Studies of red blood cells (RBCs) and RBC ghosts, using a quasi-elastic light scattering (QELS) microscope spectrometer, have identified the membrane as the primary source of the light scattering signal. This is the first report in which motion of the cell membrane has been demonstrated to be the primary source of the QELS signal from a cell. Cytoplasmic changes induced in the RBC by varying the osmotic strength of the medium were also detected using this technique. Comparison of the data from white blood cells (WBCs) with the RBC data demonstrated significant differences between different types of cells
Red blood cells are amazingly deformable structures able to re-cover their initial shape even after ...
Osmotic conditions play an important role in the cell properties of human red blood cells (RBCs), wh...
Osmotic conditions play an important role in the cell properties of human red blood cells (RBCs), wh...
Studies of red blood cells (RBCs) and RBC ghosts, using a quasi-elastic light scattering (QELS) micr...
A quasi-elastic light-scattering (QELS) microscope spectrometer was used to study the dynamic proper...
A quasi-elastic light-scattering (QELS) microscope spectrometer was used to study the dynamic proper...
<div><p>Light scattering is a well-established experimental technique, which gains more and more pop...
Light scattering is a well-established experimental technique, which gains more and more popularity ...
We present the light scattering properties of individual human red blood cells (RBCs). We show that ...
Light scattering is a well-established experimental technique, which gains more and more popularity ...
Abstract. We present the light scattering properties of individual human red blood cells (RBCs). We ...
Osmotic conditions play an important role in the cell properties of human red blood cells (RBCs), wh...
Osmotic conditions play an important role in the cell properties of human red blood cells (RBCs), wh...
Thesis (Ph. D.)--Harvard-MIT Division of Health Sciences and Technology, 2010.Cataloged from PDF ver...
Using a novel noncontact technique based on optical interferometry, we quantify the nanoscale therma...
Red blood cells are amazingly deformable structures able to re-cover their initial shape even after ...
Osmotic conditions play an important role in the cell properties of human red blood cells (RBCs), wh...
Osmotic conditions play an important role in the cell properties of human red blood cells (RBCs), wh...
Studies of red blood cells (RBCs) and RBC ghosts, using a quasi-elastic light scattering (QELS) micr...
A quasi-elastic light-scattering (QELS) microscope spectrometer was used to study the dynamic proper...
A quasi-elastic light-scattering (QELS) microscope spectrometer was used to study the dynamic proper...
<div><p>Light scattering is a well-established experimental technique, which gains more and more pop...
Light scattering is a well-established experimental technique, which gains more and more popularity ...
We present the light scattering properties of individual human red blood cells (RBCs). We show that ...
Light scattering is a well-established experimental technique, which gains more and more popularity ...
Abstract. We present the light scattering properties of individual human red blood cells (RBCs). We ...
Osmotic conditions play an important role in the cell properties of human red blood cells (RBCs), wh...
Osmotic conditions play an important role in the cell properties of human red blood cells (RBCs), wh...
Thesis (Ph. D.)--Harvard-MIT Division of Health Sciences and Technology, 2010.Cataloged from PDF ver...
Using a novel noncontact technique based on optical interferometry, we quantify the nanoscale therma...
Red blood cells are amazingly deformable structures able to re-cover their initial shape even after ...
Osmotic conditions play an important role in the cell properties of human red blood cells (RBCs), wh...
Osmotic conditions play an important role in the cell properties of human red blood cells (RBCs), wh...