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心智与大脑中的抑制控制2.0:眼跳抑制的阻断输入模型

Inhibitory control in mind and brain 2.0: blocked-input models of saccadic countermanding.

作者信息

Logan Gordon D, Yamaguchi Motonori, Schall Jeffrey D, Palmeri Thomas J

机构信息

Department of Psychology.

出版信息

Psychol Rev. 2015 Apr;122(2):115-47. doi: 10.1037/a0038893. Epub 2015 Feb 23.

Abstract

The interactive race model of saccadic countermanding assumes that response inhibition results from an interaction between a go unit, identified with gaze-shifting neurons, and a stop unit, identified with gaze-holding neurons, in which activation of the stop unit inhibits the growth of activation in the go unit to prevent it from reaching threshold. The interactive race model accounts for behavioral data and predicts physiological data in monkeys performing the stop-signal task. We propose an alternative model that assumes that response inhibition results from blocking the input to the go unit. We show that the blocked-input model accounts for behavioral data as accurately as the original interactive race model and predicts aspects of the physiological data more accurately. We extend the models to address the steady-state fixation period before the go stimulus is presented and find that the blocked-input model fits better than the interactive race model. We consider a model in which fixation activity is boosted when a stop signal occurs and find that it fits as well as the blocked input model but predicts very high steady-state fixation activity after the response is inhibited. We discuss the alternative linking propositions that connect computational models to neural mechanisms, the lessons to be learned from model mimicry, and generalization from countermanding saccades to countermanding other kinds of responses.

摘要

扫视抑制的交互竞争模型假定,反应抑制源于一个与眼动转移神经元相关的启动单元和一个与固视神经元相关的停止单元之间的相互作用,其中停止单元的激活会抑制启动单元激活的增长,以防止其达到阈值。交互竞争模型解释了行为数据,并预测了执行停止信号任务的猴子的生理数据。我们提出了一种替代模型,该模型假定反应抑制源于对启动单元输入的阻断。我们表明,阻断输入模型对行为数据的解释与原始交互竞争模型一样准确,并且对生理数据各方面的预测更准确。我们扩展这些模型以处理在呈现启动刺激之前的稳态注视期,发现阻断输入模型比交互竞争模型拟合得更好。我们考虑了一种模型,其中当出现停止信号时注视活动会增强,发现它与阻断输入模型拟合得一样好,但在反应被抑制后预测出非常高的稳态注视活动。我们讨论了将计算模型与神经机制联系起来的替代连接命题、从模型模拟中学到的经验教训,以及从扫视抑制推广到其他类型反应抑制的情况。

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