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The previous observations on spectra showed that the aromatic skeletal/C-O stretching ratio (R = I (1121 cm-1)/I (1078 cm-1)) in cellulose and hemicellulose could be quantified to represent the crystallinity of cellulose; the crystallinity decreases as the ratio increases [ 25].
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However, in the case of oligomers only diffused bands (smears) in the region of ~50 kDa to ~130 kDa could be seen and so, the whole smear band was quantified, to represent the sum of ASYN oligomers (trimmers to nonamers).
The shifts in fluorescent channel 1-height (FL1-H) fluorescence intensity compared to DMSO vehicle controls were quantified and represented as fold change over DMSO control.
The percentage of blue flies per population was quantified and represented as mean averages ± SE values.
Three days later, the amount of colony forming units (cfu) per plant was quantified and represented in a logarithmic scale.
The cell number was kept at a constant while counting and the average number of autophagic vesicles observed for each treatment group was quantified and represented graphically.
Number and size of foci detected in each single cell were quantified and are represented in Fig. 4A.
Both strategies were quantified and graphically represented (Fig. 4) using measures of energy expenditure from previous work (see Text S1 – Model Calculations).
For the five dipterocarp species where pollen dispersal distances have been quantified, representing flower sizes ranging over two orders of magnitude, mean pollen dispersal distance increases with flower size, with the lowest mean dispersal distances in S. xanthophylla and greatest dispersal distances in Dipterocarpus tempehes (Table 2).
By utilising nuclear extracts, only binding of proteins within the nucleus are quantified, which effectively represents activated PPARs.
Despite this variation, each line produces a population of telomeres that is apparently maintained around a genotype-specific set point, which can be quantified and represented by a single value, such as the median or mean length.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com