The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the nano- to the mesoscale. This nonrandom organization is crucial for a large number of cellular functions. At the nanoscale, cell membranes organize into dynamic nanoassemblies enriched by cholesterol, sphingolipids, and certain types of proteins. Investigating these nanoassemblies known as lipid rafts is of paramount interest in fundamental cell biology. However, this goal requires simultaneous nanometer spatial precision and microsecond temporal resolution, which is beyond the reach of common microscopes. Optical antennas based on metallic nanostructures efficiently enhance and confine light into nanometer dimensions, breaching the diffracti...
Fluorescence correlation spectroscopy (FCS) has provided a wealth of information on the composition,...
Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecul...
Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecul...
International audienceThe plasma membrane of living cells is compartmentalized at multiple spatial s...
The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the...
The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the...
The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the...
International audienceNanoscale membrane assemblies of sphingolipids, cholesterol and certain protei...
International audienceNanoscale membrane assemblies of sphingolipids, cholesterol and certain protei...
Fluorescence correlation spectroscopy (FCS) has provided a wealth of information on the composition,...
Nanoscale membrane assemblies of sphingolipids, cholesterol, and certain proteins, also known as lip...
Nanoscale membrane assemblies of sphingolipids, cholesterol, and certain proteins, also known as lip...
International audienceOptical nano-antennas can efficiently confine light into nanoscopic hotspots e...
Cell membranes organize and regulate a vital share of biological signaling. Fluorescence has become...
Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecul...
Fluorescence correlation spectroscopy (FCS) has provided a wealth of information on the composition,...
Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecul...
Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecul...
International audienceThe plasma membrane of living cells is compartmentalized at multiple spatial s...
The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the...
The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the...
The plasma membrane of living cells is compartmentalized at multiple spatial scales ranging from the...
International audienceNanoscale membrane assemblies of sphingolipids, cholesterol and certain protei...
International audienceNanoscale membrane assemblies of sphingolipids, cholesterol and certain protei...
Fluorescence correlation spectroscopy (FCS) has provided a wealth of information on the composition,...
Nanoscale membrane assemblies of sphingolipids, cholesterol, and certain proteins, also known as lip...
Nanoscale membrane assemblies of sphingolipids, cholesterol, and certain proteins, also known as lip...
International audienceOptical nano-antennas can efficiently confine light into nanoscopic hotspots e...
Cell membranes organize and regulate a vital share of biological signaling. Fluorescence has become...
Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecul...
Fluorescence correlation spectroscopy (FCS) has provided a wealth of information on the composition,...
Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecul...
Optical nanoantennas can efficiently confine light into nanoscopic hotspots, enabling single-molecul...