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Active encoding of decisions about stimulus absence in primate prefrontal cortex neurons

机译:主动编码关于灵长类前额叶皮层神经元缺乏刺激的决定

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Judging the presence or absence of a stimulus is likely the most basic perceptual decision. A fundamental difference of detection tasks in contrast to discrimination tasks is that only the stimulus presence decision can be inferred from sensory evidence, whereas the alternative decision about stimulus absence lacks sensory evidence by definition. Detection decisions have been studied in an intentional, action-based framework, in which decisions were regarded as intentions to pursue particular actions. These studies have found that only stimulus-present decisions are actively encoded by neurons, whereas the decision about the absence of a stimulus does not affect default neuronal responses. We tested whether this processing mechanism also holds for abstract detection decisions that are dissociated from motor preparation. We recorded single-neuron activity from the prefrontal cortex (PFC) of monkeys performing, a visual detection task that forced a report-independent decision. We not only found neurons that actively encoded the subjective decision of monkeys about the presence of a stimulus, but also cells responding actively for the decision about the absence of stimuli. These results suggest that abstract detection decisions are processed in a different way compared with the previously reported action-based decisions. In a report-independent framework, neuronal networks seem to generate a second set of neurons actively encoding the absence of sensory stimulation, thus translating decisions into abstract categories. This mechanism may allow the brain to "buffer" a decision in a nonmovement-related framework.
机译:判断是否存在刺激可能是最基本的感知决定。与区分任务相比,检测任务的根本区别在于只能从感官证据中推断出刺激存在决策,而关于刺激缺失的替代性决策在定义上缺乏感官证据。已经在基于行动的有意框架中研究了检测决策,在该框架中,决策被认为是采取特定行动的意图。这些研究发现,只有刺激存在的决定才由神经元主动编码,而关于不存在刺激的决定不会影响默认的神经元反应。我们测试了这种处理机制是否也适用于与运动准备无关的抽象检测决策。我们记录了猴子表演的前额叶皮层(PFC)的单神经元活动,这是一种视觉检测任务,可强制作出报告独立的决定。我们不仅发现神经元主动地编码了猴子对刺激的主观决定,而且还发现了细胞对不存在刺激的决定做出积极反应的细胞。这些结果表明,与先前报告的基于动作的决策相比,抽象检测决策的处理方式有所不同。在与报告无关的框架中,神经元网络似乎会生成第二组神经元,这些神经元会主动编码缺少感觉刺激的信息,从而将决策转化为抽象类别。这种机制可以使大脑在非运动相关框架中“缓冲”决策。

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