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首页> 外文期刊>Journal of Apicultural Research >Estimation of distance and electric impedance of capacitive objects in the weakly electric fish Gnathonemus petersii
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Estimation of distance and electric impedance of capacitive objects in the weakly electric fish Gnathonemus petersii

机译:弱电器龙牛肉叶片中电容物体距离和电阻抗的估计

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摘要

During active electrolocation, the weakly electric fish Gnathonemus petersii judges the distance and impedance of nearby objects. Capacitive objects, which modulate local amplitude and waveform of the fish's electric probing signals, cast amplitude and waveform images onto the fish's electroreceptive skin. For an unambiguous estimation of the impedance and distance of an object, the animal has to deal with multiple dependencies of object and image parameters. Based on experimentally recorded amplitude and waveform images, we investigated possible strategies of the fish to unequivocally determine both the distance and the impedance of capacitive objects. We show that the relative slope in amplitude images, but not in waveform images, is independent of object impedance and is a measure of object distance. Distance-invariant impedance estimators were obtained by two different analytical strategies. The peak modulations of both image types were 'calibrated' with the relative slope of the amplitude image. Impedance estimators were obtained whenever these pairs of image features (peak and relative slope) were related dynamically over two consecutive distances. A static impedance estimator termed 'electric colour' is postulated to arise from the relationship of an amplitude and waveform image. Our results confirm that electric colour is indeed unaffected by object distance. For electric colour estimation we suggest a minimalistic approach of just relating the peak modulations of both image types to the basal amplitude and waveform condition. Our results are discussed with regard to the anatomical and physiological organization of the fish's electrosensory neuronal pathways and behavioural strategies of electrolocating fish.
机译:在活性电力位置期间,弱电器g肠毕业区佩德利判断附近物体的距离和阻抗。电容对象,调制鱼的电探测信号,铸造幅度和波形图像的局部幅度和波形,进入鱼的电抗性皮肤上。为了明确地估计对象的阻抗和距离,动物必须处理对象和图像参数的多个依赖性。基于通过实验记录的幅度和波形图像,我们调查了鱼类的可能策略,以明确地确定电容物体的距离和阻抗。我们表明,幅度图像中的相对斜率,但不是波形图像,与对象阻抗无关,并且是物体距离的量度。通过两种不同的分析策略获得距离不变阻抗估计器。使用幅度图像的相对斜率“校准”两种图像类型的峰值调制。只要这些图像特征(峰值和相对斜率)在两个连续的距离上动态相关,就获得阻抗估计器。将静态阻抗估计器称为“电色”,假设从幅度和波形图像的关系出现。我们的结果证实,电气颜色确实不受物体距离的影响。对于电色估计,我们建议刚刚将两种图像类型的峰值调制与基底幅度和波形条件相关的方法。我们的结果是关于鱼类电辨能神经元途径和电容鱼类的行为策略的解剖和生理组织。

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