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We assessed risk of bias using Cochrane systematic review guidelines, which include an assessment of random sequence generation, allocation concealment, blinding (of patients, healthcare providers, outcome assessors and analysts) and loss to follow-up.
Diffusion weighted imaging (DWI) is a functional MRI technique based on the assessment of random (Brownian) motion of water molecules.
Assessment of random and systematic errors should be included for future trials.
The principle of DW MRI as a functional biomarker is based on the assessment of random (Brownian) motion of extracellular water molecules, which is restricted in hypercellular tumour tissue, as expressed by the decreased apparent diffusion coefficient (ADC) value.
Sixteen adults (age = 32 ± 8 years; 6 M, 10 F) with right bundle branch block (RBBB) and repaired tetralogy of Fallot (n = 8) or corrected congenital pulmonary stenosis (n = 8) undergoing surgical pulmonary valve replacement (PVR) for pulmonary regurgitation underwent epicardial RV mapping and haemodynamic assessment of random pacing configurations including the site of latest RV activation.
To account for the age- and sex-matched study design when comparing BMC of ASD cases and TD controls, we used General Linear Models (GLM), which are equivalent to standard linear regression models with normality assumption of the residuals but allow assessment of random effects.
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Data extraction including assessments of random sequence generation and allocation concealment was conducted independently by two reviewers.
Assessments of random sequence generation and allocation concealment domains were performed by two independent reviewers following the Cochrane collaboration guidelines.
Fatigue damage assessment of multiaxial random loadings is a complex issue and a subject of actual interest in mechanical design.
This paper proposes a methodology to optimize the spatial distribution of embedded sensors used for spatial variability assessment of stationary random fields.
This manuscript addresses the seismic reliability of RC bridge structures, particularly through the assessment of a random sampling scheme based on the Latin Hypercube algorithm for numerical simulation of material and ground motion properties.
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