首页> 外文期刊>The Journal of Experimental Biology >Predictive saccade in the absence of smooth pursuit: interception of moving targets in the archer fish
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Predictive saccade in the absence of smooth pursuit: interception of moving targets in the archer fish

机译:在没有平稳追踪的情况下进行预测性扫视:在弓箭手鱼中拦截移动目标

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Interception of fast-moving targets is a demanding task many animals solve. To handle it successfully, mammals employ both saccadic and smooth pursuit eye movements in order to confine the target to their area centralis. But how can non-mammalian vertebrates, which lack smooth pursuit, intercept moving targets? We studied this question by exploring eye movement strategies employed by archer fish, an animal that possesses an area centralis, lacks smooth pursuit eye movements, but can intercept moving targets by shooting jets of water at them. We tracked the gaze direction of fish during interception of moving targets and found that they employ saccadic eye movements based on prediction of target position when it is hit. The fish fixates on the target’s initial position for ~0.2 s from the onset of its motion, a time period used to predict whether a shot can be made before the projection of the target exits the area centralis. If the prediction indicates otherwise, the fish performs a saccade that overshoots the center of gaze beyond the present target projection on the retina, such that after the saccade the moving target remains inside the area centralis long enough to prepare and perform a shot. These results add to the growing body of knowledge on biological target tracking and may shed light on the mechanism underlying this behavior in other animals with no neural system for the generation of smooth pursuit eye movements.
机译:拦截快速移动的目标是许多动物解决的一项艰巨任务。为了成功处理该问题,哺乳动物会采用扫视和平稳追踪眼球运动,以将目标限制在其中央区域。但是缺乏顺畅追赶的非哺乳动物脊椎动物如何截获活动目标呢?我们通过探索弓箭鱼所采用的眼球运动策略研究了这个问题,弓箭鱼是一种具有中央区域的动物,缺乏平稳的追逐眼球运动,但可以通过向其喷射水流来拦截运动的目标。我们在拦截运动目标期间跟踪了鱼的视线方向,发现它们根据目标位置被击中时的预测采用眼球运动。鱼从运动开始就固定在目标的初始位置上约0.2 s,这段时间用于预测在目标的投影离开中心区域之前是否可以进行射击。如果预测相反,则鱼将进行一次扫视,以超出凝视中心超出视网膜上当前目标的投射范围,以便在扫视之后,移动目标停留在中心区域内的时间足以准备并进行射击。这些结果增加了有关生物目标跟踪的知识,并且可能阐明了其他动物中没有这种行为的潜在机制,这些动物没有神经系统来产生平滑的追踪眼球运动。

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