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The cardiac impact of psychological stress historically and socially understood as boundary experiences of human life has long since become an icon [11].
Therefore, in order to shed light on disease mechanisms, evaluation of each genes cardiac impact is necessary.
In the present study, we further define the dose response properties of BPA in the heart, and elucidate the underlying mechanism of the nonmonotonicity of BPA's cardiac impact.
A number of pulmonary and cardiovascular biomarkers were assessed to understand their potential contribution in cardiac impact of DE [see Supplemental Material, Table 2 (http://www.ehponline.org/members/2008/11647/suppl.pdf)].
This animal model of prediabetes/insulin resistance could be an important tool to evaluate the early cardiac impact of dysmetabolism (hyperinsulinemia and impaired glucose tolerance with fasting normoglycemia), without confounding factors such as obesity and hypertension.
This animal model of prediabetes/insulin resistance, induced by high sucrose consumption during 9 weeks, could be an important tool to evaluate the cardiac impact of dysmetabolism (mainly hyperinsulinemia and impaired glucose tolerance, with fasting normoglycemia), without confounding factors such as obesity and hypertension.
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Future studies should determine cardiac physiologic impact of DE exposure along with gene expression using acute and chronic exposure scenarios.
Repetitive unsuccessful shocks can reduce chest compression time and can cause injury to cardiac tissue, impacting heart function upon survival.
The duration of cardiac arrest impacts on the increase in the EVLW and PVPI, especially in patients with CG postcardiac arrest syndrome.
Future studies should explore whether the presence of cardiac arrhythmia impacts falling risk in the long-term care population using longer duration arrhythmia monitoring [ 17].
It would be interesting to establish whether the effect of MED13 on cardiac metabolism impacts on the function of cardiomyocytes and why MED13 differentially affects the cardiac muscle and peripheral organs.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com