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In the present study we used functional magnetic resonance imaging (fMRI) to identify specific brain sites activated in a rat model characterized by anxiety and colonic hypersensitivity.
Rat model of radiocontrast-induced distal tubular necrosis (DTN) The selectivity of DDC uptake in injured renal tissues was evaluated in this rat model, characterized by selective medullary hypoxic tubular damage.
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The beginning of the current decade saw an increasing number of preclinical studies using AD rat models characterized during the 2000s to implement drug development programs.
It is found in the VAT of OLETF (Otsuka Long-Evans Tokushima Fatty) rat, an animal model, characterized with central obesity and T2DM [ 6].
This novel rat pup model characterizes the systemic effects of intravasal cell-free hemoglobin and hyperoxia, hypothesizing that immature endogenous scavenging systems relate to increased vulnerability to conditions present during cardiopulmonary bypass (CPB).
The former rat model is characterized by insulin resistance and hyperinsulinemia [ 31, 32] while the latter rat model is characterized by hyperglycemia and low plasma insulin levels [ 33, 34].
Here we used a transgenic rat model to characterize ganglion cell responses to light and electrical stimulation during photoreceptor degeneration.
Zhao et al. developed a rat model of granuloma characterized by epithelioid cell granuloma formation and massive lymphocyte infiltration around the granuloma, histologically similar to sarcoidosis [29].
However, in a recent publication [ 60], the ACE inhibitor captopril had additive effects with AC3174 in reducing cardiac left ventricular mass and improving renal morphology in a rat model of hypertension characterized by profound hypertension, cardiac hypertrophy, insulin resistance, renal pathology, and early-onset mortality.
Reduction of uteroplacental perfusion (RUPP) in the pregnant rat model of PE is characterized by elevated mean arterial pressure, inflammatory cytokines, and activation of the ET-1 system.
Conclusion In this rat model of IE, we characterized brain injury as scattered infarcts, micro-abscesses, micro-bleeds, and small vessel wall inflammation.
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CEO of Professional Science Editing for Scientists @ prosciediting.com