1700 nm optical coherence microscopy images neurons and axonal myelination across the mouse neocortex and some sub-cortical regions, based on intrinsic tissue contrast, with minimal invasiveness
AbstractMyelination processes are closely related to higher brain functions such as learning and mem...
Brain connectivity spans over broad spatial scales, from nanometers to centimeters. In order to unde...
Scanning laser ophthalmoscopy (SLO) and optical coherence tomography (OCT) provide complementary vie...
In vivo, minimally invasive microscopy in deep cortical and sub-cortical regions of the mouse brain ...
We propose a new method and optical instrumentation for mouse brain imaging based on extended-focus ...
Department of Biomedical EngineeringPhysical sectioning microscopy has been spotlighted as a pioneer...
In vivo optical microscopic imaging techniques have recently emerged as important tools for the stud...
Visible light optical coherence tomography has shown great interest in recent years for spectroscopi...
International audienceMyelin sheath disruption is responsible for multiple neuropathies in the centr...
The imaging capability of optical coherence microscopy (OCM) has great potential to be used in neuro...
The imaging capability of optical coherence microscopy (OCM) has great potential to be used in neuro...
We present a novel extended-focus optical coherence microscope (OCM) attaining 0.7 μm axial and 0.4 ...
The observation of histopathology using optical microscope is an essential procedure for examination...
Department of Biomedical EngineeringLabelling-based imaging technique has taken many attentions for ...
We demonstrate label-free imaging of cerebral $beta$-amyloidosis ex vivo and in a living mouse model...
AbstractMyelination processes are closely related to higher brain functions such as learning and mem...
Brain connectivity spans over broad spatial scales, from nanometers to centimeters. In order to unde...
Scanning laser ophthalmoscopy (SLO) and optical coherence tomography (OCT) provide complementary vie...
In vivo, minimally invasive microscopy in deep cortical and sub-cortical regions of the mouse brain ...
We propose a new method and optical instrumentation for mouse brain imaging based on extended-focus ...
Department of Biomedical EngineeringPhysical sectioning microscopy has been spotlighted as a pioneer...
In vivo optical microscopic imaging techniques have recently emerged as important tools for the stud...
Visible light optical coherence tomography has shown great interest in recent years for spectroscopi...
International audienceMyelin sheath disruption is responsible for multiple neuropathies in the centr...
The imaging capability of optical coherence microscopy (OCM) has great potential to be used in neuro...
The imaging capability of optical coherence microscopy (OCM) has great potential to be used in neuro...
We present a novel extended-focus optical coherence microscope (OCM) attaining 0.7 μm axial and 0.4 ...
The observation of histopathology using optical microscope is an essential procedure for examination...
Department of Biomedical EngineeringLabelling-based imaging technique has taken many attentions for ...
We demonstrate label-free imaging of cerebral $beta$-amyloidosis ex vivo and in a living mouse model...
AbstractMyelination processes are closely related to higher brain functions such as learning and mem...
Brain connectivity spans over broad spatial scales, from nanometers to centimeters. In order to unde...
Scanning laser ophthalmoscopy (SLO) and optical coherence tomography (OCT) provide complementary vie...