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首页> 外文期刊>The Journal of Experimental Biology >It's not all black and white: visual scene parameters influence optokinetic reflex performance in Xenopus laevis tadpoles
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It's not all black and white: visual scene parameters influence optokinetic reflex performance in Xenopus laevis tadpoles

机译:这并非所有黑白:视觉场景参数在Xenopus Laevis Tadpoles中影响Optiopetic反光性能

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The maintenance of visual acuity during active and passive body motion is ensured by gaze-stabilizing reflexes that aim at minimizing retinal image slip. For the optokinetic reflex (OKR), large-field visual motion of the surround forms the essential stimulus that activates eye movements. Properties of the moving visual world influence cognitive motion perception and the estimation of visual image velocity. Therefore, the performance of brainstem-mediated visuo-motor behaviors might also depend on image scene characteristics. Employing semi-intact preparations of mid-larval stages of Xenopus laevis tadpoles, we studied the influence of contrast polarity, intensity, contour shape and different motion stimulus patterns on the performance of the OKR and multi-unit optic nerve discharge during motion of a large-field visual scene. At high contrast intensities, the OKR amplitude was significantly larger for visual scenes with a positive contrast (bright dots on a dark background) compared with those with a negative contrast. This effect persisted for luminance-matched pairs of stimuli, and was independent of contour shape. The relative biases of OKR performance along with the independence of the responses from contour shape were closely matched by the optic nerve discharge evoked by the same visual stimuli. However, the multi-unit activity of retinal ganglion cells in response to a small single moving vertical edge was strongly influenced by the light intensity in the vertical neighborhood. This suggests that the underlying mechanism of OKR biases related to contrast polarity directly derives from visual motion-processing properties of the retinal circuitry.
机译:通过凝视稳定的反射来确保在主动和无源体运动期间维持视力,该反射旨在最小化视网膜图像滑动。对于Optopetic反射(OKR),环绕的大场视觉运动形成激活眼球运动的基本刺激。移动视觉世界的特性影响认知运动感知和视觉图像速度的估计。因此,脑干介导的Visuo-Motor行为的性能也可能取决于图像场景特征。采用阶段非洲爪蟾蝌蚪的中期幼虫的半完整制剂,我们研究了一个大的运动期间相反极性,强度,轮廓形状和不同的运动刺激模式对OKR和多单元视神经放电性能的影响 - 场视觉场景。在高对比度强度下,与具有负对比度的人相比,在具有正对比度的视觉场景(暗背景上的明亮点)的视觉场景中,OKR幅度显着更大。这种效果坚持为亮度匹配的刺激,并且与轮廓形状无关。 OKR性能以及来自轮廓形状的响应的独立性的相对偏差与通过相同的视觉刺激引起的视神经放电密切匹配。然而,视网膜神经节细胞响应于小单独移动垂直边缘的多单元活性受到垂直邻域中的光强度的强烈影响。这表明与对比度极性相关的OKR偏差的基础机制直接导出视网膜电路的视觉运动处理特性。

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