Babesia microti causes “emergency” human babesiosis. However, little is known about the alterations in B. microti invaded red blood cells (Bm-RBCs) at the individual cell level. Through quantitative phase imaging techniques based on laser interferometry, we present the simultaneous measurements of structural, chemical, and mechanical modifications in individual mouse Bm-RBCs. 3-D refractive index maps of individual RBCs and in situ parasite vacuoles are imaged, from which total contents and concentration of dry mass are also precisely quantified. In addition, we examine the dynamic membrane fluctuation of Bm-RBCs, which provide information on cell membrane deformability
target and invade host red blood cells (RBCs), and gliding motility has so far not been observed in...
The simian parasite Plasmodium knowlesi causes severe and fatal malaria infections in humans, but th...
Babesiosis is a tick-borne zoonosis caused by protozoans of the genus Babesia, apicomplexan parasite...
Sequestration of parasite-infected red blood cells (RBCs) in the microvasculature is an important pa...
AbstractDuring its 48 h asexual reproduction cycle, the malaria parasite Plasmodium falciparum inges...
IntroductionBabesia microti (B. microti) is the dominant species responsible for human babesiosis, w...
Thesis (Ph. D.)--Harvard-MIT Division of Health Sciences and Technology, 2010.Cataloged from PDF ver...
Infection of cells by pathogens leads to both biochemical and structural modifications of the host c...
Investigation of the homeostasis of red blood cells upon infection by Plasmodium falciparum poses co...
In the present study, the subcellular localization of the host red blood cell (RBC) membrane compone...
Malaria parasites induce morphological, biochemical, and mechanical changes in red blood cells (RBCs...
Abstract Based on confocal fluorescence and bright field video microscopy, we present detailed obser...
Babesia microti is a malaria-like parasite, which infects ∼2000 people annually, such that babesiosi...
ABSTRACT Babesia is an apicomplexan parasite of significance that causes the disease known as babesi...
Babesia is an apicomplexan parasite of significance that causes the disease known as babesiosis in d...
target and invade host red blood cells (RBCs), and gliding motility has so far not been observed in...
The simian parasite Plasmodium knowlesi causes severe and fatal malaria infections in humans, but th...
Babesiosis is a tick-borne zoonosis caused by protozoans of the genus Babesia, apicomplexan parasite...
Sequestration of parasite-infected red blood cells (RBCs) in the microvasculature is an important pa...
AbstractDuring its 48 h asexual reproduction cycle, the malaria parasite Plasmodium falciparum inges...
IntroductionBabesia microti (B. microti) is the dominant species responsible for human babesiosis, w...
Thesis (Ph. D.)--Harvard-MIT Division of Health Sciences and Technology, 2010.Cataloged from PDF ver...
Infection of cells by pathogens leads to both biochemical and structural modifications of the host c...
Investigation of the homeostasis of red blood cells upon infection by Plasmodium falciparum poses co...
In the present study, the subcellular localization of the host red blood cell (RBC) membrane compone...
Malaria parasites induce morphological, biochemical, and mechanical changes in red blood cells (RBCs...
Abstract Based on confocal fluorescence and bright field video microscopy, we present detailed obser...
Babesia microti is a malaria-like parasite, which infects ∼2000 people annually, such that babesiosi...
ABSTRACT Babesia is an apicomplexan parasite of significance that causes the disease known as babesi...
Babesia is an apicomplexan parasite of significance that causes the disease known as babesiosis in d...
target and invade host red blood cells (RBCs), and gliding motility has so far not been observed in...
The simian parasite Plasmodium knowlesi causes severe and fatal malaria infections in humans, but th...
Babesiosis is a tick-borne zoonosis caused by protozoans of the genus Babesia, apicomplexan parasite...