activity
20182020
most citedDense Super-Resolution Imaging of Molecular Orientation via Joint Sparse Basis Deconvolution and Spatial Pooling

23 citations · 23 across the 1 of their papers we have counts for

collaborators

5 papers

physics.optics2020

Single-molecule orientation localization microscopy II: a performance comparison

Oumeng Zhang, Matthew D. Lew

Various techniques have been developed to measure the 2D and 3D positions and 2D and 3D orientations of fluorescent molecules with improved precision over standard epifluorescence…

physics.optics2020

Single-molecule orientation localization microscopy I: fundamental limits

Oumeng Zhang, Matthew D. Lew

Precisely measuring the three-dimensional position and orientation of individual fluorophores is challenging due to the substantial photon shot noise in single-molecule experiments…

physics.optics2020

Quantum limits for precisely estimating the orientation and wobble of dipole emitters

Oumeng Zhang, Matthew D. Lew

Precisely measuring molecular orientation is key to understanding how molecules organize and interact in soft matter, but the maximum theoretical limit of measurement precision has…

eess.IV201923 cited

Dense Super-Resolution Imaging of Molecular Orientation via Joint Sparse Basis Deconvolution and Spatial Pooling

Hesam Mazidi, Eshan S. King, Oumeng Zhang +2

In single-molecule super-resolution microscopy, engineered point-spread functions (PSFs) are designed to efficiently encode new molecular properties, such as 3D orientation, into c…

physics.optics2018

Fundamental Limits on Measuring the Rotational Constraint of Single Molecules using Fluorescence Microscopy

Oumeng Zhang, Matthew D. Lew

Optical fluorescence imaging is capable of measuring both the spatial and rotational dynamics of single molecules. However, unavoidable measurement noise will result in inaccurate…