AbstractSecond harmonic generation (SHG) from membrane-bound chromophores can be used to image membrane potential in neurons. We investigate the biophysical mechanism responsible for the SHG voltage sensitivity of the styryl dye FM 4-64 in pyramidal neurons from mouse neocortical slices. SHG signals are exquisitely sensitive to the polarization of the incident laser light. Using this polarization sensitivity in two complementary approaches, we estimate a ∼36° tilt angle of the chromophore to the membrane normal. Changes in membrane potential do not affect the polarization of the SHG signal. The voltage response of FM 4-64 is faster than 1ms and does not reverse sign when imaged at either side of its absorption peak. We conclude that FM 4-64...
Chapter 1: In Chapter 1, I discuss the design and mechanisms of existing optical techniques to measu...
Author: Yovan de Coene Co-authors: Stijn Van Cleuvenbergen, Karin Thevissen, Chris Van den Haute, Th...
Second−harmonic generation (SHG) by membrane−incorporated probes is a nonlinear optical signal that ...
The nonlinear optical phenomenon of second harmonic generation is shown to have intrinsic sensitivit...
AbstractSecond-harmonic generation (SHG) by membrane-incorporated probes is a nonlinear optical sign...
Second-harmonic generation (SHG) is emerging as a powerful tool for the optical measurement of trans...
Neurons communicate through electrochemical signaling within a complex network. These signals are co...
Second−harmonic generation (SHG) by membrane−incorporated probes is a nonlinear optical signal that ...
AbstractIn this article we present results from the simultaneous nonlinear (second harmonic generati...
International audienceWe present a detailed analysis of the generation of second-harmonic radiation ...
Unravelling the immense complexity of the human brain requires the ability to selectively interfere ...
Unravelling the immense complexity of the human brain requires the ability to selectively interfere ...
Feeling the field! The intensity of second harmonic generation (SHG) from a porphyrin in a lipid bil...
In the last decades, imaging membrane potential has become a fruitful approach to study neural circu...
In the last decades, imaging membrane potential has become a fruitful approach to study neural circu...
Chapter 1: In Chapter 1, I discuss the design and mechanisms of existing optical techniques to measu...
Author: Yovan de Coene Co-authors: Stijn Van Cleuvenbergen, Karin Thevissen, Chris Van den Haute, Th...
Second−harmonic generation (SHG) by membrane−incorporated probes is a nonlinear optical signal that ...
The nonlinear optical phenomenon of second harmonic generation is shown to have intrinsic sensitivit...
AbstractSecond-harmonic generation (SHG) by membrane-incorporated probes is a nonlinear optical sign...
Second-harmonic generation (SHG) is emerging as a powerful tool for the optical measurement of trans...
Neurons communicate through electrochemical signaling within a complex network. These signals are co...
Second−harmonic generation (SHG) by membrane−incorporated probes is a nonlinear optical signal that ...
AbstractIn this article we present results from the simultaneous nonlinear (second harmonic generati...
International audienceWe present a detailed analysis of the generation of second-harmonic radiation ...
Unravelling the immense complexity of the human brain requires the ability to selectively interfere ...
Unravelling the immense complexity of the human brain requires the ability to selectively interfere ...
Feeling the field! The intensity of second harmonic generation (SHG) from a porphyrin in a lipid bil...
In the last decades, imaging membrane potential has become a fruitful approach to study neural circu...
In the last decades, imaging membrane potential has become a fruitful approach to study neural circu...
Chapter 1: In Chapter 1, I discuss the design and mechanisms of existing optical techniques to measu...
Author: Yovan de Coene Co-authors: Stijn Van Cleuvenbergen, Karin Thevissen, Chris Van den Haute, Th...
Second−harmonic generation (SHG) by membrane−incorporated probes is a nonlinear optical signal that ...