Yeast studies usually focus on exploring diversity in terms of a specific trait (such as growth rate, antibiotic resistance, or fertility) among extensive strains. Microfluidic chips improve these biological studies in a manner of high throughput and high efficiency. For a population study of yeast, it is of great significance to set a proper initial cell density for every strain under specific circumstances. Herein, we introduced a novel design of chip, which enables users to load cells in a gradient order (six alternatives) of initial cell density within one channel. We discussed several guidelines to choose the appropriate chamber to ensure successful data recording. With this chip, we successfully studied the growth rate of yeast strain...
Growth rate is a widely studied parameter for various cell-based biological studies. Growth rates of...
In microorganisms, and more particularly in yeasts, a standard phenotyping approach consists in the ...
<div><p>In microorganisms, and more particularly in yeasts, a standard phenotyping approach consists...
Time-lapse single cell imaging by microscopy can provide precise cell information such as the cell s...
Microfluidics, in combination with time-lapse microscopy, is a transformative technology that signif...
We present a simple and high-throughput microfluidic system for diffusion-based monolayer yeast cell...
Growth phenotypes of microorganisms are a strong indicator of their underlying genetic fitness and c...
Budding yeast Saccharomyces cerevisiae is an important model organism in aging research. Genetic stu...
Over the past decade, interest in microfluidics has surged as applications have trended towards nove...
Motorized fluorescence microscopy combined with high-throughput microfluidic chips is a powerful met...
Clonal populations of cells exhibit variability in gene expression despite genetic identity. Single ...
Direct cell–cell communication can occur through various chemical and mechanical signals. However, a...
This thesis presents the design, characterization and optimization of microfluidic devices and fluor...
International audienceMicrofluidic platforms are ideal for generating dynamic temporal and spatial p...
Single cell experiments require a system that is capable of collecting signals on the scale of a cel...
Growth rate is a widely studied parameter for various cell-based biological studies. Growth rates of...
In microorganisms, and more particularly in yeasts, a standard phenotyping approach consists in the ...
<div><p>In microorganisms, and more particularly in yeasts, a standard phenotyping approach consists...
Time-lapse single cell imaging by microscopy can provide precise cell information such as the cell s...
Microfluidics, in combination with time-lapse microscopy, is a transformative technology that signif...
We present a simple and high-throughput microfluidic system for diffusion-based monolayer yeast cell...
Growth phenotypes of microorganisms are a strong indicator of their underlying genetic fitness and c...
Budding yeast Saccharomyces cerevisiae is an important model organism in aging research. Genetic stu...
Over the past decade, interest in microfluidics has surged as applications have trended towards nove...
Motorized fluorescence microscopy combined with high-throughput microfluidic chips is a powerful met...
Clonal populations of cells exhibit variability in gene expression despite genetic identity. Single ...
Direct cell–cell communication can occur through various chemical and mechanical signals. However, a...
This thesis presents the design, characterization and optimization of microfluidic devices and fluor...
International audienceMicrofluidic platforms are ideal for generating dynamic temporal and spatial p...
Single cell experiments require a system that is capable of collecting signals on the scale of a cel...
Growth rate is a widely studied parameter for various cell-based biological studies. Growth rates of...
In microorganisms, and more particularly in yeasts, a standard phenotyping approach consists in the ...
<div><p>In microorganisms, and more particularly in yeasts, a standard phenotyping approach consists...