比例(比率)
制造工艺
放大
过程(计算)
直线(几何图形)
拉曼光谱
工艺工程
制造工程
工业工程
工程类
计算机科学
材料科学
数学
物理
复合材料
几何学
量子力学
经典力学
操作系统
光学
作者
Zhe Lang,Gong Chen,Yuanhua Shao,Zhijun Zhang,Yang Yang,Ziran Tang,Huilin Zhu,S.B. Dong,Hang Zhou,Weichang Zhou
摘要
Abstract This study introduces an approach to enhance the Raman calibration model cross‐scale prediction capabilities in cell cultures. Our investigation centers on the improvement of Raman calibration models along with the scaling‐up of mammalian cell culture processes. Initially, we observed that integrating data from a 50 L run into the original dataset at lab‐scale was an effective strategy for improving prediction accuracy on 1000 L run. Further investigation indicated that this improvement could be attributed to the similarity between the spectra of 50 L with 1000 L. Subsequent investigation unveiled that the spectral variations primarily stemmed from differences between the instruments. This was verified through a direct comparison of two Raman analyzers. Then two pairwise spectral transformation methods, direct standardization (DS) and piecewise DS, both exhibited superior performance in predicting. This research underscores the importance of Raman spectral transfer method to alleviate instrument‐to‐instrument variations in cross‐scale monitoring of cell culture processes.
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