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首页> 外文期刊>Nuclear Medicine Communications >Influence of time interval and number of blood samples on the error in renal clearance determination using a mono-exponential model: a Monte Carlo simulation.
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Influence of time interval and number of blood samples on the error in renal clearance determination using a mono-exponential model: a Monte Carlo simulation.

机译:时间间隔和血样数量对使用单指数模型进行的肾清除率测定误差的影响:蒙特卡洛模拟。

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摘要

Mono-compartmental analysis based on 2- and 4-h blood samples (BS) of 51Cr-EDTA (EDTA, ethylenediaminetetraacetic acid) is commonly used for the calculation of the glomerular filtration rate (GFR). The purposes of this study were to estimate the magnitude of error in clearance induced by errors in the time of sampling and activity measurement; to estimate the impact of changing the interval between the BS; and to assess the influence of a higher number of BS in reducing the error. A model of mono-exponential curves based on a finite number of BS was created. Normally distributed random errors were introduced in the time of sampling and activity measurement. In a first step, three different time intervals were used; in a second step, seven different numbers of BS were used, all taken between 120 and 240 min. For each setting, the random errors were successively introduced 200 times and the coefficients of variation (CV) of the calculated clearances were determined. Variable errors in clearance were induced by errors in the time of sampling and activity measurement. In general, the observed errors were higher for high and low clearance, with lower errors for moderately reduced clearances. The errors in indicating the time of sampling played an important role for high clearance, whereas the errors in activity measurements led to important errors for low clearance. Prolonging the interval from 1 to 2 h resulted generally in an important decrease in error, except in the range 60-100 ml x min(-1). Prolonging the interval from 2 to 3 h resulted in only a small additional decrease in error, except for very low clearance. Errors in indicating the time of sampling and in activity measurements induce errors in clearance determination. These errors cannot be significantly reduced by simply increasing the number of BS or by prolonging the interval between the samples. It is probably better, in most cases, to keep using the 2-4-h method and to take extreme care when indicating the time of sampling and when measuring the activity, instead of increasing the number of samples or lengthening the procedure.
机译:基于51Cr-EDTA(EDTA,乙二胺四乙酸)的2小时和4小时血液样本(BS)的单室分析通常用于计算肾小球滤过率(GFR)。这项研究的目的是估计由取样和活性测量时的误差引起的清除误差的大小;估计改变BS之间的间隔的影响;并评估更多基站的影响,以减少误差。创建了基于有限数量BS的单指数曲线模型。正态分布的随机误差在采样和活动测量时引入。第一步,使用了三个不同的时间间隔。在第二步中,使用了七个不同数量的BS,所有时间均在120到240分钟之间。对于每种设置,随机误差被连续引入200次,并确定计算出的游隙的变异系数(CV)。清除过程中的可变误差是由采样和活性测量时间的误差引起的。通常,对于高间隙和低间隙,观察到的误差较高,而对于中度减小的间隙,观察到的误差较小。指示采样时间的误差对于高清除率起着重要作用,而活动性测量的误差则导致低清除率的重要误差。将间隔从1小时延长到2小时通常会导致错误的重要减少,但范围在60-100 ml x min(-1)之外。将间隔从2 h延长到3 h只会导致误差的少量额外降低,除了非常低的清除率。指示采样时间和活动性测量中的错误会导致间隙确定中的错误。仅通过增加BS的数量或延长样本之间的间隔就无法显着降低这些错误。在大多数情况下,最好还是继续使用2-4-h方法,并在指示采样时间和测量活性时格外小心,而不是增加样本数量或延长过程。

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