Water microbiological and physicochemical characterizations at various depths of aquatic ecosystems are basic requirements in several fields of research. A chief difficulty in hydrobiology, limnology, biological oceanography and water environmental microbiology is that of taking accurate field collections that are representative of the natural environment and population at various depths of aquatic ecosystems. Gathering water/plankton samples in a level just below the surface of the water body upon rising in columns from various depths due to hydrostatic pressure variations provided a simple approach for water and plankton sampling. Based on this approach, several forms of simple devices for water and plankton sampling were developed for wa...
Aims: To determine the spatial and temporal variability in the abundance, structure and composition ...
The first part of the book (six chapters) is devoted to some selected applications of bright-field m...
Understanding the processes controlling the distribution and abundance of zooplankton has been a pri...
Samples of pore water will be collected by the methods described below. Samples from water more than...
The biology, ecology and identification of plankton and their use in monitoring water quality. Healt...
The cost of high-resolution water sampling devices for ecological studies and water quality analyses...
An apparatus to take water and phytoplankton samples in shallow water is described. The most importa...
Executive Summary • A guide for the sampling and analysis of mixoplankton in natural environments i...
The lack of standardization of plankton sampling equipment in present-day biological oceanography re...
Procedures Phytoplankton samples were collected from stations used in previous surveys and from spec...
A lack of fine-scale methods for sampling planktonic microbial populations hinders advancement in un...
International audienceThe main methods for the study of microorganisms in the environment (water, so...
L'océan est profond, la majorité de son volume (> 80 %) se situant à une profondeur supérieure à 100...
Peters L, Scheifhacken N, Kahlert M, Rothhaupt K-O. An efficient in situ method for sampling periphy...
Aims: To determine the spatial and temporal variability in the abundance, structure and composition ...
The first part of the book (six chapters) is devoted to some selected applications of bright-field m...
Understanding the processes controlling the distribution and abundance of zooplankton has been a pri...
Samples of pore water will be collected by the methods described below. Samples from water more than...
The biology, ecology and identification of plankton and their use in monitoring water quality. Healt...
The cost of high-resolution water sampling devices for ecological studies and water quality analyses...
An apparatus to take water and phytoplankton samples in shallow water is described. The most importa...
Executive Summary • A guide for the sampling and analysis of mixoplankton in natural environments i...
The lack of standardization of plankton sampling equipment in present-day biological oceanography re...
Procedures Phytoplankton samples were collected from stations used in previous surveys and from spec...
A lack of fine-scale methods for sampling planktonic microbial populations hinders advancement in un...
International audienceThe main methods for the study of microorganisms in the environment (water, so...
L'océan est profond, la majorité de son volume (> 80 %) se situant à une profondeur supérieure à 100...
Peters L, Scheifhacken N, Kahlert M, Rothhaupt K-O. An efficient in situ method for sampling periphy...
Aims: To determine the spatial and temporal variability in the abundance, structure and composition ...
The first part of the book (six chapters) is devoted to some selected applications of bright-field m...
Understanding the processes controlling the distribution and abundance of zooplankton has been a pri...