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感觉编码对测量偏差的贡献。

Contribution of Sensory Encoding to Measured Bias.

机构信息

Department of Neurobiology, Duke University Medical Center, Durham, North Carolina 27710.

Department of Neurobiology, Duke University Medical Center, Durham, North Carolina 27710

出版信息

J Neurosci. 2019 Jun 26;39(26):5115-5127. doi: 10.1523/JNEUROSCI.0076-19.2019. Epub 2019 Apr 23.

Abstract

Signal detection theory (SDT) is a widely used theoretical framework that describes how variable sensory signals are integrated with a decision criterion to support perceptual decision-making. SDT provides two key measurements: sensitivity () and bias (), which reflect the separability of decision variable distributions (signal and noise) and the position of the decision criterion relative to optimal, respectively. Although changes in the subject's decision criterion can be reflected in changes in bias, decision criterion placement is not the sole contributor to measured bias. Indeed, neuronal representations of bias have been observed in sensory areas, suggesting that some changes in bias are because of effects on sensory encoding. To directly test whether the sensory encoding process can influence bias, we optogenetically manipulated neuronal excitability in primary visual cortex (V1) in mice of both sexes during either an orientation discrimination or a contrast detection task. Increasing excitability in V1 significantly decreased behavioral bias, whereas decreasing excitability had the opposite effect. To determine whether this change in bias is consistent with effects on sensory encoding, we made extracellular recordings from V1 neurons in passively viewing mice. Indeed, we found that optogenetic manipulation of excitability shifted the neuronal bias in the same direction as the behavioral bias. Moreover, manipulating the quality of V1 encoding by changing stimulus contrast or interstimulus interval also resulted in consistent changes in both behavioral and neuronal bias. Thus, changes in sensory encoding are sufficient to drive changes in bias measured using SDT. Perceptual decision-making involves sensory integration followed by application of a cognitive criterion. Using signal detection theory, one can extract features of the underlying decision variables and rule: sensitivity () and bias (). Because bias is measured as the difference between the optimal and actual criterion, it is sensitive to both the sensory encoding processes and the placement of the decision criterion. Here, we use behavioral and electrophysiological approaches to demonstrate that measures of bias depend on sensory processes. Optogenetic manipulations of V1 in mice bidirectionally affect both behavioral and neuronal measures of bias with little effect on sensitivity. Thus, changes in sensory encoding influence bias, and the absence of changes in sensitivity do not preclude changes in sensory encoding.

摘要

信号检测理论(SDT)是一种广泛使用的理论框架,用于描述如何将可变的感觉信号与决策标准相结合,以支持感知决策。SDT 提供了两个关键测量值:敏感性()和偏差(),分别反映了决策变量分布(信号和噪声)的可分离性以及决策标准相对于最优标准的位置。虽然主体决策标准的变化可以反映在偏差的变化中,但决策标准的放置并不是导致测量偏差的唯一因素。事实上,在感觉区域已经观察到了偏差的神经元表示,这表明偏差的一些变化是由于对感觉编码的影响。为了直接测试感觉编码过程是否会影响偏差,我们在雄性和雌性小鼠的初级视觉皮层(V1)中进行光遗传操作,以改变神经元的兴奋性,同时进行方向辨别或对比度检测任务。V1 中神经元兴奋性的增加显著降低了行为偏差,而降低兴奋性则产生了相反的效果。为了确定这种偏差的变化是否与感觉编码有关,我们在被动观察的小鼠的 V1 神经元中进行了细胞外记录。事实上,我们发现光遗传操纵兴奋性使神经元偏差向与行为偏差相同的方向移动。此外,通过改变刺激对比度或刺激间间隔来改变 V1 编码的质量,也会导致行为和神经元偏差的一致变化。因此,感觉编码的变化足以驱动使用 SDT 测量的偏差变化。感知决策涉及到感觉整合,然后是认知标准的应用。使用信号检测理论,可以提取出潜在决策变量和规则的特征:敏感性()和偏差()。由于偏差是作为最佳和实际标准之间的差异来测量的,因此它既受感觉编码过程的影响,也受决策标准的位置的影响。在这里,我们使用行为和电生理方法来证明偏差的测量值取决于感觉过程。在小鼠的 V1 中进行光遗传操纵,会对行为和神经元偏差的测量值产生双向影响,而对敏感性的影响很小。因此,感觉编码的变化会影响偏差,而敏感性的变化并不排除感觉编码的变化。

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