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首页> 外文期刊>Nuclear Medicine Communications >Influence of errors in sampling time and in activity measurement on the single sample clearance determination.
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Influence of errors in sampling time and in activity measurement on the single sample clearance determination.

机译:采样时间和活动性测量中的误差对单个样品清除率测定的影响。

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INTRODUCTION: Plasma clearance rate of 51Cr-EDTA estimated by using one blood sample is commonly used for the calculation of glomerular filtration rate. AIM: To estimate the error on single-sample clearance determination induced by errors in sampling time and activity measurement, and to compare it with the error observed on the clearance determination obtained using the slope-intercept method. METHODS: Forty-five adult patients were chosen from a data base of 51Cr-EDTA plasma clearance values determined by using two blood samples taken around 2 and 4 h. Patients were selected in such a way as to include clearances from 30 ml.min-1 to 155 ml.min-1, with steps of 3 ml.min-1. Based on the slope and the intercept of the slope with the y-axis, the plasma concentration at exactly 2 and 4 h was determined. Normally distributed random errors were then introduced in the sampling time (SD of 0, 1 and 2 min) as well as in the activity measurement (SD of 0, 1, 2 and 5%). Then, clearance was calculated using two single-sample methods (i.e. the algorithms of Groth and Tauxe), and the slope-intercept method, which requires two blood samples. For each setting, the simulation was repeated 200 times. The effects on clearance of a random error on the time sampling and/or the activity measurement were then evaluated. RESULTS: The error on single-sample clearance induced by a 2 min error in sampling time associated with a 5% error in activity measurement was negligible. For all clearance levels, the SD of the error on the calculated clearance was less than 3.8 ml.min-1. Whatever algorithm was chosen, the errors on the single-sample clearance were systematically lower than those observed with the slope-intercept method, for the whole clearance range. CONCLUSION: Errors in sampling time and in activity measurement induced only a very small error on the single-sample EDTA clearance, which is systematically lower compared to that observed on the slope-intercept method using two blood samples.
机译:简介:用一种血液样本估算的51Cr-EDTA血浆清除率通常用于计算肾小球滤过率。目的:估算采样时间和活度测量中的误差引起的单样品间隙测定的误差,并将其与使用斜率截距法获得的间隙测定中观察到的误差进行比较。方法:从51Cr-EDTA血浆清除率的数据库中选择了45名成年患者,血浆清除率是通过在2和4 h左右采集两个血样确定的。选择患者的清除率应在30 ml.min-1至155 ml.min-1之间,步长为3 ml.min-1。根据斜率和斜率与y轴的交点,确定恰好2和4 h的血浆浓度。然后将正态分布的随机误差引入采样时间(SD为0、1和2分钟)以及活动度测量(SD为0、1、2和5%)中。然后,使用两种单样本方法(即Groth和Tauxe的算法)以及需要两个血液样本的斜率截获法计算清除率。对于每个设置,模拟重复200次。然后评估对随机误差清除时间采样和/或活动性测量的影响。结果:由2分钟的采样时间误差和5%的活性测量误差引起的单样品清除率误差可忽略不计。对于所有间隙水平,计算出的间隙误差的SD均小于3.8 ml.min-1。无论选择哪种算法,在整个间隙范围内,单样本间隙的误差都比斜率截距法观察到的系统地低。结论:采样时间和活动性测量中的误差仅对单样品EDTA清除产生很小的误差,与使用两个血液样本的斜率截获法所观察到的相比,该误差总体上较低。

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