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用于分析移动视觉刺激的形状和运动的独立通道。

Separate channels for the analysis of the shape and the movement of moving visual stimulus.

作者信息

Tolhurst D J

出版信息

J Physiol. 1973 Jun;231(3):385-402. doi: 10.1113/jphysiol.1973.sp010239.

DOI:10.1113/jphysiol.1973.sp010239
PMID:4783089
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1350670/
Abstract
  1. The effects of temporal modulation on the properties of spatial frequency channels have been investigated using adaptation.2. Adapting to drifting sinusoidal gratings caused threshold elevation that was both spatial frequency and direction specific. Little systematic difference was found between the band widths of the elevation curves for drifting and stationary gratings.3. It was confirmed that adaptation fails to reveal channels at low spatial frequencies when stationary gratings are used. However, channels were revealed at frequencies at least as low as 0.66 c/deg when the test gratings were made to move. These channels are adapted only a little by stationary gratings, confirming their dependence on movement.4. The existence of movement-sensitive channels at low spatial frequencies explains the well known observation that temporal modulation greatly increases the sensitivity of the visual system to low spatial frequencies.5. Temporal modulation was effective at revealing these channels only when the flicker or movement of the test patterns was apparent to the observer; only at low spatial frequencies did patterns, modulated at low rates, actually appear to be temporarily modulated at threshold. At higher spatial frequencies, they were indistinguishable from stationary patterns until the contrast was some way above the detection threshold.6. It is suggested, therefore, that the movement-sensitive channels are responsible for signalling the occurrence of movement; the channels at higher spatial frequencies give no information about temporal changes. These two systems of channels are compared to the Y- and X-cells respectively of the cat.
摘要
  1. 已利用适应性研究了时间调制对空间频率通道特性的影响。

  2. 适应漂移的正弦光栅会导致阈值升高,这种升高在空间频率和方向上都是特定的。在漂移光栅和静止光栅的升高曲线带宽之间未发现明显的系统差异。

  3. 已证实,当使用静止光栅时,适应性无法揭示低空间频率的通道。然而,当测试光栅移动时,至少在低至0.66周/度的频率下能揭示通道。这些通道仅被静止光栅少量适应,证实了它们对运动的依赖性。

  4. 低空间频率处存在对运动敏感的通道,这解释了一个众所周知的观察结果,即时间调制大大提高了视觉系统对低空间频率的敏感性。

  5. 仅当测试图案的闪烁或运动对观察者明显时,时间调制才有效地揭示这些通道;只有在低空间频率下,以低速率调制的图案在阈值处才实际上似乎是被临时调制的。在较高空间频率下,直到对比度远高于检测阈值时,它们才与静止图案区分开来。

  6. 因此,有人认为,对运动敏感的通道负责发出运动发生的信号;较高空间频率的通道不提供关于时间变化的信息。将这两种通道系统分别与猫的Y细胞和X细胞进行了比较。

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