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信号检测理论估计的小鼠绝对视觉阈值与决策偏差无关。

Signal Detection Theoretic Estimates of the Murine Absolute Visual Threshold Are Independent of Decision Bias.

机构信息

Center for Vision Research, Department of Ophthalmology and Visual Sciences, SUNY Upstate Medical University, Syracuse, New York 13210.

Center for Vision Research, Department of Ophthalmology and Visual Sciences, SUNY Upstate Medical University, Syracuse, New York 13210

出版信息

eNeuro. 2024 Oct 9;11(10). doi: 10.1523/ENEURO.0222-24.2024. Print 2024 Oct.

Abstract

Decision bias influences estimates of the absolute visual threshold. However, most psychophysical estimates of the murine absolute visual threshold have not taken bias into account. Here we developed a one-alternative forced choice (1AFC) assay to assess the decision bias of mice at the absolute visual threshold via the theory of signal detection and compared our approach with the more conventional high-threshold theoretic approach. In the 1AFC assay, mice of both sexes were trained to signal whether they detected a flash stimulus. We directly measured both hit and false alarm rates, which were used to estimate Using the theory of signal detection, we obtained absolute thresholds by interpolating the intensity where = 1 from -psychometric functions. This gave bias-independent estimates of the absolute visual threshold which ranged over sixfold, averaging ∼1 R* in 1,000 rods ( = 7 mice). To obtain high-threshold theoretic estimates of the absolute visual threshold from the same mice, we estimated threshold intensities from the frequency of seeing curves, corrected for guessing. This gave us thresholds that were strongly correlated with decision bias, ranging over 13-fold and averaged ∼1 R* in 2,500 rods. We conclude that the theory of signal detection uses false alarms to overcome decision bias and narrow the range of threshold estimates in mice, providing a powerful tool for understanding detection behavior near absolute visual threshold.

摘要

决策偏差会影响绝对视觉阈值的估计。然而,大多数关于小鼠绝对视觉阈值的心理物理学估计都没有考虑到偏差。在这里,我们通过信号检测理论开发了一种 1 种选择强迫选择 (1AFC) 测定法来评估小鼠在绝对视觉阈值下的决策偏差,并将我们的方法与更传统的高阈值理论方法进行了比较。在 1AFC 测定中,雌雄小鼠均接受训练以指示是否检测到闪光刺激。我们直接测量了击中率和虚报率,这些率用于估计使用信号检测理论,我们通过在强度为 = 1 处插值来获得绝对阈值 - 心理物理函数。这给出了无偏差的绝对视觉阈值估计值,范围超过六倍,平均在 1000 个视杆细胞中为 ∼1 R*(= 7 只小鼠)。为了从同一只小鼠获得高阈值理论估计的绝对视觉阈值,我们从看到曲线的频率估计阈值强度,并对猜测进行了校正。这使我们获得了与决策偏差密切相关的阈值,范围超过 13 倍,平均在 2500 个视杆细胞中为 ∼1 R*。我们得出结论,信号检测理论使用虚报来克服决策偏差并缩小小鼠中阈值估计的范围,为理解绝对视觉阈值附近的检测行为提供了有力的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bc8/11470389/491839496fa8/eneuro-11-ENEURO.0222-24.2024-g001.jpg

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