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The influence of vertically and horizontally aligned visual distractors on aurally guided saccadic eye movements

机译:垂直和水平对齐的视觉干扰物对耳引导的眼跳运动的影响

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Eye movements towards a new target can be guided or disrupted by input from multiple modalities. The degree of oculomotor competition evoked by a distractor depends on both distractor and target properties, such as distractor salience or certainty regarding the target location. The ability to localize the target is particularly important when studying saccades made towards auditory targets, since determination of elevation and azimuth of a sound are based on different processes, and these processes may be affected independently by a distractor. We investigated the effects of a visual distractor on saccadic eye movements made to an auditory target in a two-dimensional plane. Results showed that the competition evoked by a vertical visual distractor was stronger compared with a horizontal visual distractor. The eye movements that were not captured by the vertical visual distractor were still influenced by it: a deviation of endpoints was seen in the direction of the visual distractor. Furthermore, the interference evoked by a high-contrast visual distractor was stronger compared with low-contrast visual stimuli, which was reflected by a faster initiation of an eye movement towards the high-contrast visual distractor and a stronger shift of endpoints in the direction of the high-contrast visual distractor. Together, these findings show that the influence of a visual distractor on aurally guided eye movements depends strongly on its location relative to the target, and to a lesser extent, on stimulus contrast.
机译:可以通过多种方式的输入来引导或打乱朝向新目标的眼球运动。牵引器引起的动眼竞赛的程度取决于牵引器和目标属性,例如牵引器的显着性或有关目标位置的确定性。在研究针对听觉目标的扫视时,定位目标的能力尤其重要,因为声音的高低和方位角的确定是基于不同的过程,并且这些过程可能会受到干扰因素的独立影响。我们调查了视觉干扰因素对在二维平面上对听觉目标进行的眼跳运动的影响。结果表明,与水平视觉干扰物相比,垂直视觉干扰物引起的竞争更为激烈。垂直视力分散器未捕获的眼睛运动仍受其影响:在视力分散器的方向上看到了端点的偏差。此外,与低对比度的视觉刺激相比,高对比度的视觉干扰物引起的干扰更强,这反映为眼睛朝着高对比度的视觉干扰物更快地开始运动,并且端点朝着高对比度的视觉干扰物更强地移动。高对比度的视觉干扰物。总之,这些发现表明,视觉干扰物对听觉引导的眼球运动的影响在很大程度上取决于其相对于目标的位置,并且在较小程度上取决于刺激对比。

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