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首页> 外文期刊>Journal of Cognitive Neuroscience >The Neural and Computational Basis of Controlled Speed-Accuracy Tradeoff during Task Performance
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The Neural and Computational Basis of Controlled Speed-Accuracy Tradeoff during Task Performance

机译:任务执行过程中速度与速度之间的权衡取舍的神经和计算基础

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摘要

People are capable, at will, of trading speed for accuracy when performing a task; they can focus on performing accurately at the cost of being slow, or emphasize speed at the cost of decreased accuracy. Here, we used functional magnetic resonance imaging to investigate the neural correlates of this ability. We show increased baseline activity during speed emphasis in a network of areas related to response preparation and execution, including the premotor areas of the frontal lobe, the basal ganglia, the thalamus, and the dorsolateral prefrontal and left parietal cortices. Furthermore, speed emphasis was associated with reduced transient response-related activation in several of these structures, suggesting that because of the greater baseline activity under speed emphasis, less activation is needed in these structures to reach response threshold, consistent with the assumptions of several computational theories. Moreover, we identify the dorsolateral pre-frontal cortex as providing the top-down control signal that increases this baseline activity.
机译:在执行任务时,人们可以随意进行交易以提高准确性;他们可以专注于以慢下来为代价的准确表现,或者以降低准确性为代价来强调速度。在这里,我们使用功能磁共振成像来研究这种能力的神经相关性。我们显示了在与响应准备和执行相关的区域网络中,速度增强期间基线活动的增加,包括额叶的运动前区,基底神经节,丘脑以及背外侧的前额叶和顶叶皮层。此外,在某些结构中,速度增强与减少的瞬态响应相关的激活相关,这表明,由于速度增强下的基线活动较大,因此在这些结构中需要较少的激活即可达到响应阈值,这与几种计算的假设一致理论。此外,我们确定背外侧前额叶皮层可提供自上而下的控制信号,从而增加该基线活动。

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