2011/07/10 by Shannon Kian Zareh, Zareh, Shannon Kian, Michael C. DeSantis +7
Biochemistry, Genetics and Molecular Biology · Medicine · Physics and Astronomy · #Advanced Fluorescence Microscopy Techniques #Advanced Neuroimaging Techniques and Applications #Drug Transport and Resistance Mechanisms #cond-mat.soft #physics.bio-ph #q-bio.BM #q-bio.QM
paper · pdf · doi:10.48550/arxiv.1107.1927
arxiv created 2011/07/11 · arxiv updated 2011/07/12
Diffusion coefficient measurements are important for many biological and material investigations, such as particle dynamics, kinetics, and size determinations. Amongst current measurement methods, single particle tracking (SPT) offers the unique capability of providing location and diffusion information of a molecule simultaneously while using only femptomoles of sample. However, the temporal resolution of SPT is limited to seconds for single-color labeled samples. By directly imaging three dimensional (3D) diffusing fluorescent proteins and studying the widths of their intensity profiles, we determine the proteins' diffusion coefficients using single protein images of sub-millisecond exposure times. This simple method improves the temporal resolution of diffusion coefficient measurements to sub-millisecond, and can be readily applied to a range of particle sizes in SPT investigations and applications where diffusion coefficient measurements are needed, such as reaction kinetics and particle size determinations.