Clin Chem Lab Med. 2015 May;53(6):913-8. doi: 10.1515/cclm-2014-1149.
Internal quality control (IQC) is an everyday practice described in several documents. Its planning requires the definition of quality goals and a documentation system able to provide alarms as soon as the goals are not reached. We propose the use of the uncertainty approach to develop an effective alarm system.
The use of the uncertainty information to verify the conformity to specifications is described. A top-down approach to the definition of the uncertainty of the method is described. Once the uncertainty is calculated, the complete measurement result (result ± expanded uncertainty) is compared with the maximum permissible error (quality goal). An alternative and more immediate presentation is obtained defining an "acceptance zone" derived from the maximum permissible error reduced on either sides by expanded uncertainty. This approach is applied to two analytes: glucose and creatinine.
The relationship between quality goal and expanded uncertainty defines the width of the acceptance zone; if uncertainty is equal or larger than the quality goal, the goal is not attainable.
The proposed approach uses an information, expanded uncertainty, that each laboratory seeking ISO 15189 accreditation should already have. The data presentation is immediate and easy to interpret allowing a direct comparison between the performance of the method and the quality goals.
内部质量控制(IQC)是在几份文件中描述的日常实践。其规划需要定义质量目标和文档系统,以便在未达到目标时提供警报。我们建议使用不确定性方法来开发有效的报警系统。
描述了使用不确定性信息来验证是否符合规范。描述了一种自上而下的方法来定义方法的不确定性。一旦计算出不确定性,就将完整的测量结果(结果±扩展不确定度)与最大允许误差(质量目标)进行比较。通过定义从最大允许误差两侧减去扩展不确定度得到的“可接受区”,可以获得一种替代的更直接的表示方法。该方法应用于两种分析物:葡萄糖和肌酐。
质量目标和扩展不确定度之间的关系定义了可接受区的宽度;如果不确定性等于或大于质量目标,则无法达到该目标。
所提出的方法使用了每个寻求 ISO 15189 认证的实验室都应该已经具备的信息,即扩展不确定度。数据表示直接且易于解释,允许直接比较方法的性能和质量目标。