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A collaborative team has re-engineered the process of microbial pathogen identification in blood samples from pediatric sepsis patients using broad-spectrum pathogen capture technology.
The data showed that mNGS can be used in conjunction with microbiological testing to increase diagnostic yield by identifying pathogens that are not detectable with traditional, pathogen-specific ...
In contrast, single-cell Raman spectroscopy has emerged as a promising technology for rapid pathogen identification. This method characterizes the phenotypic features of microorganisms and offers ...
Rapid and accurate classification of metagenomic sequences is a critical procedure for pathogen identification in the dry-lab step of mNGS tests. However, this crucial step may be improved by ...
As opposed to the previous forms of assays (e.g., COVID-19 type tests), there is a need for DNA/RNA sequencing capability – the next frontier in pathogen identification – as the threat of ...
In the pathogen identification process currently performed in clinical settings, first, blood samples are added to bottles containing liquid media in which infectious microbes, if present, are ...
In the pathogen identification process currently performed in clinical settings, first, blood samples are added to bottles containing liquid media in which infectious microbes, if present ...
Data from Delve Bio shows the impact of metagenomic sequencing to transform meningitis and encephalitis diagnostics compared to traditional testing.