Author/Authors :
Yu, Xuefei Southern Medical University - Guangzhou, China , Lin, Liangzhuo Southern Medical University - Guangzhou, China , Shen, Jie Third Afliated Hospital of Southern Medical University - Guangzhou, China , Chen, Zhi Third Afliated Hospital of Southern Medical University - Guangzhou, China , Jian, Jun Guangzhou Power Supply Bureau Co - Huadu Branch - Guangzhou, China , Li, Bin Southern Medical University - Guangzhou, China , Xuegang Xin, Sherman School of Medicine - South China University of Technology - Guangzhou, China
Abstract :
The mean amplitude of glycemic excursions (MAGE) is an essential index for glycemic variability assessment, which is treated as a
key reference for blood glucose controlling at clinic. However, the traditional “ruler and pencil” manual method for the calculation
of MAGE is time-consuming and prone to error due to the huge data size, making the development of robust computer-aided
program an urgent requirement. Although several sofware products are available instead of manual calculation, poor agreement
among them is reported. Terefore, more studies are required in this feld. In this paper, we developed a mathematical algorithm
based on integer nonlinear programming. Following the proposed mathematical method, an open-code computer program named
MAGECAA v1.0 was developed and validated. The results of the statistical analysis indicated that the developed program was
robust compared to the manual method. The agreement among the developed program and currently available popular sofware
is satisfed, indicating that the worry about the disagreement among diferent sofware products is not necessary. The open-code
programmable algorithm is an extra resource for those peers who are interested in the related study on methodology in the future.
Keywords :
Open-Code , Algorithm , Glycemic , MAGE