首页> 美国卫生研究院文献>Journal of the Royal Society Interface >Fractional rate of change of swim-bladder volume is reliably related to absolute depth during vertical displacements in teleost fish
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Fractional rate of change of swim-bladder volume is reliably related to absolute depth during vertical displacements in teleost fish

机译:硬骨鱼在垂直位移过程中游泳囊体积的分数变化率确实与绝对深度有关

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摘要

Fish must orient in three dimensions as they navigate through space, but it is unknown whether they are assisted by a sense of depth. In principle, depth can be estimated directly from hydrostatic pressure, but although teleost fish are exquisitely sensitive to changes in pressure, they appear unable to measure absolute pressure. Teleosts sense changes in pressure via changes in the volume of their gas-filled swim-bladder, but because the amount of gas it contains is varied to regulate buoyancy, this cannot act as a long-term steady reference for inferring absolute pressure. In consequence, it is generally thought that teleosts are unable to sense depth using hydrostatic pressure. Here, we overturn this received wisdom by showing from a theoretical physical perspective that absolute depth could be estimated during fast, steady vertical displacements by combining a measurement of vertical speed with a measurement of the fractional rate of change of swim-bladder volume. This mechanism works even if the amount of gas in the swim-bladder varies, provided that this variation occurs over much longer time scales than changes in volume during displacements. There is therefore no a priori physical justification for assuming that teleost fish cannot sense absolute depth by using hydrostatic pressure cues.
机译:鱼在太空中航行时必须在三个方向上定向,但是未知它们是否具有深度感。原则上,深度可以直接从静水压力估算,但是硬骨鱼对压力变化非常敏感,但它们似乎无法测量绝对压力。硬骨鱼类通过充气气囊的体积变化来感知压力的变化,但是由于其中所含的气体量变化以调节浮力,因此不能作为推断绝对压力的长期稳定参考。因此,通常认为硬骨鱼不能使用静水压力来感应深度。在这里,我们通过从理论物理角度证明可以通过将垂直速度的测量值与游泳囊体积变化率的分数测量值相结合来估计快速,稳定的垂直位移期间的绝对深度来推翻这种公认的观点。即使游泳膀胱中的气体量发生变化,该机制也可以工作,但前提是这种变化发生的时间尺度要比位移时的体积变化长得多。因此,没有先验的物理依据来假设硬骨鱼不能通过使用静水压力提示来感知绝对深度。

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