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Prey detection mechanism of elasmobranchs

机译:弹bra的猎物检测机制

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Elasmobranchs can detect a little amount of electric fields and they have characteristic approach strategies to find an electric dipole source generated by prey or conspecifics. They appear to align the body at a constant angle with the current flow line of the electric field while swimming towards prey. However, it has not been studied how they process the perception of electric fields for the approach behaviour or what kind of neural mechanism is used. We use a model of electrosensory perception with electrodynamics and explore a possible approach mechanism based on the sensory landscape distributed on electroreceptors. This paper presents that elasmobranchs can estimate the direction of the electric field by swaying their head, which will be a basis information for their particular approach behaviour. A velocity profile of voltage gradients and intensity difference among the ampullary clusters can be another cues to detect a prey source.
机译:弹性分支可以检测到少量电场,并且它们具有独特的方法策略来查找由猎物或同种生物产生的电偶极子源。它们似乎在朝向猎物游泳时将身体与电场的电流线成恒定角度对齐。但是,尚未研究它们如何处理接近行为的电场感知或使用了哪种神经机制。我们使用具有电动力学的电感应知觉模型,并基于分布在电感受器上的感官景观探索可能的接近机制。本文提出,弹性分支可以通过摇头来估计电场的方向,这将是它们的特殊进近行为的基础信息。壶腹簇之间的电压梯度和强度差的速度分布图可能是检测猎物来源的另一个线索。

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