Bacterial cells can be characterized in terms of their cell properties using flow cytometry. Flow cytometry is able to deliver multiparametric measurements of up to 50,000 cells per second. However, there has not yet been a thorough survey concerning the identification of the population to which bacterial single cells belong based on flow cytometry data. This paper not only aims to assess the quality of flow cytometry data when measuring bacterial populations, but also suggests an alternative approach for analyzing synthetic microbial communities. We created so-called in silico communities, which allow us to explore the possibilities of bacterial flow cytometry data using supervised machine learning techniques. We can identify single cells ...
Scanning flow cytometry (SFCM) is characterized by the measurement of time-resolved pulses of fluore...
ABSTRACT Natural microbial communities affect human life in countless ways, ranging from global biog...
Background: In the past decade, flow cytometry has become a useful and precise alternative to micros...
<div><p>Bacterial cells can be characterized in terms of their cell properties using flow cytometry....
Bacterial cells can be characterized in terms of their cell properties using flow cytometry. Flow cy...
Flow cytometry is able measure up to 50.000 cells in various dimensions in seconds of time. This lar...
Single cells can be characterized in terms of their phenotypic properties using flow cytometry. Howe...
Measuring the microbial diversity in natural and engineered environments is important for ecosystem ...
Flow cytometry is an important technology for the study of microbial communities. It grants the abil...
This work reviews common flow cytometric methods and applications for the study of bacterial organis...
Microbiome management research and applications rely on temporally resolved measurements of communit...
Some evidences show that a clonal population of microbial cells exhibits variation at their physiolo...
The study of complex microbial communities typically entails high-throughput sequencing and downstre...
Dynamic analysis of microbial composition is crucial for understanding community functioning and det...
Scanning flow cytometry (SFCM) is characterized by the measurement of time-resolved pulses of fluore...
Scanning flow cytometry (SFCM) is characterized by the measurement of time-resolved pulses of fluore...
ABSTRACT Natural microbial communities affect human life in countless ways, ranging from global biog...
Background: In the past decade, flow cytometry has become a useful and precise alternative to micros...
<div><p>Bacterial cells can be characterized in terms of their cell properties using flow cytometry....
Bacterial cells can be characterized in terms of their cell properties using flow cytometry. Flow cy...
Flow cytometry is able measure up to 50.000 cells in various dimensions in seconds of time. This lar...
Single cells can be characterized in terms of their phenotypic properties using flow cytometry. Howe...
Measuring the microbial diversity in natural and engineered environments is important for ecosystem ...
Flow cytometry is an important technology for the study of microbial communities. It grants the abil...
This work reviews common flow cytometric methods and applications for the study of bacterial organis...
Microbiome management research and applications rely on temporally resolved measurements of communit...
Some evidences show that a clonal population of microbial cells exhibits variation at their physiolo...
The study of complex microbial communities typically entails high-throughput sequencing and downstre...
Dynamic analysis of microbial composition is crucial for understanding community functioning and det...
Scanning flow cytometry (SFCM) is characterized by the measurement of time-resolved pulses of fluore...
Scanning flow cytometry (SFCM) is characterized by the measurement of time-resolved pulses of fluore...
ABSTRACT Natural microbial communities affect human life in countless ways, ranging from global biog...
Background: In the past decade, flow cytometry has become a useful and precise alternative to micros...