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Distribution histograms of adaptation time constants for each of the three contrasts levels are presented in Fig. 2. Median time constant of adaptation was 0.6 sec for low contrast stimuli (n = 4), 1.2 sec for medium contrast (n = 32) and 1.6 sec for high contrast stimuli (n = 56) (due to the skewness in the distributions the means were higher: 0.6, 1.9 and 2.5 sec respectively).
Standardised response means were higher for SF-6D utilities.
In some cases, however, weighted means were higher than the unweighted mean, suggesting that market leaders in these food groups contain higher sodium concentrations than do lesser-selling products.
With the exception of cat allergen levels measured in the living room, dust samples of all the allergen concentration means were higher in the group of children with asthma (Table 4).
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In past years the means were high.
The means were high while the CV were very small for those skills.
The standardised response means were high indicating good responsiveness of the score for detecting cartilage change.
Means were high, even in relation to studies on infants and toddlers with biological risks or from disadvantaged backgrounds in high-income countries [ 49, 51].
For some subscale our means are higher (TP and AP), while for the remaining they are slightly lower.
In Agridulce, the cultivar symptoms score and DAS-ELISA absorbance mean were higher than in Negral.
However, Pmean and Ppl mean were higher during BIPAP+SBcontrolled and lower during BIPAP+SBspont as compared with PSV.
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Since I tried Ludwig back in 2017, I have been constantly using it in both editing and translation. Ever since, I suggest it to my translators at ProSciEditing.

Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com