International audienceThe orientation of fibrils within biological tissues is of primary importance. In this study, we propose a simple method based on second harmonic generation (SHG) microscopy to map, pixel by pixel, the orientation of the symmetry axis of the second-order nonlinear susceptibility tensor of fibrils that produce SHG. The method uses only four images acquired at specific polarizations of the input laser beam, and can be easily and cheaply implemented on a confocal microscope. In addition to orientation informations, the method also provides polarization independent images and estimations of the ratio of the nonlinear susceptibility components. We demonstrate the relevance of our concept by studying the orientation fields o...
Second harmonic generation (SHG) microscopy has emerged as a powerful tool for biomedical research, ...
AbstractFibrillar collagen, being highly noncentrosymmetric, possesses a tremendous nonlinear suscep...
International audienceWe used intrinsic Second Harmonic Generation (SHG) by fibrillar collagen to vi...
International audienceThe orientation of fibrils within biological tissues is of primary importance....
International audienceCollagen and myosin fibrils are endogenous harmonophores that both give rise t...
Collagen is a biological macromolecule capable of second harmonic generation, allowing label-free de...
International audiencePolarization dependence second harmonic generation (P-SHG) microscopy is gaini...
International audienceCollagen is a triple-helical protein that forms various macromolecular organiz...
AbstractThe second-order nonlinear polarization properties of fibrillar collagen in various rat tiss...
In this work, we report the implementation of interferometric second harmonic generation (SHG) micro...
Histology has long recognized the intimate link between structure and function. Over centuries histo...
AbstractCollagen is a triple-helical protein that forms various macromolecular organizations in tiss...
AbstractCollagen possesses a strong second-order nonlinear susceptibility, a nonlinear optical prope...
Second-harmonic generation (SHG) is one of the modalities of nonlinear microscopy, which can provide...
We report the implementation of fast Interferometric Second Harmonic Generation (I-SHG) microscopy t...
Second harmonic generation (SHG) microscopy has emerged as a powerful tool for biomedical research, ...
AbstractFibrillar collagen, being highly noncentrosymmetric, possesses a tremendous nonlinear suscep...
International audienceWe used intrinsic Second Harmonic Generation (SHG) by fibrillar collagen to vi...
International audienceThe orientation of fibrils within biological tissues is of primary importance....
International audienceCollagen and myosin fibrils are endogenous harmonophores that both give rise t...
Collagen is a biological macromolecule capable of second harmonic generation, allowing label-free de...
International audiencePolarization dependence second harmonic generation (P-SHG) microscopy is gaini...
International audienceCollagen is a triple-helical protein that forms various macromolecular organiz...
AbstractThe second-order nonlinear polarization properties of fibrillar collagen in various rat tiss...
In this work, we report the implementation of interferometric second harmonic generation (SHG) micro...
Histology has long recognized the intimate link between structure and function. Over centuries histo...
AbstractCollagen is a triple-helical protein that forms various macromolecular organizations in tiss...
AbstractCollagen possesses a strong second-order nonlinear susceptibility, a nonlinear optical prope...
Second-harmonic generation (SHG) is one of the modalities of nonlinear microscopy, which can provide...
We report the implementation of fast Interferometric Second Harmonic Generation (I-SHG) microscopy t...
Second harmonic generation (SHG) microscopy has emerged as a powerful tool for biomedical research, ...
AbstractFibrillar collagen, being highly noncentrosymmetric, possesses a tremendous nonlinear suscep...
International audienceWe used intrinsic Second Harmonic Generation (SHG) by fibrillar collagen to vi...