Nano-manipulation and high speed imaging combined to further our understanding of DNA repair mechanisms.
Fluorescence imaging with spatial resolution far below the diffraction limit.
An international collaborative effort analyzing large biochemical marker datasets.
Laser tweezer, single molecule, super-resolution imaging, DNA repair, Huntington's disease, Clinical biochemistry, Newborn screening, Genetic analysis.
This is a large scale effort to dramatically improve our understanding of the effects of many factors on the markers used in diagnostics.