Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Xenia, Strobach"'
Autor:
Sabine Brunklaus, Xenia Strobach, Julia Erwes, Daniel Latta, Klaus Stefan Drese, Marion Ritzi-Lehnert, Christian Winkler, Julian Höth, Thomas Hansen-Hagge, Mathieu Jung
Publikováno v:
ELECTROPHORESIS. 33:3222-3228
An ultrafast microfluidic PCR module (30 PCR cycles in 6 min) based on the oscillating fluid plug concept was developed. A robust amplification of native genomic DNA from whole blood samples could be achieved at operational conditions established fro
Autor:
Theresia Gatscha, Rainer Gransee, Tristan Schneider, Tobias Schunck, Xenia Strobach, Deniz Elyorgun, Christian Winkler, Julian Höth
Publikováno v:
SPIE Proceedings.
Nucleic amplification using quantitative polymeric chain reaction (qPCR) has become the gold standard of molecular testing. These systems offer both amplification and simultaneous fluorescence detection. An ultrafast microfluidic module (allowing 30
Autor:
Rainer Gransee, Tristan Schneider, Theresia Gatscha, Deniz Elyorgun, Tobias Schunck, Xenia Strobach, Julian Höth
Publikováno v:
SPIE Proceedings.
Today, nucleic amplification plays a key role in modern molecular biology allowing fast and specific laboratory diagnostics testing. An ultrafast microfluidic module (allowing 30 polymeric chain reaction (PCR) cycles in 6 minutes) based on an oscilla
Autor:
Sabine, Brunklaus, Thomas E, Hansen-Hagge, Julia, Erwes, Julian, Höth, Mathieu, Jung, Daniel, Latta, Xenia, Strobach, Christian, Winkler, Marion, Ritzi-Lehnert, Klaus S, Drese
Publikováno v:
Electrophoresis. 33(21)
An ultrafast microfluidic PCR module (30 PCR cycles in 6 min) based on the oscillating fluid plug concept was developed. A robust amplification of native genomic DNA from whole blood samples could be achieved at operational conditions established fro
Autor:
Klaus Stefan Drese, Marion Ritzi-Lehnert, Thomas Hansen-Hagge, Mathieu Jung, Ciara K. O'Sullivan, Richard Klemm, Daniel Latta, T. M. Demiris, Xenia Strobach, Julian Höth, Julia Erwes, Claudia Gärtner
Publikováno v:
Microfluidics, BioMEMS, and Medical Microsystems IX.
Taking advantage of microfluidics technology, a Lab-on-Chip system was developed offering the possibility of performing HLA (Human Leukocyte Antigen) typing to test genetic predisposition to coeliac disease and measure the level of immunodeficiency a