首页> 外文期刊>Vision Research: An International Journal in Visual Science >Standardized F1 - A consistent measure of strength of modulation of visual responses to sine-wave drifting gratings
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Standardized F1 - A consistent measure of strength of modulation of visual responses to sine-wave drifting gratings

机译:标准化F1-对正弦波漂移光栅的视觉响应调制强度的一致测量

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The magnitude of spike-responses of neurons in the mammalian visual system to sine-wave luminance-contrast-modulated drifting gratings is modulated by the temporal frequency of the stimulation. However, there are serious problems with consistency and reliability of the traditionally used methods of assessment of strength of such modulation. Here we propose an intuitive and simple tool for assessment of the strength of modulations in the form of standardized F1 index, zF1. We define zF1 as the ratio of the difference between the F1 (component of amplitude spectrum of the spike-response at temporal frequency of stimulation) and the mean value of spectrum amplitudes to standard deviation along all frequencies in the spectrum. In order to assess the validity of this measure, we have: (1) examined behavior of zF1 using spike-responses to optimized drifting gratings of single neurons recorded from four 'visual' structures (area V1 of primary visual cortex, superior colliculus, suprageniculate nucleus and caudate nucleus) in the brain of commonly used visual mammal - domestic cat; (2) compared the behavior of zF1 with that of classical statistics commonly employed in the analysis of steady-state responses; (3) tested the zF1 index on simulated spike-trains generated with threshold-linear model. Our analyses indicate that zF1 is resistant to distortions due to the low spike count in responses and therefore can be particularly useful in the case of recordings from neurons with low firing rates and/or low net mean responses. While most V1 and a half of caudate neurons exhibit high zF1 indices, the majorities of collicular and suprageniculate neurons exhibit low zF1 indices. We conclude that despite the general shortcomings of measuring strength of modulation inherent in the linear system approach, zF1 can serve as a sensitive and easy to interpret tool for detection of modulation and assessment of its strength in responses of visual neurons.
机译:哺乳动物视觉系统中神经元对正弦波亮度对比调制的漂移光栅的尖峰响应的大小由刺激的时间频率调制。但是,传统上使用的评估这种调制强度的方法的一致性和可靠性存在严重的问题。在这里,我们提出了一种直观而简单的工具,以标准化F1指数zF1的形式评估调制强度。我们将zF1定义为F1(在刺激的瞬时频率处的尖峰响应的振幅谱的分量)与沿整个频谱中的谱振幅的平均值与标准偏差之间的差值之比。为了评估该措施的有效性,我们已经:(1)使用尖峰响应对从四个“视觉”结构(主视觉皮层,上丘,上丘肌区V1区域)记录的单个神经元的最佳漂移光栅进行尖峰响应检查了zF1的行为常用视觉哺乳动物-家猫的大脑中的核和尾状核); (2)将zF1的行为与稳态响应分析中常用的经典统计数据进行了比较; (3)在使用阈值线性模型生成的模拟峰值序列上测试了zF1指数。我们的分析表明,zF1由于响应中的尖峰计数低而可以抵抗失真,因此在从具有低触发率和/或低净均值响应的神经元进行录音的情况下尤其有用。尽管大多数V1和一半的尾状神经元都具有较高的zF1指数,但大多数的关节神经和超生神经元都具有较低的zF1指数。我们得出结论,尽管线性系统方法固有的测量调制强度的普遍缺陷,zF1仍可作为敏感且易于解释的工具来检测调制并评估其在视觉神经元反应中的强度。

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