A MULTI-OMICS CHARACTERIZATION OF THE NATURAL PRODUCT POTENTIAL OF TROPICAL FILAMENTOUS MARINE CYANOBACTERIA


Glucose-Stimulated Mucus Secretion by Goblet Cells Mitigates Intestinal Barrier Dysfunction in a Rat Model of Mesenteric Ischemia/Reperfusion Injury

Background: Superior mesenteric ischemia/reperfusion (I/R) causes barrier dysfunction and facilitates bacterial translocation (BT) in the small intestine, which can even lead to systemic sepsis.Our previous research showed that luminal administration of glucose and its anaerobic glycolytic metabolites exerted cytoprotective effects on epithelial ce

read more

Application of double-layer detector spectral CT calcicum supression technique in the diagnosis of traumatic bone marrow edema in the knee

Objective: To investigate the accuracy Sculpture (Set of 3) of calcicum supression (CaSupp) technique derived from double-layer detector spectral computed tomography (DSCT) in the diagnosis of traumatic bone marrow edema in the knee.Methods: Twenty-three patients with trauma in the knee who underwent DSCT and Magnetic Resonance Imaging (MRI) in the

read more

Riemann surfaces for KPZ with periodic boundaries

The Riemann surface for polylogarithms of half-integer index, which Sculpture (Set of 3) has the topology of an infinite dimensional hypercube, is studied in relation to one-dimensional KPZ universality in finite volume.Known exact results for fluctuations of the KPZ height with periodic boundaries are expressed in terms of meromorphic functions on

read more

Nonlinear Controllers Based on Exact Feedback Linearization for Series-Compensated DFIG-Based Wind Parks to Mitigate Sub-Synchronous Control Interaction

The increasing penetration of wind power in the grid has driven the integration of wind farms with power systems that are series-compensated to enhance power transfer capability and dynamic stability.This may lead to sub-synchronous control interaction (SSCI) problems in series-compensated doubly-fed induction generator (DFIG)-based wind farms.To m

read more