Comparing flow cytometry and microscopy ...
Type de document :
Compte-rendu et recension critique d'ouvrage
Titre :
Comparing flow cytometry and microscopy in the quantification of vital aquatic organisms in ballast water
Auteur(s) :
Peperzak, Louis [Auteur]
Royal Netherlands Institute for Sea Research [NIOZ]
Zetsche, Eva-Maria [Auteur]
Royal Netherlands Institute for Sea Research [NIOZ]
Gollasch, Stephan [Auteur]
Royal Netherlands Institute for Sea Research [NIOZ]
Artigas, Luis Felipe [Auteur]
Université du Littoral Côte d'Opale [ULCO]
Laboratoire d’Océanologie et de Géosciences (LOG) - UMR 8187 [LOG]
Bonato, Simon [Auteur]
Laboratoire d’Océanologie et de Géosciences (LOG) - UMR 8187 [LOG]
Université du Littoral Côte d'Opale [ULCO]
Creach, Veronique [Auteur]
Centre for Environment, Fisheries and Aquaculture Science [Lowestoft] [CEFAS]
de Vré, Pieter [Auteur]
Dubelaar, George B.J. [Auteur]
Henneghien, Joël [Auteur]
Hess-Erga, Ole-Kristian [Auteur]
Langelaar, Roland [Auteur]
Larsen, Aud [Auteur]
Norwegian Research Center [NORCE]
Maurer, Brian [Auteur]
Mosselaar, Albert [Auteur]
Reavie, Euan [Auteur]
Rijkeboer, Machteld [Auteur]
Tobiesen, August [Auteur]
Royal Netherlands Institute for Sea Research [NIOZ]
Zetsche, Eva-Maria [Auteur]
Royal Netherlands Institute for Sea Research [NIOZ]
Gollasch, Stephan [Auteur]
Royal Netherlands Institute for Sea Research [NIOZ]
Artigas, Luis Felipe [Auteur]
Université du Littoral Côte d'Opale [ULCO]
Laboratoire d’Océanologie et de Géosciences (LOG) - UMR 8187 [LOG]
Bonato, Simon [Auteur]
Laboratoire d’Océanologie et de Géosciences (LOG) - UMR 8187 [LOG]
Université du Littoral Côte d'Opale [ULCO]
Creach, Veronique [Auteur]
Centre for Environment, Fisheries and Aquaculture Science [Lowestoft] [CEFAS]
de Vré, Pieter [Auteur]
Dubelaar, George B.J. [Auteur]
Henneghien, Joël [Auteur]
Hess-Erga, Ole-Kristian [Auteur]
Langelaar, Roland [Auteur]
Larsen, Aud [Auteur]
Norwegian Research Center [NORCE]
Maurer, Brian [Auteur]
Mosselaar, Albert [Auteur]
Reavie, Euan [Auteur]
Rijkeboer, Machteld [Auteur]
Tobiesen, August [Auteur]
Titre de la revue :
Journal of Marine Engineering and Technology
Pagination :
68-77
Éditeur :
Taylor & Francis
Date de publication :
2020
ISSN :
2046-4177
Discipline(s) HAL :
Sciences du Vivant [q-bio]
Résumé en anglais : [en]
The ability to quantify vital aquatic organisms in the 2–50 µm size range was compared between five different flow cytometers and several different microscopes. Counts of calibration beads, algal monocultures of different ...
Lire la suite >The ability to quantify vital aquatic organisms in the 2–50 µm size range was compared between five different flow cytometers and several different microscopes. Counts of calibration beads, algal monocultures of different sizes as well as organisms in a Wadden Sea sample were compared. Flow cytometers and microscopes delivered different bead concentrations. These differences between the instruments became larger for algal monocultures and were even higher for the Wadden Sea sample. It was observed that the concentration differences were significant between flow cytometer and microscope counts, and that this difference increased with the size of the objects counted. Microscope counts were more accurate for larger (50 µm) objects because cytometers struggled with bigger particles that clogged the instruments. Contrary to microscopy, the flow cytometers were capable of accurately enumerating cultured cells in the 2–10 µm size range and cells in the lower size range of the 10–50 µm size class. Flow cytometers were also well-suited to assess low abundance samples due to their ability to process larger volumes than microscopes. The results were used to indicate which tools are suitable for ballast water monitoring: flow cytometry is a suitable technology for an indicative and real time analysis of ballast water samples whilst only microscopy would be robust enough for detailed taxonomical analyses.Lire moins >
Lire la suite >The ability to quantify vital aquatic organisms in the 2–50 µm size range was compared between five different flow cytometers and several different microscopes. Counts of calibration beads, algal monocultures of different sizes as well as organisms in a Wadden Sea sample were compared. Flow cytometers and microscopes delivered different bead concentrations. These differences between the instruments became larger for algal monocultures and were even higher for the Wadden Sea sample. It was observed that the concentration differences were significant between flow cytometer and microscope counts, and that this difference increased with the size of the objects counted. Microscope counts were more accurate for larger (50 µm) objects because cytometers struggled with bigger particles that clogged the instruments. Contrary to microscopy, the flow cytometers were capable of accurately enumerating cultured cells in the 2–10 µm size range and cells in the lower size range of the 10–50 µm size class. Flow cytometers were also well-suited to assess low abundance samples due to their ability to process larger volumes than microscopes. The results were used to indicate which tools are suitable for ballast water monitoring: flow cytometry is a suitable technology for an indicative and real time analysis of ballast water samples whilst only microscopy would be robust enough for detailed taxonomical analyses.Lire moins >
Langue :
Anglais
Vulgarisation :
Non
Source :
Fichiers
- document
- Accès libre
- Accéder au document
- Comparing%20flow%20cytometry%20and%20microscopy%20in%20the%20quantification%20of%20vital%20aquatic%20organisms%20in%20ballast%20water.pdf
- Accès libre
- Accéder au document
- document
- Accès libre
- Accéder au document
- Comparing%20flow%20cytometry%20and%20microscopy%20in%20the%20quantification%20of%20vital%20aquatic%20organisms%20in%20ballast%20water.pdf
- Accès libre
- Accéder au document