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Dive into the research topics where Ondřej Wiewiorka is active.

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Featured researches published by Ondřej Wiewiorka.


Scandinavian Journal of Clinical & Laboratory Investigation | 2018

Evaluation of FUS-2000 urine analyzer: analytical properties and particle recognition

Miroslava Beňovská; Ondřej Wiewiorka; Jana Pinkavová

Abstract This study evaluates the performance of microscopic part of a hybrid analyzer FUS-2000 (Dirui Industrial Co., Changchun, China), its analytical properties and particle recognition. The evaluation of trueness, repeatability, detection limit, carry-over, linearity range and analytical stability was performed according to Dirui protocol guidelines designed by Dirui Company to guarantee the quality of the instrument. Trueness for low, medium and high-value concentrations was calculated with bias of 15.5, 4.7 and −6.6%, respectively. Detection limit of 5 Ery/μl was confirmed. Coefficient of variation of 11.0, 5.2 and 3.8% was measured for within-run repeatability of low, medium and high concentration. Between-run repeatability for daily quality control had coefficient of variation of 3.0%. Carry-over did not exceed 0.05%. Linearity was confirmed for range of 0–16,000 particles/μl (R2 = 0.9997). The analytical stability had coefficient of variation of 4.3%. Out of 1258 analyzed urine samples, 362 positive were subjected to light microscopy urine sediment analysis and compared to the analyzer results. Cohen’s kappa coefficients were calculated to express the concordance. Squared kappa coefficient was 0.927 (red blood cells), 0.888 (white blood cells), 0.908 (squamous epithelia), 0.634 (transitional epithelia), 0.628 (hyaline casts), 0.843 (granular casts) and 0.623 (bacteria). Single kappa coefficients were 0.885 (yeasts) and 0.756 (crystals), respectively. Aforementioned results show good analytical performance of the analyzer and tight agreement with light microscopy of urine sediment.


Clinical Laboratory | 2014

Ethamsylate (Dicynone) interference in determination of serum creatinine, uric acid, triglycerides, and cholesterol in assays involving the Trinder reaction; in vivo and in vitro.

Milan Dastych; Ondřej Wiewiorka; Miroslava Beňovská


Archive | 2017

Drug interference in Trinder reaction

Ondřej Wiewiorka; Milan Dastych; Zdeňka Čermáková


Archive | 2017

TRINDEROVA REAKCE V KLINICKÉ BIOCHEMII – PŘÍNOSY A LIMITY

Ondřej Wiewiorka; Milan Dastych; Zdeňka Čermáková


Archive | 2017

Interference Dicynone v Trinderově reakci – porovnání produktů dodavatelů IVD

Ondřej Wiewiorka; Zdeňka Čermáková; Milan Dastych


Archive | 2016

Comparison of two quality control methods of POC glucometers inUniversity Hospital Brno

Ondřej Wiewiorka; Milan Dastych


Archive | 2016

Lékové interference v Trinderově reakci

Ondřej Wiewiorka; Zdeňka Čermáková; Milan Dastych


Archive | 2015

ANALYTIC AND POSTANALYTIC PARAMETERS OF DICYNONE INTERFERENCE IN METHODS WITH TRINDER REACTION

Ondřej Wiewiorka; Veronika Plešková; Zdeňka Čermáková; Milan Dastych


Archive | 2015

Analytické a postanalytické parametry interference Dicynonu umetod s Trinderovou reakcí

Ondřej Wiewiorka; Veronika Plešková; Zdeňka Čermáková; Milan Dastych


FONS | 2014

Srovnávací studie močového analyzátoru FUS-2000 (DIRUI) a systému iQ 200 (Iris) – Aution Max AX-4280 (Arkray)

Miroslava Beňovská; Ondřej Wiewiorka; Jana Tůmová

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