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Evaluating Clinical Accuracy of Continuous Glucose Monitoring Systems:Continuous Glucose – Error Grid Analysis (CG-EGA)

机译:评估连续血糖监测系统的临床准确性:连续葡萄糖–误差网格分析(CG-EGA)

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Continuous Glucose Sensors (CGS) generate rich and informative continuous data streams which have the potential to improve the glycemic condition of the patient with diabetes. Such data are critical to the development of closed loop systems for automated glycemic control. Thus the numerical and clinical accuracy of such must be assured.nnAlthough numerical point accuracy of these systems has been described using traditional statistics, there are no requirements, as of yet, for determining and reporting the rate (trend) accuracy of the data generated. In addition, little attention has been paid to the clinical accuracy. of these systems. Continuous Glucose-Error Grid Analysis (CG-EGA) is the only method currently available for assessing the clinical accuracy of such data and reporting this accuracy for each of the relevant glycemic ranges, - hypoglycemia, euglycemia, hyperglycemia.nnThis manuscript reviews the development of the original Error Grid Analysis (EGA) and describes its inadequacies when used to determine point accuracy of CGS systems. The development of CG-EGA as a logical extension of EGA for use with CGS is described in detail and examples of how it can be used to describe the clinical accuracy of several CGS are shown. Information is presented on how to obtain assistance with the use of CG-EGA.
机译:连续血糖传感器(CGS)生成丰富且信息丰富的连续数据流,这些数据流有可能改善糖尿病患者的血糖状况。这些数据对于开发用于自动血糖控制的闭环系统至关重要。因此,必须确保此类数据的数值和临床准确性。尽管已经使用传统的统计数据描述了这些系统的数值点准确性,但到目前为止,对于确定和报告所生成数据的速率(趋势)准确性尚无任何要求。另外,很少关注临床准确性。这些系统。连续葡萄糖误差网格分析(CG-EGA)是目前唯一可用于评估此类数据的临床准确性并报告每个相关血糖范围(低血糖,正常血糖,高血糖)的准确性的方法。原始的误差网格分析(EGA)并描述了其在确定CGS系统的点精度时的不足之处。详细介绍了CG-EGA作为与CGS一起使用的EGA的逻辑扩展的开发,并显示了如何使用它来描述多个CGS的临床准确性的示例。介绍了有关如何使用CG-EGA获得帮助的信​​息。

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