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首页> 外文期刊>Physiological Reports >Background visual motion affects responses of an insect motion?¢????sensitive neuron to objects deviating from a collision course
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Background visual motion affects responses of an insect motion?¢????sensitive neuron to objects deviating from a collision course

机译:背景视觉运动影响昆虫运动的敏感性神经元对偏离碰撞过程的物体的响应

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Stimulus complexity affects the response of looming sensitive neurons in a variety of animal taxa. The Lobula Giant Movement Detector/Descending Contralateral Movement Detector (LGMD/DCMD) pathway is well?¢????characterized in the locust visual system. It responds to simple objects approaching on a direct collision course (i.e., looming) as well as complex motion defined by changes in stimulus velocity, trajectory, and transitions, all of which are affected by the presence or absence of background visual motion. In this study, we focused on DCMD responses to objects transitioning away from a collision course, which emulates a successful locust avoidance behavior. We presented each of 20 locusts with a sequence of complex three?¢????dimensional visual stimuli in simple, scattered, and progressive flow field backgrounds while simultaneously recording DCMD activity extracellularly. DCMD responses to looming stimuli were generally characteristic irrespective of stimulus background. However, changing background complexity affected, peak firing rates, peak time, and caused changes in peak rise and fall phases. The DCMD response to complex object motion also varied with the azimuthal approach angle and the dynamics of object edge expansion. These data fit with an existing correlational model that relates expansion properties to firing rate modulation during trajectory changes.
机译:刺激的复杂性会影响各种动物类群中隐约出现的敏感神经元的反应。在蝗虫视觉系统中,Lobula巨人运动检测器/下降对侧运动检测器(LGMD / DCMD)路径具有很好的特征。它对在直接碰撞过程(即迫在眉睫)上接近的简单物体以及由刺激速度,轨迹和过渡变化定义的复杂运动做出响应,所有这些都受背景视觉运动的存在或不存在的影响。在这项研究中,我们集中于DCMD对从碰撞过程过渡而来的物体的响应,这模拟了成功的蝗虫回避行为。我们向20个蝗虫中的每个蝗虫展示了一系列简单的,分散的和渐进的流场背景下的复杂三维视觉刺激序列,同时在细胞外记录了DCMD活性。 DCMD对迫在眉睫的刺激的反应通常是特征性的,而与刺激的背景无关。但是,变化的背景复杂性会影响峰值发射速率,峰值时间,并导致峰值上升和下降阶段的变化。 DCMD对复杂物体运动的响应也随方位角和物体边缘扩展的动力学而变化。这些数据与现有的相关模型相吻合,该模型将膨胀特性与弹道变化期间的发射速率调制相关联。

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