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In a recent publication (Tesař [15]) a law governing this increase was derived from experimental data.
It was found that the increase was derived from the localization of the pyrene by the measurements of time-resolved fluorescence spectroscopy, CD and UV absorption spectra.
In a recent publication [18], a law governing this increase was derived from experimental data obtained with piston-type actuator at small oscillation amplitudes (smaller than – or at most equal to - the steady flow component).
The bulk of the increase was derived from states whose tracks offer expanded forms of gaming, namely Delaware, Louisiana, New Mexico and West Virginia.
This increase was derived from cross-hybridization because the signal intensities from hybridization of the specific target were very small in the low target concentration.
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That increase is derived from a 4-fold increase in kcat and a 12-fold decrease in KM.
The first part of the biphasic increase is derived from microglia inherent to white matter, while the second part originates from activated microglia/macrophages, mostly localized to the injury site where there has been infiltration of macrophages from the circulation 3, 29.
Unexpectedly, population genetic analysis revealed that the allele at this locus that reduces fatness and increases growth is derived from Chinese indigenous pigs and segregates in multiple Chinese breeds.
However, because NFκ B and TNFα mRNA and their proteins were measured using total liver homogenates, we could not distinguish whether the increases were derived from Kupffer cell or hepatocyte responses.
When we gave the reminder shock to naive mice, the reminder shock alone did not induce high fear responses (6.0 ± 2.1%, n = 5), indicating that the reminder shock-induced increase in freezing was derived from the original conditioned fear, not from new learning.
Of 2 cell types with greatly increased rates, one was derived from a neurofibromatosis patient and the other from an A-T heterozygote.
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CEO of Professional Science Editing for Scientists @ prosciediting.com