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The combined influence of body size and density on cohesive sediment resuspension by bioturbators

机译:体尺寸和密度对生物不承受的粘性沉积物重悬的综合影响

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摘要

We propose an empirical framework to scale the effects of bioturbation on sediment resuspension to population bioturbation activity, approximated as population metabolic rate. Individual metabolic rates have been estimated as functions of body size and extrapolated to population level. We used experimental flumes to test this approach across different types of marine, soft-sediment bioturbators. We observed that a large part of the variance in biota-mediated sediment resuspension can be explained by a positive relationship with population metabolic rate. Other mechanisms can strongly influence the outcome, such as bioturbation of deep sediment strata, biotic interactions with hydrodynamic stress and overlapping areas of influence must be further investigated. By relating the biota-mediated changes in resuspended sediment to metabolism, we can place our observations within the broader context of the metabolic theory of ecology and to formulate general expectations about changes in biota-mediated sediment resuspension in response to changes in population structure and climate change.
机译:我们提出了一个经验框架,从而扩展生物扰动对沉积物重悬的影响,以达到人口生物相关活动,近似为人口代谢率。据估计,个体代谢率被估计为身体尺寸并推断为人口水平。我们使用实验起水段以跨越不同类型的海洋,软沉积物生物风格测试这种方法。我们观察到Biota介导的沉积物重悬浮中的大部分方差可以通过与人群代谢率的阳性关系来解释。其他机制可以强烈影响诸如深沉沉积地层的生物干扰,必须进一步研究与流体动力应力的生物相互作用和相反的影响区域。通过将Biota介导的沉积物与代谢的重悬沉积物相关,我们可以在更广泛的生态学理论的更广泛的背景下,制定关于Biota介导的沉积物重新悬浮的变化的一般期望,以应对人口结构和气候变化改变。

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