Fluorescence microscopy has undergone a ... for direct optical examination owing to its scattering properties in visible wavelengths and the light-protective mechanisms that exist in most species ...
The penetration depth of traditional confocal laser-scanning microscopy (LSM) systems is limited by light scattering. To avoid these limitations, multiphoton LSM uses a nonlinear fluorophore ...
This chapter provides an overview of the physics of light propagation in highly scattering turbid media, such as biological tissues, the techniques that enable using light emergent from those media ...
Virtually all structured light methods assume that the scene and the sources are immersed in pure air and that light is neither scattered nor absorbed. Recently, however, structured lighting has found ...
By efficiently correcting distortions caused by light scattering, the technique allows for clear imaging of dense and challenging targets. Its compatibility with conventional microscopy setups ...
Raman microscopes are very powerful tools ... Nearly all of the scattered light has identically the same frequency as the incident light; this is called elastic scattering or Rayleigh scattering.
The schematic diagram [Figure (b)] shows that the Stokes beam is modulated with an electro-optic modulator (EOM, M350-160 KD*P, Conoptics) at a couple of MHz by using a square-wave function-generator ...
This repository contains the implementation of the I-CLASS algorithm for incoherent data, such as fluorescence, as described in "Noninvasive megapixel fluorescence microscopy through scattering layers ...
Unlike the 3D imaging techniques in light microscopy, the spatial resolution provided by 3View in the Z direction is comparable to its X-Y resolution and does not degrade with depth. The cut step size ...
The Brandeis Light Microscopy facility provides instrumentation, training, and support for faculty and trainees in the acquisition and analysis of data using state of the art imaging equipment. Here, ...