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Assessing continuous sensory information encoding capacity by a biomimetic dynamic sonar emitter

机译:通过仿生动态声纳发射器评估连续感官信息编码能力

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Bat species in the rhinolophid and hipposiderid families can deform the shapes of their noseleaves (ultrasonic emission baffles) in synchrony with emission of the biosonar pulses. Prior work has shown that these physical deformations of a diffracting baffle can add a time-variant quality to the emitted pulses. Whereas conventional sonar emitters can be characterized by gain values that are functions of direction (e.g. azimuth and elevation) and frequency only, the biosonar emission characteristics in these bat species is a function of direction, frequency, and time. Prior work has indicated that the unique emission time variance seen in the bats could support the encoding of additional sensory information. In the work presented here, a biomimetic noseleaf has been used to collect a densely sampled representation of a time-variant emission characteristics. This data set has been analyzed using advanced (nearest-neighbor based) estimators for information theoretic measures such as mutual information and relative entropy. The findings from this analysis suggest three hypotheses regarding the nature of these biomimetic time-variant emitter characteristics: (i) its complexity reflects all independent physical dimensions (ii) coding capacity along the time and frequency dimensions does not differ substantially, and (iii) sensory information is accumulated continuously along a time-variant pulse.
机译:鼻咽癌和河马家族中的蝙蝠物种可以使其鼻子(超声波发射挡板)的形状变形,并在生物气体脉冲的发射中使其同步。事先工作表明,衍射挡板的这些物理变形可以向发射的脉冲添加时间变体质量。然而,传统的声纳发射器可以通过作为方向(例如方位角和升高)和频率的函数的增益值来表征,但是这些蝙蝠物种中的生物气体发射特性是方向,频率和时间的函数。事先工作表明,蝙蝠中所见的独特发射时间方差可以支持额外的感官信息的编码。在此处呈现的工作中,已经使用生物素寡替乳素来收集时间变体排放特性的密集采样表示。使用高级(最近邻邻的)估计分析了该数据集,用于信息理论措施,例如相互信息和相对熵。该分析的发现表明,关于这些仿生时间变体发射器特征的性质的三个假设:(i)其复杂性反映了所有独立的物理尺寸(II)沿时间和频率尺寸的编码容量并没有大幅不同,并且(III)感官信息沿着时变脉冲连续累积。

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