首页> 外文期刊>Journal of clinical laboratory analysis. >Establishment of reference intervals for serum thyroid‐stimulating hormone, free and total thyroxine, and free and total triiodothyronine for the Beckman Coulter DxI‐800 analyzers by indirect method using data obtained from Chinese population in Zhejiang Province, China
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Establishment of reference intervals for serum thyroid‐stimulating hormone, free and total thyroxine, and free and total triiodothyronine for the Beckman Coulter DxI‐800 analyzers by indirect method using data obtained from Chinese population in Zhejiang Province, China

机译:通过间接方法使用从中国浙江省中华人民国人口获得的数据,建立血清甲状腺刺激激素,自由和总甲状腺素,自由和总甲状腺素,自由和总三碘甲蛋白,并通过间接方法使用从中国浙江省中华人民国人口获得的数据进行间接方法

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Background In order to establish suitable reference intervals of thyroid‐stimulating hormone ( TSH ), free (unbound) T4 ( FT 4), free triiodothyronine ( FT 3), total thyroxine (T4), and total triiodothyronine (T3) for the patients collected in Zhejiang, China, an indirect method was developed using the data from the people presented for routine health check‐up. Methods Fifteen thousand nine hundred and fifty‐six person's results were reviewed. Box‐Cox or Case Rank was used to transform the data to normal distribution. Tukey and Box‐Plot methods were used to exclude the outliers. Nonparametric method was used to establish the reference intervals following the EP 28‐A3c guideline. Pearson correlation was used to evaluate the correlation between hormone levels and age, while Mann‐Whitney U test was employed for quantification of concentration differences on the people who are younger and older than 50?years old. Results Reference intervals were 0.66–4.95?mIU/L ( TSH ), 8.97–14.71?pmol/L ( FT 4), 3.75–5.81?pmol/L ( FT 3), 73.45–138.93?nmol/L (total T4), and 1.24–2.18?nmol/L (total T3) in male; conversely, reference intervals for female were 0.72–5.84?mIU/L ( TSH ), 8.62–14.35?pmol/L ( FT 4), 3.59–5.56?pmol/L ( FT 3), 73.45–138.93?nmol/L (total T4), and 1.20–2.10?nmol/L (total T3). FT 4, FT 3, and total T3 levels in male and FT 4 level in female had an inverse correlation with age. Total T4 and TSH levels in female were directly correlated. Significant differences in these hormones were also found between younger and older than 50?years old except FT 3 in female. Conclusions Indirect method can be applied for establishment of reference intervals for TSH , FT 4, FT 3, total T4, and total T3. The reference intervals are narrower than those previously established. Age factor should also be considered.
机译:背景以建立甲状腺刺激激素(TSH)的合适的参考间隔,为收集的患者提供游离(未结合)T4(FT 4),游离三碘甲酚(FT 3),总甲状腺素(T4)和总三碘甲蛋白(T3)在中国浙江,采用来自所提供常规健康检查的人员的数据制定了间接方法。方法综述了一百五十九百九百九十六人的成果。 Box-Cox或案例等级用于将数据转换为正态分布。 Tukey和Box-Plot方法用于排除异常值。非参数方法用于建立EP 28-A3C指南后的参考间隔。 Pearson相关性用于评估激素水平与年龄之间的相关性,而Mann-Whitney U试验用于量化浓度差异,较年轻,超过50岁的人。结果参考间隔为0.66-4.95?MIU / L(TSH),8.97-14.71?PMOL / L(FT 4),3.75-5.81?PMOL / L(FT 3),73.45-138.93?Nmol / L(总T4)和1.24-2.18?nmol / l(总T3)在雄性;相反,女性的参考间隔为0.72-5.84?miu / l(tsh),8.62-14.35?pmol / l(ft 4),3.59-5.56?pmol / l(ft 3),73.45-138.93?nmol / l(总T4),1.20-2.10?Nmol / L(总T3)。 FT 4,FT 3和女性的FT 4水平的T3水平与年龄的逆相关性与年龄相反。女性总T4和TSH水平直接相关。在年轻人和50岁以上,这些激素的显着差异也比女性在女性中除了FT 3之外的年轻人和岁月。结论间接方法可以应用于TSH,FT 4,FT 3,总T4和总T3的参考间隔建立。参考间隔比以前建立的间隔窄。也应该考虑年龄因素。

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