Exact(2)
Nah et al. [14] reported that the electrochromic absorption was markedly enhanced in Ag nanoparticles embedded in MEH-PPV composite films.
In GDMpreg, gut glucose absorption was markedly reduced by up to ∼50% from 30 to 120 min, when compared with postpartum conditions or the NGTpreg group (60 120 min; Fig. 1 G ).
Similar(58)
It can be seen that the absorption is markedly increased by QD layers at a wavelength beyond 450 nm, since the QD layers have higher absorption coefficient than GaAs NWs.
The rate and extent of glucose absorption is markedly reduced in critically ill patients.
This study suggests that the rate and extent of glucose absorption is markedly reduced in critical illness.
In GDMpreg, OGTT gut glucose absorption is markedly lower during hyperglycemia, whereas both glycemia and glucose absorption in NGTpreg are comparable between pregnant and postpartum states.
Glucose absorption is markedly diminished in the critically ill patient and downregulation of the sodium glucose co-transporter 1 appears to be pivotal [ 29, 35].
We have reported that glucose absorption is markedly impaired in the critically ill, both following gastric and small intestinal nutrient administration [ 12, 13].
However, we recently observed that even when administered directly into the small intestine, glucose absorption is markedly diminished in critical illness [ 12].
This study suggests that both the rate and extent of glucose absorption are markedly reduced in critically ill patients [ 14- 16], and demonstrates that there is a close relation between glucose absorption and GE in these patients, such that slow GE is associated with a reduced rate of absorption.
In critically ill patients; (i) the rate and extent of glucose absorption are markedly reduced; (ii) GE is a major determinant of the rate of absorption, but does not fully account for the extent of impaired absorption; (iii) blood glucose concentration could be one of a number of factors affecting GE.
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