首页> 外文期刊>Journal of periodontal research >Calibration of the Periotron 8000 and 6000 by polynomial regression.
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Calibration of the Periotron 8000 and 6000 by polynomial regression.

机译:通过多项式回归校准PerioTron 8000和6000。

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This paper reports the detailed calibration of the new Periotron 8000 with different fluids and uses the method of least squares to derive polynomial regression equations up to the 6th order, to investigate the most accurate descriptor of the resulting calibration lines. The use of a 4th order polynomial regression equation (recommended by the manufacturer) provided better coefficients of determination (R2: 0.999) and root mean square errors (RMSE = 1.6) than either linear regression (R2: 0.986, RMSE = 10.9) or quadratic models (R2: 0.998, RMSE = 3.2). Data derived using the manufacturer's MLCONVERT software program lacked accuracy and incurred large errors for volumes > 0.5 microliter. Calibrations performed on one day could be used with accuracy to derive volumes > 0.1 microliter collected on subsequent days, when using the same machine (s.d. for residuals plot = 2.49 Periotron units), but this was not the case for different machines (s.d. = 9.57 Periotron units). Varying serum protein concentration by up to 500% had a negligible effect on calculated volumes above 0.1 microliter. We conclude that the Periotron 8000 is at least as reliable a machine as the Periotron 6000, and that the calibration lines for both machines are best described using 4th order polynomial regression equations and "look-up" tables, rather than quadratic (Periotron 6000) or the manufacturer's software (Periotron 8000). Serum seems to be an acceptable GCF substitute for calibrations, which can be performed 1 day, and used on subsequent days for a given machine and for volumes above 0.1 microliter.
机译:本文报告了新的Periotron 8000与不同的流体的详细校准,并使用最小二乘法将多项式回归方程达到第6顺序,以研究所得校准线的最精确描述符。使用第四阶多项式回归方程(制造商推荐)提供了更好的确定系数(R2:0.999),并且均比线性回归(R2:0.986,RMSE = 10.9)或二次的均线(RMSE = 1.6)模型(R2:0.998,RMSE = 3.2)。使用制造商的MLConvert软件程序导出的数据缺乏准确性并导致卷> 0.5微升的大错误。在一天内进行的校准可以在使用同一台机器(SD为残差= 2.49 PerioTron单位)时获得的精确度,以便在随后的几天收集的校准。 Periotron单位)。改变血清蛋白浓度高达500%对计算的体积的效果可忽略于0.1微升。我们得出结论,PerioTron 8000至少可以是可靠的机器作为PerioTron 6000,并且两台机器的校准线使用第4阶多项式回归方程和“查找”表格而不是二次(Periotron 6000)。或制造商的软件(Periotron 8000)。血清似乎是可接受的GCF替代校准,其可以进行1天,并且在给定机器的后续天中使用,并且用于高于0.1微升的数量。

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