Hematology reference intervals

2022 ◽  
pp. 1425
Keyword(s):  
2011 ◽  
Vol 153 (12) ◽  
pp. 553-564 ◽  
Author(s):  
K. Steininger ◽  
A.-S. J. Berli ◽  
R. Jud ◽  
C. C. Schwarzwald

2015 ◽  
Author(s):  
Sam O'Toole ◽  
Candy Sze ◽  
Kent Tirador ◽  
Scott Akker ◽  
Matthew Matson ◽  
...  

2017 ◽  
Vol 68 (2) ◽  
pp. 243-245
Author(s):  
Elisabeta Antonescu ◽  
Maria Totan ◽  
Gheorghe Cornel Boitor ◽  
Julianna Szakacs ◽  
Sinziana Calina Silisteanu ◽  
...  

Medical analysis laboratory must establish its own reference intervals depending on the facilities they are working with, the working substances and protocols. These reference intervals must be obtained depending on age groups in order to accurately interpret the results of the analyzes performed. The study is a retrospective one using 3217 data from the electronic archive of the S.C. Vladutiu&Garabedian S.R.L. Clinic in Medias. Total serum calcium was determined by the colorimetric method on the Konelab analyzer. Processing of the collected data was done using the Hoffmann method, considering 5% up to 95% of the values in the database, the values being randomly selected. For comparison, data from the literature was used. In children under 1 year old, it was not possible to calculate the reference intervals since data was insufficient. In the other age groups, reference intervals obtained in the current study were similar to the studied literature. Reference intervals established for calcium can provide important guidance for the reasonable supplementation of this essential element in children.


2019 ◽  
Vol 19 (1) ◽  
Author(s):  
Bertille Elodie Edinga-Melenge ◽  
Adrienne Tchapmi Yakam ◽  
Jobert Richie Nansseu ◽  
Catherine Bilong ◽  
Suzanne Belinga ◽  
...  

Author(s):  
O E Okosieme ◽  
Medha Agrawal ◽  
Danyal Usman ◽  
Carol Evans

Background: Gestational TSH and FT4 reference intervals may differ according to assay method but the extent of variation is unclear and has not been systematically evaluated. We conducted a systematic review of published studies on TSH and FT4 reference intervals in pregnancy. Our aim was to quantify method-related differences in gestation reference intervals, across four commonly used assay methods, Abbott, Beckman, Roche, and Siemens. Methods: We searched the literature for relevant studies, published between January 2000 and December 2020, in healthy pregnant women without thyroid antibodies or disease. For each study, we extracted trimester-specific reference intervals (2.5–97.5 percentiles) for TSH and FT4 as well as the manufacturer provided reference interval for the corresponding non-pregnant population. Results: TSH reference intervals showed a wide range of study-to-study differences with upper limits ranging from 2.33 to 8.30 mU/L. FT4 lower limits ranged from 4.40–13.93 pmol/L, with consistently lower reference intervals observed with the Beckman method. Differences between non-pregnant and first trimester reference intervals were highly variable, and for most studies the TSH upper limit in the first trimester could not be predicted or extrapolated from non-pregnant values. Conclusions: Our study confirms significant intra and inter-method disparities in gestational thyroid hormone reference intervals. The relationship between pregnant and non-pregnant values is inconsistent and does not support the existing practice in some laboratories of extrapolating gestation references from non-pregnant values. Laboratories should invest in deriving method-specific gestation reference intervals for their population.


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