We describe a system for the analysis of an important unicellular eukaryotic flagellate in a confining and crowded environment. The parasite Trypanosoma brucei is arguably one of the most versatile microswimmers known. It has unique properties as a single microswimmer and shows remarkable adaptations (not only in motility, but prominently so), to its environment during a complex developmental cycle involving two different hosts. Specific life cycle stages show fascinating collective behaviour, as millions of cells can be forced to move together in extreme confinement. Our goal is to examine such motile behaviour directly in the context of the relevant environments. Therefore, for the first time, we analyse the motility behaviour of trypanos...
Blood is a remarkable habitat: it is highly viscous, contains a dense packaging of cells and perpetu...
Evolution has generated a plethora of flagellate microswimmers. They populate all natural waters, fr...
We present a single cell viability assay, based on chemical gradient microfluidics in combination wi...
We describe a system for the analysis of an important unicellular eukaryotic flagellate in a confini...
The question of how single cells swim is of primary medical importance - especially in the case of p...
The highly motile and versatile protozoan pathogen Trypanosoma brucei undergoes a complex life cycle...
Trypanosomes are single-celled bloodstream parasites and causative agents of African Sleeping Sickne...
The locomotion of microorganisms in a microscopic world, where cells move through a fluid environmen...
Unicellular parasites have developed sophisticated swimming mechanisms to survive in a wide range of...
African trypanosomes thrive in the bloodstream and tissue spaces of a wide range of mammalian hosts....
Unicellular parasites have developed sophisitcated swimming mehanisms to survive in a wide range of ...
Trypanosoma brucei are protozoan parasites that present a tremendous medical and economic burden on ...
We present a quantitative 3D analysis of the motility of the blood parasite Trypanosoma brucei. Digi...
Blood is a remarkable habitat: it is highly viscous, contains a dense packaging of cells and perpetu...
We present a quantitative 3D analysis of the motility of the blood parasite Trypanosoma brucei. Digi...
Blood is a remarkable habitat: it is highly viscous, contains a dense packaging of cells and perpetu...
Evolution has generated a plethora of flagellate microswimmers. They populate all natural waters, fr...
We present a single cell viability assay, based on chemical gradient microfluidics in combination wi...
We describe a system for the analysis of an important unicellular eukaryotic flagellate in a confini...
The question of how single cells swim is of primary medical importance - especially in the case of p...
The highly motile and versatile protozoan pathogen Trypanosoma brucei undergoes a complex life cycle...
Trypanosomes are single-celled bloodstream parasites and causative agents of African Sleeping Sickne...
The locomotion of microorganisms in a microscopic world, where cells move through a fluid environmen...
Unicellular parasites have developed sophisticated swimming mechanisms to survive in a wide range of...
African trypanosomes thrive in the bloodstream and tissue spaces of a wide range of mammalian hosts....
Unicellular parasites have developed sophisitcated swimming mehanisms to survive in a wide range of ...
Trypanosoma brucei are protozoan parasites that present a tremendous medical and economic burden on ...
We present a quantitative 3D analysis of the motility of the blood parasite Trypanosoma brucei. Digi...
Blood is a remarkable habitat: it is highly viscous, contains a dense packaging of cells and perpetu...
We present a quantitative 3D analysis of the motility of the blood parasite Trypanosoma brucei. Digi...
Blood is a remarkable habitat: it is highly viscous, contains a dense packaging of cells and perpetu...
Evolution has generated a plethora of flagellate microswimmers. They populate all natural waters, fr...
We present a single cell viability assay, based on chemical gradient microfluidics in combination wi...