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Aligning Lung Function Equipment and Reference Values in Adults

机译:对准肺功能设备和成人参考值

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Background: When introducing new equipment or reference equations into the lung function laboratory, systematic z-score deviations could arise due to local differences in population or equipment. Objective: To propose a workable method for aligning reference equations with lung function equipment. Method: Using two cases of equipment transition in our laboratory as a test case, we first performed lung function testing after the transition, on a control group of 40 normal young adults (20 male/20 female; 20-30 years old). For those indices with an average z-score in excess of +/- 0.5, adapted reference values were obtained by an offset or scaling factor on the M coefficient with the so-called lambda-mu-sigma (LMS) method recommended by the Global Lung Function Initiative, and the z-scores were computed again. Results: Following a transition involving instrumental dead space reduction, the lung clearance index was predictably reduced, resulting in a mean (+/- SD) z-score of -1.9 (+/- 1.1) in the control group; by adapting the reference values with an offset on M, the z-score became -0.1 (+/- 1.1). Applying the same method to a transition of standard lung function equipment, the z-scores became centered around zero in the control group, but also became properly aligned in a test group of 81 other subjects spanning a wider age range (20-80 years). Conclusions: We proposed and verified a method for aligning local equipment with reference values obtained elsewhere, or following a local change in equipment. The key is to measure a relatively small young adult group, identifying those lung function indices that need adaptation based on z-scores, in order to then obtain laboratory-specific reference values that can be applied over the entire age range.
机译:背景:当将新设备或参考方程引入肺功能实验室时,由于人口或设备的局部差异,可能会出现系统的Z分数偏差。目的:提出一种可行的方法,用于将参考方程与肺功能设备对准。方法:在我们的实验室中使用两种设备过渡作为测试用例,我们首先在过渡后进行肺功能测试,对照组40名正常年轻人(20名男性/ 20名女性20 - 30岁)。对于超过+/- 0.5的平均Z分数的那些指数,通过偏移或M个系数的偏移或缩放因子与全局推荐的所谓的Lambda-Mu-Sigma(LMS)方法获得适应的参考值。肺功能计划,再次计算Z分数。结果:在涉及仪器停止空间的转变后,肺部间隙指数可预见到对照组的平均值(+/- Sd)Z分数为-1.9(+/- 1.1);通过在M上使用偏移量来调整参考值,Z-Score成为-0.1(+/- 1.1)。将相同的方法应用于标准肺功能设备的过渡,Z分数在对照组中归零于零,但在81个其他科目的测试组中也变得适当对齐(20-80岁) 。结论:我们提出并验证了一种用于将当地设备与其他地方获得的参考值对准的方法,或者在设备中的局部变化之后。关键是测量一个相对小的年轻成人组,识别需要基于Z分数适应的那些肺功能指标,以便获得可以在整个年龄范围内应用的实验室特异性参考值。

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