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Prefrontal activation may predict working-memory training gain in normal aging and mild cognitive impairment

机译:前额叶激活可以预测正常老化和轻度认知障碍的工作记忆训练增益

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Cognitive training has been shown to result in improved behavioral performance in normal aging and mild cognitive impairment (MCI), yet little is known about the neural correlates of cognitive plasticity, or about individual differences in responsiveness to cognitive training. In this study, 21 healthy older adults and 14 patients with MCI received five weeks of adaptive computerized working-memory (WM) training. Before and after training, functional Near-Infrared Spectroscopy (fNIRS) was used to assess the hemodynamic response in left and right prefrontal cortex during performance of a verbal n-back task with varying levels of WM load. After training, healthy older adults demonstrated decreased prefrontal activation at high WM load, which may indicate increased processing efficiency. Although MCI patients showed improved behavioral performance at low WM load after training, no evidence was found for training-related changes in prefrontal activation. Whole-group analyses showed that a relatively strong hemodynamic response at low WM load was related to worse behavioral performance, while a relatively strong hemodynamic response at high WM load was related to higher training gain. Therefore, a 'youth-like' prefrontal activation pattern at older age may be associated with better behavioral outcome and cognitive plasticity.
机译:已经证明认知培训导致正常老化和轻度认知障碍(MCI)的行为性能提高,然而,关于认知可塑性的神经相关性,或对认知训练的反应性的个体差异很少。在本研究中,21例健康的老年人和14名MCI患者接受了五周的自适应计算机化工作记忆记忆(WM)培训。在训练之前和之后,使用功能近红外光谱(Fnirs)来评估左右前额叶皮层的血液动力学响应,在具有不同水平的WM负载的口头N背部的性能期间的左右前额定皮层。在培训后,健康的老年人在高WM负荷下表现出下额叶激活下降,这可能表明加工效率提高。虽然MCI患者在培训后在低WM负载下表现出改善的行为性能,但没有发现培训相关变化的证据。全组分析表明,低WM负荷下的相对强烈的血液动力学响应与较差的行为性能有关,而高WM载荷的相对强劲的血液动力学反应与更高的训练增益有关。因此,年龄较大年龄的“青年样”前额相激活模式可能与更好的行为结果和认知可塑性相关联。

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