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Various "omics" methods have recently revolutionized molecular
diagnostics. Next-generation sequencing (NGS) makes it possible to
sequence a human genome in just one day. Whole genome sequencing
(WGS) greatly improves the ability to investigate the outbreaks of
numerous pathogens. Metagenomics helps to analyze the microbiome,
which aids greatly in identifying the pathogenesis of infectious
diseases. Proteomic-based methods, namely matrix-assisted laser
desorption-ionization time of flight mass spectrometry
(MALDI-TOF-MS), have a promising role in identifying myctobacteria
and fungi, and predicting antimicrobial resistance. While there are
numerous scientific publications on "omics" applications for
microbiology, there are relatively few books that review this topic
from a clinical diagnostics perspective. This book looks at this
field from a holistic viewpoint, instead of limiting by type of
"omics" technology, in order to cover the body of knowledge needed
for practitioners and academics interested in clinical and public
health microbiology. Additionally, it addresses the management,
economical, regulatory and operational aspects of integrating these
technologies into routine diagnostics.
Various "omics" methods have recently revolutionized molecular
diagnostics. Next-generation sequencing (NGS) makes it possible to
sequence a human genome in just one day. Whole genome sequencing
(WGS) greatly improves the ability to investigate the outbreaks of
numerous pathogens. Metagenomics helps to analyze the microbiome,
which aids greatly in identifying the pathogenesis of infectious
diseases. Proteomic-based methods, namely matrix-assisted laser
desorption-ionization time of flight mass spectrometry
(MALDI-TOF-MS), have a promising role in identifying myctobacteria
and fungi, and predicting antimicrobial resistance. While there are
numerous scientific publications on "omics" applications for
microbiology, there are relatively few books that review this topic
from a clinical diagnostics perspective. This book looks at this
field from a holistic viewpoint, instead of limiting by type of
"omics" technology, in order to cover the body of knowledge needed
for practitioners and academics interested in clinical and public
health microbiology. Additionally, it addresses the management,
economical, regulatory and operational aspects of integrating these
technologies into routine diagnostics.
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