Feasibility and comparison of 3D modified rosette ultra-short echo time (PETALUTE) with conventional weighted acquisition in 31P-MRSI

B Brian Bozymski X Xin Shen A Ali Özen M Mark Chiew M M. Albert Thomas W William T. Clarke S Stephen Sawiak U Ulrike Dydak U Uzay Emir

Abstract

Abstract Phosphorus-31 magnetic resonance spectroscopic imaging ( 31 P-MRSI) provides valuable non-invasivein vivoinformation on tissue metabolism but is burdened by poor sensitivity and prolonged scan duration. Ultra-short echo time (UTE) acquisitions minimize signal loss when probing signals with relatively short spin-spin relaxation time (T 2 ), while also preventing first-order dephasing. Here, a three-dimensional (3D) UTE sequence with a rosette k-space trajectory (PETALUTE) is applied to 31 P-MRSI at 3T. Conventional weighted MRSI employs highly regular Cartesian k-space sampling, susceptible to substantial artifacts when accelerated via undersampling. In contrast, this novel sequence’s “petal-like” pattern offers incoherent sampling more suitable for compressed sensing (CS). These results showcase the competitive performance of PETALUTE against conventional weighted 31 P-MRSI with simulation, phantom, and in vivo leg muscle comparisons.

Article Details

Volume / Issue Vol. 15, Issue 1
Published February 22, 2025
ISSN 2045-2322
Publisher Nature Portfolio

Journal Info

Scientific Reports

Nature Portfolio

ISSN: 2045-2322 Open Access Life Sciences

Authors (9)

B

Brian Bozymski

X

Xin Shen

A

Ali Özen

M

Mark Chiew

M

M. Albert Thomas

W

William T. Clarke

S

Stephen Sawiak

U

Ulrike Dydak

U

Uzay Emir