Sentence examples for mean of squared differences from inspiring English sources

Exact(7)

Between-test reproducibility of DTG-SBW was assessed graphically, and by the coefficient of repeatability of AUC representing the 95% range of differences between two repeated measurements and was calculated as twice the square root of the mean of squared differences of paired measurements [27]; [28].

However, they also found an increase in the square root of the mean of squared differences between adjacent NN intervals (r-MSSD; time domain measurement that corresponds to high-frequency variability and parasympathetic tone).

Figure 3 shows the Mean Squared Error (MSE) of each normalization method for each of the simulation types, that is, the mean of squared differences between ratios of gene expressions obtained by a normalization method and the true ratios of simulated data.

For tree construction, the distances between each pair of samples were calculated as a mean of squared differences between the intensities of expressed genes.

For the latter measure, the observed mean of squared differences are given in parentheses.

In any case, table 1 shows the mean of squared differences (SSE) and the correlations between the experimentally determined p53 concentration and the estimated p53 activity profiles from the GP model (GP), the NCA model, and the model used by Barenco et al. (2006).

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Similar(53)

The correlation between the T opt values identified using REML deviance profiles and profiles of the mean of squared difference between observed and expected P values was 0.83.

For all samples, we recalculated the call rate in a CW manner and we assessed the mean squared difference of the individual's genotype and expected genotype incorporating all autosomal SNPs with non-missing genotype.

ANOVA = analysis of variance; CABG = coronary artery bypass grafting; CAD = coronary artery disease; HF = high-frequency; HRV = heart rate variability; LF = low-frequency; POD = postoperative day; RMSSD = square root of the mean of squares of differences between adjacent R R intervals; RSA = respiratory sinus arrhythmia.

The following parameters of HRV in the time domain were calculated: the standard deviation of all R R intervals; the standard deviation of the averages of the R R intervals calculated in 5 min segments; the percentage number of pairs of adjacent R R intervals differing by more than 50 ms; and the square root of the mean of squares of differences between adjacent R R intervals (RMSSD).

Time domain measurements include SDn-n, standard deviation of all R-R intervals in sinus rhythm (25), and root mean square SD, as the square root of the mean of the square difference between adjacent normal R-R intervals (9, 18, 25).

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