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Absolute nannofossil abundance estimates: Quantifying the pros and cons of different techniques

机译:绝对纳米化石丰度估计:量化不同技术的利弊

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摘要

A quick and inexpensive method to determine absolute nannofossil abundance in deep sea sediments – the “drop” technique (modified dilution method) – was compared to two other available methods – the filtration and random settling techniques. All techniques rely on the same basic principle, under which a volume of known concentration (bulk sediment weight/mL) is distributed evenly over a known total area (glass slide or filter) to then count particles within a set of (randomly) selected fields of view. The three preparation techniques were also calibrated by spiking the samples with microbeads to approach the “real values” as closely as possible. Significant offsets in abundance estimates between methods mainly reflect bias due to the uneven distribution and/or loss of particles. We show that the drop technique is most consistent and accurate in estimating “real values” and offers similar or better reproducibility than the other techniques. The drop method also allows detection of the same trends with or without calibration with microbeads. The filtration method holds the risk to drastically underestimate absolute abundances, while the settling technique is demanding in terms of time and may suffer from advection processes. The composition of nannofossil assemblages can be reliably determined by any of the three different techniques.
机译:将一种快速,廉价的方法来确定深海沉积物中的纳米化石绝对含量-“滴”技术(改良稀释方法)与其他两种可用方法-过滤和随机沉降技术进行了比较。所有技术均基于相同的基本原理,在该基本原理下,将已知浓度的体积(大体积沉淀物重量/ mL)均匀分布在已知的总面积(载玻片或过滤器)上,然后对一组(随机)选择的场中的颗粒进行计数看法。还通过向样品添加微珠来校准这三种制备技术,以尽可能接近“真实值”。方法之间的丰度估计值的显着偏移主要反映了由于粒子分布不均匀和/或损失造成的偏差。我们证明了丢弃技术在估计“实际值”方面最一致,最准确,并且与其他技术相比,具有相似或更好的可重复性。滴落法还可以通过或不通过微珠校准来检测相同趋势。过滤方法可能会大大低估绝对丰度,而沉降技术的时间要求很高,可能会遇到对流过程。纳米化石组合物的组成可以通过三种不同技术中的任何一种可靠地确定。

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