Infections of the respiratory tract can be caused by a diversity of pathogens, both viral and bacterial. Rapid microbiological diagnosis ensures appropriate antimicrobial therapy as well as effective implementation of isolation precautions. The ePlex respiratory pathogen panel (RP panel) is a novel molecular biology-based assay, developed by GenMark Diagnostics, Inc. (Carlsbad, CA), to be performed within a single cartridge for the diagnosis of 25 respiratory pathogens (viral and bacterial). The objective of this study was to compare the performance of the RP panel with those of laboratory-developed real-time PCR assays, using a variety of previously collected clinical respiratory specimens. A total of 343 clinical specimens as well as 29 e...
QIAstat-Dx Respiratory Panel V2 (RP) is a novel molecular-method-based syndromic test for the simult...
Respiratory tract infections (RTIs) are the focus of developments in public health, given their wide...
Background: Respiratory tract infections (RTIs) caused by contagious viruses are common among patien...
Infections of the respiratory tract can be caused by a diversity of pathogens, both viral and bacter...
Molecular basis of virus replication, viral pathogenesis and antiviral strategie
Cartridge-based multiplex panels covering numerous pathogens offer an advantage of minimal hands-on-...
Cartridge-based multiplex panels covering numerous pathogens offer an advantage of minimal hands-on-...
Fast-track Diagnostics respiratory pathogens (FTDRP) multiplex real-time RT-PCR assay was compared w...
High-throughput multiplex assays for respiratory viruses are an important step forward in diagnostic...
The Luminex xTAG Respiratory Virus Panel (RVP) assay has been shown to offer improved diagnostic sen...
Fast-track Diagnostics respiratory pathogens (FTDRP) multiplex real-time RT-PCR assay was compared w...
QIAstat-Dx Respiratory Panel V2 (RP) is a novel molecular-method-based syndromic test for the simult...
Abstract Background The ePlex® and QIAstat-Dx® respiratory pathogen panels detect multiple respirato...
QIAstat-Dx Respiratory Panel V2 (RP) is a novel molecular-method-based syndromic test for the simult...
Contains fulltext : 220115.pdf (Publisher’s version ) (Open Access)QIAstat-Dx Resp...
QIAstat-Dx Respiratory Panel V2 (RP) is a novel molecular-method-based syndromic test for the simult...
Respiratory tract infections (RTIs) are the focus of developments in public health, given their wide...
Background: Respiratory tract infections (RTIs) caused by contagious viruses are common among patien...
Infections of the respiratory tract can be caused by a diversity of pathogens, both viral and bacter...
Molecular basis of virus replication, viral pathogenesis and antiviral strategie
Cartridge-based multiplex panels covering numerous pathogens offer an advantage of minimal hands-on-...
Cartridge-based multiplex panels covering numerous pathogens offer an advantage of minimal hands-on-...
Fast-track Diagnostics respiratory pathogens (FTDRP) multiplex real-time RT-PCR assay was compared w...
High-throughput multiplex assays for respiratory viruses are an important step forward in diagnostic...
The Luminex xTAG Respiratory Virus Panel (RVP) assay has been shown to offer improved diagnostic sen...
Fast-track Diagnostics respiratory pathogens (FTDRP) multiplex real-time RT-PCR assay was compared w...
QIAstat-Dx Respiratory Panel V2 (RP) is a novel molecular-method-based syndromic test for the simult...
Abstract Background The ePlex® and QIAstat-Dx® respiratory pathogen panels detect multiple respirato...
QIAstat-Dx Respiratory Panel V2 (RP) is a novel molecular-method-based syndromic test for the simult...
Contains fulltext : 220115.pdf (Publisher’s version ) (Open Access)QIAstat-Dx Resp...
QIAstat-Dx Respiratory Panel V2 (RP) is a novel molecular-method-based syndromic test for the simult...
Respiratory tract infections (RTIs) are the focus of developments in public health, given their wide...
Background: Respiratory tract infections (RTIs) caused by contagious viruses are common among patien...