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首页> 外文期刊>Journal of Neurophysiology >Temporal frequency and velocity-like tuning in the pigeon accessory optic system.
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Temporal frequency and velocity-like tuning in the pigeon accessory optic system.

机译:鸽子辅助光学系统中的时间频率和速度调节。

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Neurons in the accessory optic system (AOS) and pretectum are involved in the analysis of optic flow and the generation of the optokinetic response. Previous studies found that neurons in the pretectum and AOS exhibit direction selectivity in response to large-field motion and are tuned in the spatiotemporal domain. Furthermore, it has been emphasized that pretectal and AOS neurons are tuned to a particular temporal frequency, consistent with the "correlation" model of motion detection. We examined the responses of neurons in the nucleus of the basal optic root (nBOR) of the AOS in pigeons to large-field drifting sine wave gratings of varying spatial (SF) and temporal frequencies (TF). nBOR neurons clustered into two categories: "Fast" neurons preferred low SFs and high TFs, and "Slow" neurons preferred high SFs and low TFs. The fast neurons were tuned for TF, but the slow nBOR neurons had spatiotemporally oriented peaks that suggested velocity tuning (TF/SF). However, the peak response was not independent of SF; thus we refer to the tuning as "apparent velocity tuning" or "velocity-like tuning." Some neurons showed peaks in both the fast and slow regions. These neurons were TF-tuned at low SFs, and showed velocity-like tuning at high SFs. We used computer simulations of the response of an elaborated Reichardt detector to show that both the TF-tuning and velocity-like tuning shown by the fast and slow neurons, respectively, may be explained by modified versions of the correlation model of motion detection.
机译:辅助视神经系统(AOS)和前保护区中的神经元参与了视神经血流的分析和视动反应的产生。先前的研究发现,前大区和AOS中的神经元对大视野运动表现出方向选择性,并在时空域中进行调节。此外,已经强调了将前盖神经和AOS神经元调整到特定的时间频率,这与运动检测的“相关”模型一致。我们检查了鸽子AOS的基底视神经根(nBOR)核中神经元对空间(SF)和时间频率(TF)变化的大场漂移正弦波光栅的响应。 nBOR神经元分为两类:“快速”神经元首选低SF和高TF,“慢”神经元首选高SF和低TF。快速神经元的TF进行了调整,但慢速nBOR神经元的时空定向的峰建议进行速度调整(TF / SF)。但是,峰响应与SF无关。因此,我们将该调整称为“视在速度调整”或“类似速度的调整”。一些神经元在快和慢区域均显示出峰。这些神经元在低SF时进行TF调谐,并在高SF时表现出类似速度的调谐。我们使用复杂的Reichardt检测器的响应的计算机模拟来表明,快速和慢速神经元分别显示的TF调谐和类似速度的调谐都可以通过运动检测相关模型的修改版本来解释。

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