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While TEM showed a continual increase in NP cluster size inside cells with increasing exposure time (Figure 5 and Additional file 1: Figure S3), indicating that agglomeration of NPs within cellular endosomes contributes to the spectral shift we measured, we cannot rule out the possibility that some NPs may remain adsorbed to the cell surface after rinsing.
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If so it is unlikely that the aorta contributed significantly to the blood shifts we measured.
Thus we assumed that the source of the blood shifts we measured was the splanchnic vascular bed.
In the lower extremities this resulted in the blood shifts we measured from the trunk to the extremities.
Therefore the blood shifts we measured during quiet breathing could not have resulted from minor calibration differences between the OEP and WBP signals.
In contrast, the invasive lineage shifts we measured are consistent with increased performance in stressful conditions, and we found limited evidence for increased performance across conditions.
To check whether our experimental conditions induced covert attention shifts, we measured reaction times (RTs) between target onset and button release in one monkey.
To capture the dynamic nature of this color change, we measured color shift defined as the rate of change in the stimulation of the long-wavelength sensitive (LWS) cone during the dive (LWS was chosen because it represents the greatest magnitude color change with viewing angle, Fig. 1e).
Thus the inferior vena caval compression in the abdomen would only occur at its downstream extremity and this could only contribute a very small fraction to the blood shift volumes we measured.
Using electrophoretic mobility shift assays, we measured NF-kappa B binding activity in nuclear extracts of cells from control and ozone-exposed animals.
In a control experiment that examined whether the shift toward direct that we measured reflected a more generalized tendency to view objects as being centered (e.g., centering the iris in the sclera), three observers (I.M., D.C., and B.R.S).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com