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A conceptual model for unbiased calculations of invertebrate abundances from freeze core samples

机译:来自冻结核心样本无偏见计算无偏见计算的概念模型

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摘要

Freeze coring is a commonly used method for the investigation of the bed sediment fauna of rivers. It is considered to produce quantitative numbers of invertebrate abundance in different depth layers. Calculations of abundance use total volume of the freeze core sample as spatial reference. This definition of sample volume is incorrect. In the present, study freeze core samples are shown to consist of two parts: (1) a cylindrical inner core in which the pore water has turned into ice and (2) all parts of sediment, which protrude from this inner core. Invertebrates are fixed only within the inner core since the protruding parts contain no pores and therefore no invertebrate habitat. In samples from gravel rivers, the protruding parts form a considerable bias, which depends on the size of the core and the coarseness of the sediment. In the present study, total volume of individual core segments varied between 97 and 248% of actual sample volume. The inner core can be measured directly to avoid the bias. The procedure is proposed for future studies to produce unbiased, comparable values of invertebrate abundance and consequently reliable data on vertical distribution.
机译:冻结是一种常用的方法,用于调查河流床沉积物粪便。它被认为在不同深度层中产生定量数量的无脊椎动物丰度。丰度的计算使用冻结芯样品的总体积作为空间参考。样本量的定义是不正确的。在目前,研究冻结核心样品被显示为两个部分:(1)圆柱形内芯,其中孔隙水变成冰和(2)所有部分的沉积物,从而从该内核突出。无脊椎动物仅固定在内芯内,因为突出部件不含毛孔,因此没有无脊椎动物栖息地。在来自砾石河的样品中,突出部件形成相当大的偏置,这取决于芯的尺寸和沉积物的粗糙度。在本研究中,单个核段的总体积在97%至248%之间变化,实际样品体积的248%。内芯可以直接测量以避免偏置。提出了未来研究的程序,以产生无偏见,无脊椎动物丰富的可比价值,因此可靠的垂直分布数据。

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