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Mathematical correlation between biomaterial and cellular parameters-Critical reflection of statistics.

机译:生物材料与细胞参数之间的数学相关性-统计的关键反映。

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For mathematical modelling of the biomaterial-cell contact, it is necessary to find both parameters characterizing physical and chemical properties of the material surface and also such describing the reaction of the adhering cells. Only those material and cell parameters that correlate with each other are applicable to model this contact mathematically. Only few papers are dealing with this special problem. The aim of this paper is to present results of physical/chemical and biological investigations made on differently modified rough titanium implant surfaces in order to find out only the correlating parameters. Furthermore we discuss several ways to apply statistical methods to the correlation problem. Only few ones of all investigated parameters both on material and on cellular side were applicable for correlation. For example we found in our studies that fractal structure parameter topothesy has influence on the spreading behaviour of the osteoblastic cells. However the value of the correlation coefficient and its statistical significance heavily depend on the method of averaging the available data. Especially the biological data (spreading area) were afflicted with relatively high error up to 30%. Averaging of this data masks the true facts. That is why the correlation coefficient considerably decreases if the biological parameters are not averaged. On the other hand, the statistical reliability increases due to the higher number of investigated cases. Critical error discussion is necessary in statistical correlation between material and biological parameters. Often the results are heavily influenced by the statistical handling of data, especially if only few data are available. May be that new unconventional methods like bootstrap method can show a way out of this dilemma.
机译:为了对生物材料-细胞接触进行数学建模,必须找到表征材料表面的物理和化学性质的参数,以及描述粘附细胞反应的参数。只有相互关联的那些材料和单元参数才适用于对该接触进行数学建模。只有很少的论文处理这个特殊问题。本文的目的是介绍对改性钛粗糙植入物表面进行物理/化学和生物学研究的结果,以便仅找出相关参数。此外,我们讨论了将统计方法应用于相关问题的几种方法。在材料和细胞方面,所有研究参数中只有少数适​​用于相关。例如,我们在研究中发现,分形结构参数的粘性对成骨细胞的扩散行为有影响。但是,相关系数的值及其统计意义在很大程度上取决于对可用数据进行平均的方法。尤其是生物学数据(传播区域)受到了高达30%的较高误差的折磨。该数据的平均值掩盖了真实的事实。因此,如果不对生物学参数进行平均,则相关系数会大大降低。另一方面,由于调查的案件数量增加,统计的可靠性增加。在材料和生物学参数之间的统计相关性中,关键错误讨论是必要的。通常,结果会受到数据统计处理的严重影响,尤其是在只有很少数据可用的情况下。可能新的非常规方法(例如引导程序方法)可以显示出摆脱这种困境的方法。

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