From planning transportation networks to organizing massive datasets, many of society's most important challenges boil down ...
Imaging Science is an interdisciplinary field combining computer science, engineering, and physics to explore image creation, perception, and analysis. Our strong industry partnerships, including the ...
High-resolution imaging (HRI) captures images with an extremely high degree of detail, exceeding what the human eye can perceive. This capability enables improved precision, clarity, and depth in ...
Fourier transform is a key method for analyzing signals in both time and frequency domains. The FFT is a computational algorithm that efficiently computes the discrete Fourier transform (DFT) and its ...
Quantum light sources bring unique opportunities for nonlinear spectroscopy resulting in quantum spectroscopy with no classical analogs and enhancing the sensitivity and resolution of classical ...
Benefiting from its advantages in fast volumetric imaging for recording biodynamics, Fourier light field microscopy (FLFM) has a wide range of applications in biomedical research, especially in ...
Single-molecule super-resolution microscopy (SMLM) techniques like dSTORM can reveal biological structures down to the nanometer scale. The achievable resolution is not only defined by the ...
This module is based on the work by the Huser-Lab and can be found as a preprint on Bioarxiv [1]. It uses a low-cost single-mode diode laser (532 nm) and a Raspberry Pi driven DMD module to generate a ...