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首页> 外文期刊>Journal of Neurophysiology >Polarization sensitivity in the crayfish optic lobe: peripheral contributions to opponency and directionally selective motion detection.
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Polarization sensitivity in the crayfish optic lobe: peripheral contributions to opponency and directionally selective motion detection.

机译:小龙虾视瓣中的极化敏感度:外围对对手和定向选择性运动检测的贡献。

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1. Polarization sensitivity (PS) was examined in nonspiking interneurons, tangential cells, of the crayfish optic lobe. Stationary PS profiles were measured with pulses of illumination at fixed intensity and varied evector orientation (theta). Dynamic polarization responsiveness was examined with a rotating polarizer. The dynamic response was assessed with variations in rotation velocity and direction and for variations in intensity. 2. Eighty percent of the cells tested were polarization sensitive. These were divided into two types. Type I cells exhibited PS magnitudes comparable with those of photoreceptors and lamina monopolar cells in the same species. Most type I cells exhibited a directionally selective response to a rotating polarizer. 3. Type II cells exhibited PS magnitudes substantially higher than those observed in lamina neurons. These cells also revealed evidence for a polarization opponency mechanism. 4. The results are interpreted in terms of a general hypothesis for polarization featuredetection, on the basis of four principles. 1) Most or all tangential cells are subject to inhibition. 2) The inhibitory pathway is polarization sensitive. 3) If the theta producing the maximum response at fixed stimulus intensity (theta max) of the inhibitory input is similar to theta max - 90 degrees of the excitatory input, then the inhibition forms the basis of a polarization opponency mechanism. 4) If theta max of the inhibitory input is similar but not identical to theta max of the excitatory input, then the inhibitory input provides a basis for directionally selective polarization vision.
机译:1.在小龙虾视神经的不加尖的中间神经元,切向细胞中检查了极化敏感性(PS)。用固定强度和变化的evector方向(θ)的照明脉冲测量静止的PS轮廓。用旋转偏振器检查动态偏振响应性。通过旋转速度和方向的变化以及强度的变化来评估动态响应。 2. 80%的测试电池对极化敏感。这些分为两种类型。 I型细胞表现出与相同物种中的感光细胞和层状单极细胞相当的PS强度。大多数I型细胞对旋转偏振片表现出方向选择性的响应。 3. II型细胞表现出的PS幅度明显高于在层神经元中观察到的PS幅度。这些细胞还揭示了极化对抗机制的证据。 4.根据四个原理,根据极化特征检测的一般假设来解释结果。 1)大多数或所有切向细胞都受到抑制。 2)抑制途径是极化敏感的。 3)如果在固定的抑制输入强度下产生最大响应的theta与抑制输入的theta max-90度相似,则抑制形成极化对立机制的基础。 4)如果抑制性输入的θmax与兴奋性输入的θmax相似但不相同,则抑制性输入为定向选择性偏振视觉提供了基础。

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