Currently established methods to identify viable and non-viable cells of cyanobacteria are either time-consuming (eg. plating) or preparation-intensive (eg. fluorescent staining). In this paper we present a new and fast viability assay for unicellular cyanobacteria, which uses red chlorophyll fluorescence and an unspecific green autofluorescence for the differentiation of viable and non-viable cells without the need of sample preparation
This study presents an automated, image-based cytometry method for determination of total counts and...
Cyanobacteria are photosynthetic microorganisms that possess a high potential for innovative applica...
Multiple fluorochromes are extensively used to investigate different microalgal aspects, such as via...
Bacterial populations display high heterogeneity in viability and physiological activity at the sing...
<div><p>Bacterial populations display high heterogeneity in viability and physiological activity at ...
Bacterial populations display high heterogeneity in viability and physiological activity at the sing...
Cell viability is a critical indicator for assessing culture quality in microalgae cultivation for b...
International audienceDetermining the fraction of viable cells in algal cultures is critical to impr...
We present a new system for microscopic multicolour variable chlorophyll fluorescence imaging of aqu...
Automated identification and quantification of algae in microscopic images is a tool that allows hig...
Abstract Flow cytometry (FCM) is a well-established tool in the field of aquatic phytoplankton ecolo...
Abstract This work aims to evaluate the feasibility of using image-based cytometry (IBC) in the anal...
The utility of microalgal biomass and bioproducts depends on long-term maintenance of certain physio...
Viability assessment of microorganisms is relevant for a wide variety of applications in industry, i...
International audienceA flow cytometry viability assay protocol is proposed and applied to model mic...
This study presents an automated, image-based cytometry method for determination of total counts and...
Cyanobacteria are photosynthetic microorganisms that possess a high potential for innovative applica...
Multiple fluorochromes are extensively used to investigate different microalgal aspects, such as via...
Bacterial populations display high heterogeneity in viability and physiological activity at the sing...
<div><p>Bacterial populations display high heterogeneity in viability and physiological activity at ...
Bacterial populations display high heterogeneity in viability and physiological activity at the sing...
Cell viability is a critical indicator for assessing culture quality in microalgae cultivation for b...
International audienceDetermining the fraction of viable cells in algal cultures is critical to impr...
We present a new system for microscopic multicolour variable chlorophyll fluorescence imaging of aqu...
Automated identification and quantification of algae in microscopic images is a tool that allows hig...
Abstract Flow cytometry (FCM) is a well-established tool in the field of aquatic phytoplankton ecolo...
Abstract This work aims to evaluate the feasibility of using image-based cytometry (IBC) in the anal...
The utility of microalgal biomass and bioproducts depends on long-term maintenance of certain physio...
Viability assessment of microorganisms is relevant for a wide variety of applications in industry, i...
International audienceA flow cytometry viability assay protocol is proposed and applied to model mic...
This study presents an automated, image-based cytometry method for determination of total counts and...
Cyanobacteria are photosynthetic microorganisms that possess a high potential for innovative applica...
Multiple fluorochromes are extensively used to investigate different microalgal aspects, such as via...