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Tumour growth was calculated using the formula: percentage tumour growth= test well/control well) ×100%.
The percentage of killed cells was calculated using the formula: percentage of release = 100 × (counts per minute [cpm] experiment - cpm spontaneous release)/(cpm maximum release - cpm spontaneous release).
Results are presented as the percent of specific DNA fragmentation using the formula: (percentage of experimental apoptosis−percentage of spontaneous apoptosis)/(100−percentage of spontaneous apoptosis) × 100.
Pancreatic sections were prepared and the insulin-positive area was quantified by using the formula: Percentage insulin-positive area = insulin-positive area/total tissue area × 100 [ 16].
Results are presented as % specific DNA fragmentation using the formula: (percentage of experimental apoptosis−percentage of spontaneous apoptosis)/(100−percentage of spontaneous apoptosis) × 100.
The data was then normalized using the formula: Percentage of growth inhibition = number of parasites in test wells/number of parasites in the control well, multiplied by 100; and used for statistical analysis.
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The antioxidant activity was determined by calculating the percentage of lipid peroxidation inhibition using the formula: Inhibition Percentage = A control – A sample / A control × 100 Total phenolic content of the extracts was determined using modified version of Folin-Ciocalteu method described by Chandler and Dodds [ 29] and Shetty et al. [ 30].
The percentage inhibitions of radicals, lipid peroxidation and cytotoxic activities of the extracts were calculated using the formula: (1) Percentage inhibition = A control - A sample / A control × 100 All results are expressed as mean ± standard deviation (SD) values average from 3too 4 independent experiments performed in duplicate.
The living cells percentage was calculated using the formula: (1) living cell percentage = living cells × 100 living cells + dead cells.
In addition to GSI, seedling vigour index was also calculated using the formula, SVI = Germination percentage x (root length + shoot length) (Abdul-Baki and Anderson, 1973).
13, 14 Dual-task cost is often calculated using the formula: and expressed as percentage.
More suggestions(15)
using the formula weight
using the matching percentage
using the sensor percentage
using the minimum percentage
using the formula Lateralization
using the formula baPWV
using the death percentage
using the formula x2+y2+z2
using the formula Tumor
using the illuminance percentage
using the formula lnNCD
using the decolorization percentage
using the formula length
using the nitrogen percentage
using the formula Volume
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CEO of Professional Science Editing for Scientists @ prosciediting.com