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Full-Text Articles in Medicine and Health Sciences

Comparison Of Three Rapid Commercial Canine Parvovirus Antigen Detection Tests With Quantitative Polymerase Chain Reaction (Qpcr), Niloofar Khajeh-Kazerooni Dec 2020

Comparison Of Three Rapid Commercial Canine Parvovirus Antigen Detection Tests With Quantitative Polymerase Chain Reaction (Qpcr), Niloofar Khajeh-Kazerooni

Masters Theses

ABSTRACT

Objective: To evaluate the effectiveness of three commercial ELISA rapid tests in comparison with qPCR for the diagnosis of canine parvovirus infection using fecal samples.

Background: Canine parvovirus-2 (CPV-2) infection is an acute, life-threatening, and highly contagious viral disease. The infected dogs shed virus in their stool and a variety of diagnostic methods have been developed for the diagnosis of the infection using fecal samples. Rapid ELISA tests are commonly used in veterinary practices. However, the accuracy of the results of rapid tests has been questioned in many reports and a low sensitivity has been reported for …


Assessment Of The Use Of Low Molecular Weight Diblock Copolymers For The Formation Of Stable, Tunable Droplet Interface Bilayers, Joseph Tawfik Dec 2020

Assessment Of The Use Of Low Molecular Weight Diblock Copolymers For The Formation Of Stable, Tunable Droplet Interface Bilayers, Joseph Tawfik

Masters Theses

This thesis presents the use of diblock copolymers, poly(butadiene)-b-poly(ethylene oxide) (PBm PEOn) and poly(isoprene)-b-poly(ethylene oxide) (PImPEOn), as amphiphilic molecular building blocks for the formation of synthetic polymer bilayer membranes using the droplet interface bilayer (DIB) technique. The DIB technique makes use of the self-assembly of amphiphilic macromolecules along oil-water droplet interfaces that can then be physically connected for the construction of liquid supported macromolecular bilayers at the droplet interface. These bilayer membranes are capable of hosting both naturally occurring and synthetic protein channels. This technique has been used to form synthetic bilayer membranes …