Although Schyzosaccharomyces pombe is one of the principal model organisms for studying the cell cycle, surprisingly few methods have characterized S. pombe growth on the single cell level, and no methods exist capable of analyzing thousands of cells and tens of thousands of cell division events. We developed an automated microfluidic platform permitting S. pombe to be grown on-chip for several days under defined and changeable conditions. We developed an image processing pipeline to extract and quantitate several physiological parameters including cell length, time to division, and elongation rate without requiring synchronization of the culture. Over a period of 50 hours our platform analyzed over 100000 cell division events and reconstru...
Important insights into aging have been generated with the budding yeast. However, a major challenge...
Microfluidics has enabled various research projects in the field of microbial single-cell analysis. ...
Recent research on population heterogeneity revealed fascinating insights into microbial behavior. I...
Although Schyzosaccharomyces pombe is one of the principal model organisms for studying the cell cyc...
<div><p>Although <i>Schyzosaccharomyces pombe</i> is one of the principal model organisms for studyi...
We introduce a microfluidic system for simultaneously measuring single cell mass and cell cycle prog...
Progress in synthetic biology requires the development of novel techniques for investigating long-te...
BACKGROUND:Imaging single cells with fluorescent markers over multiple cell cycles is a powerful too...
We report an automated microfluidic-based platform for single cell analysis that allows for cell cul...
This protocol describes the production and operation of a microfluidic dissection platform for long-...
Grünberger A, Probst C, Helfrich S, et al. Spatiotemporal microbial single-cell analysis using a hig...
We demonstrate the use of a simple microfluidic setup, in which single budding yeast cells can be tr...
Technological advances in molecular biology over the last several decades have enabled researchers t...
Grünberger A, Schöler K, Probst C, et al. Real-time monitoring of fungal growth and morphogenesis at...
The regulation of cell growth has fundamental physiological, biotechnological and medical implicatio...
Important insights into aging have been generated with the budding yeast. However, a major challenge...
Microfluidics has enabled various research projects in the field of microbial single-cell analysis. ...
Recent research on population heterogeneity revealed fascinating insights into microbial behavior. I...
Although Schyzosaccharomyces pombe is one of the principal model organisms for studying the cell cyc...
<div><p>Although <i>Schyzosaccharomyces pombe</i> is one of the principal model organisms for studyi...
We introduce a microfluidic system for simultaneously measuring single cell mass and cell cycle prog...
Progress in synthetic biology requires the development of novel techniques for investigating long-te...
BACKGROUND:Imaging single cells with fluorescent markers over multiple cell cycles is a powerful too...
We report an automated microfluidic-based platform for single cell analysis that allows for cell cul...
This protocol describes the production and operation of a microfluidic dissection platform for long-...
Grünberger A, Probst C, Helfrich S, et al. Spatiotemporal microbial single-cell analysis using a hig...
We demonstrate the use of a simple microfluidic setup, in which single budding yeast cells can be tr...
Technological advances in molecular biology over the last several decades have enabled researchers t...
Grünberger A, Schöler K, Probst C, et al. Real-time monitoring of fungal growth and morphogenesis at...
The regulation of cell growth has fundamental physiological, biotechnological and medical implicatio...
Important insights into aging have been generated with the budding yeast. However, a major challenge...
Microfluidics has enabled various research projects in the field of microbial single-cell analysis. ...
Recent research on population heterogeneity revealed fascinating insights into microbial behavior. I...