Second-harmonic generation (SHG) is emerging as a powerful tool for the optical measurement of transmembrane potential in live cells with high sensitivity and temporal resolution. Using a patch clamp, we characterize the sensitivity of the SHG signal to transmembrane potential for the RH 237 dye in various normal and tumor cell types. SHG sensitivity shows a significant dependence on the type of cell, ranging from 10 to 17% per 100 mV. Furthermore, in the samples studied, tumor cell lines display a higher sensitivity compared to normal cells. In particular, the SHG sensitivity increases in the cell line Balb/c3T3 by the transformation induced with SV40 infection of the cells. We also demonstrate that fluorescent labeling of the membrane wit...
This project aimed at investigating the applicability of fluorescent proteins as probes in second-ha...
Second-harmonic-generation (SHG) microscopy has emerged as a powerful tool to image unstained living...
AbstractWe find that several key endogenous protein structures give rise to intense second-harmonic ...
AbstractSecond-harmonic generation (SHG) by membrane-incorporated probes is a nonlinear optical sign...
AbstractThe requirement of center asymmetry for the creation of second harmonic generation (SHG) sig...
The nonlinear optical phenomenon of second harmonic generation is shown to have intrinsic sensitivit...
AbstractIn this article we present results from the simultaneous nonlinear (second harmonic generati...
AbstractBy adapting a laser scanning microscope with a titanium sapphire femtosecond pulsed laser an...
Second−harmonic generation (SHG) by membrane−incorporated probes is a nonlinear optical signal that ...
Summary: The plasma membrane is the site of intercellular communication and subsequent intracellular...
Second-harmonic generation (SHG) microscopy has shown great promise for imaging live cells and tissu...
AbstractSecond harmonic generation (SHG) from membrane-bound chromophores can be used to image membr...
International audienceWe present a detailed analysis of the generation of second-harmonic radiation ...
International audienceWe demonstrate that simultaneous second-harmonic generation (SHG) and two-phot...
Second−harmonic generation (SHG) by membrane−incorporated probes is a nonlinear optical signal that ...
This project aimed at investigating the applicability of fluorescent proteins as probes in second-ha...
Second-harmonic-generation (SHG) microscopy has emerged as a powerful tool to image unstained living...
AbstractWe find that several key endogenous protein structures give rise to intense second-harmonic ...
AbstractSecond-harmonic generation (SHG) by membrane-incorporated probes is a nonlinear optical sign...
AbstractThe requirement of center asymmetry for the creation of second harmonic generation (SHG) sig...
The nonlinear optical phenomenon of second harmonic generation is shown to have intrinsic sensitivit...
AbstractIn this article we present results from the simultaneous nonlinear (second harmonic generati...
AbstractBy adapting a laser scanning microscope with a titanium sapphire femtosecond pulsed laser an...
Second−harmonic generation (SHG) by membrane−incorporated probes is a nonlinear optical signal that ...
Summary: The plasma membrane is the site of intercellular communication and subsequent intracellular...
Second-harmonic generation (SHG) microscopy has shown great promise for imaging live cells and tissu...
AbstractSecond harmonic generation (SHG) from membrane-bound chromophores can be used to image membr...
International audienceWe present a detailed analysis of the generation of second-harmonic radiation ...
International audienceWe demonstrate that simultaneous second-harmonic generation (SHG) and two-phot...
Second−harmonic generation (SHG) by membrane−incorporated probes is a nonlinear optical signal that ...
This project aimed at investigating the applicability of fluorescent proteins as probes in second-ha...
Second-harmonic-generation (SHG) microscopy has emerged as a powerful tool to image unstained living...
AbstractWe find that several key endogenous protein structures give rise to intense second-harmonic ...