Use of mathematical methods to determine the ichnofossils species composition

A. Mienasova, M. Krochak
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Abstract

SUMMARY The studied specimen from the basal horizon of the Kanivska suite is an agglomeration of phosphatized debris of various types of ichnofauna, cemented with a phosphateous and sand substrate. To our opinion, there are fragments of a kernel decapoda dwelling structures of Thalassinoides Ehrenberg ichnogenus and cores of the burrows of Ophiomorpha Lundgren genus. Thalassinoides Ehrenberg can be inferred from the condition of the surface, absence of a constructed wall and its size. The phosphorite features of the Ophiomorpha Lundgren have a characteristic ophiomorphic sculpture in the form of knobbles on the outer surface. The structures of this type have certain differences in the distribution and nature of phosphate material. The described kernels are interpreted as domus of fossil fauna. They were not known earlier within of the Middle Dniper area. Since the main sign of species diagnosis is kernel’s diameter, we used Akaike criteria to assess the probability of the number of species in a sample. The models consisted of 1 and 2 groups. The result showed that the most probable is the model where the sample consists of 1 group. Computations were performed using the programs tpsDig2 ver. 2.31 and the Old Past ver. 2.17. Keywords: Eocene, Kanivska suite, phosphatized remains, ichnophauna.
利用数学方法确定鱼化石的种类组成
研究样本来自Kanivska组的基底层,是各种类型的鱼动物群的磷化碎片的聚集,与磷化和砂基质粘合在一起。我们认为存在Thalassinoides Ehrenberg ichnogenus的核十足类居住结构的碎片和Ophiomorpha Lundgren属的洞穴核心。Thalassinoides Ehrenberg可以从表面的状况、没有构造的壁和它的大小来推断。龙氏蛇胚的磷矿特征具有蛇胚雕刻的特征,其外表面有凸起的形式。这类结构在磷酸盐物质的分布和性质上有一定的差异。所描述的核被解释为化石动物群的窝。在第聂伯河中部地区,他们以前并不为人所知。由于物种诊断的主要标志是核的直径,我们使用Akaike准则来评估样本中物种数量的概率。模型分为1组和2组。结果表明,最可能的是样本由1组组成的模型。使用tpsDig2 ver程序进行计算。2.31和旧的过去。2.17. 关键词:始新世,Kanivska套件,磷化遗骸,鱼龙。
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