We report on an inertial focussing based microfluidics technology for concentrating waterborne protozoa, achieving a 96% recovery rate of Cryptosporidium parvum and 86% for Giardia lamblia at a throughput (mL/min) capable of replacing centrifugation. The approach can easily be extended to other parasites and also bacteria
[EN] Cryptosporidium sp. and Giardia sp. are parasites that cause diseases in the population. Most o...
Each year, waterborne diseases have caused approximate 2 million deaths based on World Health Organi...
There are millions of Cryptosporidium-attributable cases annually in children aged <24 months in t...
We report on an inertial focussing based microfluidics technology for concentrating waterborne proto...
Detecting waterborne pathogens is a challenging task because of their low concentration in water and...
AbstractDetecting waterborne pathogens is a challenging task because of their low concentration in w...
Ce travail de recherche porte sur le développement d’une plateforme microfluidique de type laboratoi...
This work focuses on the development of a microfluidic platform (lab on a chip) for the measurement ...
Giardia duodenalis and Cryptosporidium spp. are two of the most prominent aetiological agents of wat...
Abstract: Large sample volumes are traditionally required for the analysis of waterborne pathogens. ...
Waterborne diseases cause millions of deaths worldwide, especially in developing communities. The de...
Severe epidemics in North America due to consumption of polluted water containing pathogens such as ...
Aims: The aim of this study was to overcome the analytical problems encountered during the detection...
Wang, LK, Wang, MHS, and Wu, BC (2022). Determination of microscopic particle count of Cryptosporid...
We present an integrated microfluidic system for performing isolation and concentration of Phytophth...
[EN] Cryptosporidium sp. and Giardia sp. are parasites that cause diseases in the population. Most o...
Each year, waterborne diseases have caused approximate 2 million deaths based on World Health Organi...
There are millions of Cryptosporidium-attributable cases annually in children aged <24 months in t...
We report on an inertial focussing based microfluidics technology for concentrating waterborne proto...
Detecting waterborne pathogens is a challenging task because of their low concentration in water and...
AbstractDetecting waterborne pathogens is a challenging task because of their low concentration in w...
Ce travail de recherche porte sur le développement d’une plateforme microfluidique de type laboratoi...
This work focuses on the development of a microfluidic platform (lab on a chip) for the measurement ...
Giardia duodenalis and Cryptosporidium spp. are two of the most prominent aetiological agents of wat...
Abstract: Large sample volumes are traditionally required for the analysis of waterborne pathogens. ...
Waterborne diseases cause millions of deaths worldwide, especially in developing communities. The de...
Severe epidemics in North America due to consumption of polluted water containing pathogens such as ...
Aims: The aim of this study was to overcome the analytical problems encountered during the detection...
Wang, LK, Wang, MHS, and Wu, BC (2022). Determination of microscopic particle count of Cryptosporid...
We present an integrated microfluidic system for performing isolation and concentration of Phytophth...
[EN] Cryptosporidium sp. and Giardia sp. are parasites that cause diseases in the population. Most o...
Each year, waterborne diseases have caused approximate 2 million deaths based on World Health Organi...
There are millions of Cryptosporidium-attributable cases annually in children aged <24 months in t...