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Samples containing less than 20 ng RNA/μL (9 % of samples) were evaporated (37 °C) to increase RNA concentrations using a SpeedVac Concentrator (SPD111V, Thermo Scientific, Slangerup, Denmark).
We measured protein concentrations using a kit from Bio-Rad Laboratories (Hercules, CA, USA) and following the Bradford method (Bradford 1976).
Recipient creatinine clearance values were estimated from serum creatinine concentrations using a computer model.
All turbidity values were converted to TSM concentrations using a linear equation.
Urine samples were measured for cGMP concentrations using a scintillation proximity method.
Calibration of the FOTDP system was successfully carried out with various ozone concentrations using a column packed with glass beads.
In this work, we present a neural calibration for the prediction of benzene concentrations using a gas multi-sensor device (solid-state) designed to monitor urban environment pollution.
The procedure was optimized for the flow rate of NaBH4, NaBH4 and hydrochloric acid concentrations using a full two-level factorial and also a Box-Behnken design.
This study consists of four phases: In phase 1, we conduct constant composition expansion (CCE) tests with different CO2 concentrations using a PVT cell.
Taste sensitivity (intensity scaling with suprathreshold concentrations) was estimated with different linoleic acid concentrations using a linear scale of 150 mm labeled at the ends.
The use of a list-mode data acquisition technique enabled simultaneous determination of 22Na and 7Be activity concentrations using a single measurement by coincidence and anticoincidence mode respectively.
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