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首页> 外文期刊>Neuropsychologia >The effect of speed-accuracy strategy on response interference control in Parkinson's disease.
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The effect of speed-accuracy strategy on response interference control in Parkinson's disease.

机译:速度精确度策略对帕金森氏病反应干扰控制的影响。

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摘要

Studies that used conflict paradigms such as the Eriksen Flanker task show that many individuals with Parkinson's disease (PD) have pronounced difficulty resolving the conflict that arises from the simultaneous activation of mutually exclusive responses. This finding fits well with contemporary views that postulate a key role for the basal ganglia in action selection. The present experiment aims to specify the cognitive processes that underlie action selection deficits among PD patients in the context of variations in speed-accuracy strategy. PD patients (n=28) and healthy controls (n=17) performed an arrow version of the flanker task under task instructions that either emphasized speed or accuracy of responses. Reaction time (RT) and accuracy rates decreased with speed compared to accuracy instructions, although to a lesser extent for the PD group. Differences in flanker interference effects among PD and healthy controls depended on speed-accuracy strategy. Compared to the healthy controls, PD patients showed larger flanker interference effects under speed stress. RT distribution analyses suggested that PD patients have greater difficulty suppressing incorrect response activation when pressing for speed. These initial findings point to an important interaction between strategic and computational aspects of interference control in accounting for cognitive impairments of PD. The results are also compatible with recent brain imaging studies that demonstrate basal ganglia activity to co-vary with speed-accuracy adjustments.
机译:使用冲突范式(例如Eriksen Flanker任务)的研究表明,许多患有帕金森氏病(PD)的人都很难解决因相互排斥反应同时激活而引起的冲突。这一发现与当代观点相吻合,这些观点推测了基底神经节在行动选择中的关键作用。本实验旨在确定在速度准确性策略变化的背景下,PD患者行动选择不足的认知过程。 PD患者(n = 28)和健康对照组(n = 17)在任务说明下执行侧翼任务的箭头版本,该任务说明强调响应的速度或准确性。与反应速度说明相比,反应时间(RT)和反应准确率随速度降低,尽管对PD组而言较小。 PD和健康对照组之间侧翼干扰效果的差异取决于速度精度策略。与健康对照组相比,PD患者在速度压力下表现出更大的侧翼干扰效果。 RT分布分析表明,PD患者在压迫速度时难以抑制错误的反应激活。这些初步发现表明,在控制PD的认知功能障碍时,干扰控制的战略和计算方面之间存在重要的相互作用。该结果也与最近的脑成像研究相吻合,脑成像研究证明了基底神经节的活动随速度准确性的调整而变化。

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