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Internal pore measurements on macroperforate planktonic Foraminifera as an alternative morphometric approach

机译:大孔浮游有孔虫的内部孔测量,作为另一种形态计量学方法

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Because of the lack of genetic control on extinct species, the morphologic approach remains the only way of identifying fossil Foraminifera. In addition to comparative description of gross shell morphology, morphometry became more important in recent years and was extended to encompass the ultrastructure of the shells. In particular, some studies focused on porosity, as determined by the pore diameters plotted against the number of pores per given surface. However, taking into account the poor preservation and recrystallization, which often affects and characterizes fossil specimens, and/or the deficiencies connected to the interpretation of scanning electron microscope images, pore measurements are often distorted, limited in number and lacking precision, and thus unreliable. We demonstrate that, by measuring the pores from inside the shell and individually, it is possible to obtain numerous and precise data either on an individual basis or for statistical purposes. This study also suggests that in the Early Miocene Globigerinoides, which is generally strongly susceptible for dissolution, the dissolution proceeds from the external towards the internal side of the shell.
机译:由于对已灭绝物种缺乏遗传控制,因此形态学方法仍然是鉴定化石有孔虫的唯一方法。除了对总体壳形态的比较描述外,近年来形态学变得越来越重要,并扩展到涵盖了壳的超微结构。特别地,一些研究集中在孔隙率上,孔隙率由相对于每个给定表面的孔数绘制的孔径确定。但是,考虑到经常影响和表征化石标本的保存和重结晶性差,和/或与扫描电子显微镜图像的解释有关的缺陷,孔隙测量值经常会失真,数量有限且缺乏精度,因此不可靠。我们证明,通过从壳内部和单独地测量孔,有可能在单独的基础上或出于统计目的而获得大量且精确的数据。这项研究还表明,在通常非常容易溶解的中新世早期globigerinoides中,溶解从壳的外部向内部进行。

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