most citedEvaluation of principal component analysis image denoising on multi-exponential MRI relaxometry

91 citations · 385 across the 8 of their papers we have counts for

collaborators

8 papers

physics.med-ph201991 cited

Evaluation of principal component analysis image denoising on multi-exponential MRI relaxometry

Mark D. Does, Jonas Lynge Olesen, Kevin D. Harkins +4

PURPOSE: Multi-exponential relaxometry is a powerful tool for characterizing tissue, but generally requires high image signal-to-noise ratio (SNR). This work evaluates the use of p…

physics.med-ph201988 cited

Microscopic anisotropy misestimation in spherical-mean single diffusion encoding MRI

Rafael Neto Henriques, Sune N Jespersen, Noam Shemesh

Purpose: Microscopic fractional anisotropy (μFA) can disentangle microstructural information from orientation dispersion. While double diffusion encoding (DDE) MRI methods are wide…

physics.med-ph201986 cited

Insights into brain microstructure from in vivo DW-MRS

Marco Palombo, Noam Shemesh, Itamar Ronen +1

Many developmental processes, such as plasticity and aging, or pathological processes such as neurological diseases are characterized by modulations of specific cellular types and…

physics.med-ph201936 cited

Axon diameters and myelin content modulate microscopic fractional anisotropy at short diffusion times in fixed rat spinal cord

Noam Shemesh

Mapping tissue microstructure accurately and noninvasively is one of the frontiers of biomedical imaging. Diffusion Magnetic Resonance Imaging (MRI) is at the forefront of such eff…

physics.med-ph20195 cited

Two-dimensional Magnetization-Transfer - CPMG MRI reveals tract- specific signatures in fixed rat spinal cord

Teresa Serradas Duarte, Noam Shemesh

Multiexponential T2 (MET2) Relaxometry and Magnetization Transfer (MT) are among the most promising MRI-derived techniques for white matter (WM) characterization. Both techniques a…

physics.med-ph201923 cited

BOLD-fMRI in the mouse auditory pathway

Guilherme Blazquez Freches, Cristina Chavarrias, Noam Shemesh

The auditory pathway is widely distributed throughout the brain, and is perhaps one of the most interesting networks in the context of neuroplasticity. Accurate mapping of neural a…