Pick-out Test (KPT), which uses Kana or Japanese symbols that represent syllables, requires parallel processing of discrete (pick-out) and continuous (reading) dual tasks. As a dual task, the KPT is thought to test working memory and executive function, particularly in the prefrontal cortex (PFC), and is widely used in Japan as a clinical screen for dementia. Nevertheless, there has been little neurological investigation into PFC activity during this test. Methods We used functional magnetic resonance imaging (fMRI) to evaluate changes in the blood oxygenation level-dependent (BOLD) signal in young healthy adults during performance of a computerized KPT dual task (comprised of reading comprehension and picking out vowels) and compared it to its single task components (reading or vowel pick-out alone). Results Behavioral performance of the KPT degraded compared to its single task components. Performance of the KPT markedly increased BOLD signal intensity in the PFC, and also activated sensorimotor, parietal association, and visual cortex areas. In conjunction analyses, bilateral BOLD signal in the dorsolateral PFC (Brodmann's areas 45, 46) was present only in the KPT. Conclusions Our results support the central bottleneck theory and suggest that the dorsolateral PFC is an important mediator of neural activity for both short-term storage and executive processes. Quantitative evaluation of the KPT with fMRI in healthy adults is the first step towards understanding the effects of aging or cognitive impairment on KPT performance.
机译:背景假名拾取测试(KPT)使用代表音节的假名或日语符号,需要并行处理离散(拾取)和连续(读取)双重任务。 KPT作为一项双重任务,被认为可以测试工作记忆和执行功能,尤其是在额前皮层(PFC)中,并且在日本被广泛用作痴呆症的临床检查。然而,在该测试期间,几乎没有关于PFC活性的神经学研究。方法我们使用功能磁共振成像(fMRI)评估了计算机健康的KPT双重任务(包括阅读理解和元音拾取)执行过程中年轻健康成年人的血液氧合水平依赖性(BOLD)信号的变化,并将其与它的单个任务组件(单独阅读或元音拾取)。结果与单个任务组件相比,KPT的行为性能下降了。 KPT的性能显着提高了PFC中的BOLD信号强度,还激活了感觉运动,顶叶缔合和视觉皮层区域。结合分析,仅在KPT中出现了背外侧PFC中的双侧BOLD信号(Brodmann区域45、46)。结论我们的结果支持中心瓶颈理论,并表明背外侧PFC是短期活动和执行过程中神经活动的重要介质。用fMRI对健康成人进行KPT的定量评估是了解衰老或认知障碍对KPT性能的影响的第一步。

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