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Updated: Aug 27, 2026

Quantitative Magnetic Resonance Imaging of Skeletal Muscle Disease
Published on: December 18, 2016
Mri-guided musculoskeletal needle biopsy by using ultrashort echo time sequence
Fengxian Wang1, Hongyan Zhu2, Zheng Qian2
1Department of Radiology, Nanjing Drum Tower Hospital, Affiliated Hospital of Medical School, Nanjing University, Nanjing 210008, China.
Objectives:
To improve the susceptibility artifacts, efficiency and safety during MRI-guided musculoskeletal needle biopsy by using ultrashort echo time (UTE) sequence.
Methods:
A dedicated UTE sequence was developed and implemented on a 3.0-T PET/MR system.In an ex vivo bovine thigh model, a biopsy needle was inserted at three angles relative to the B0 field direction.UTE was compared with conventional sequences, including 2DT1WI, 3DT1WI, and balanced steady-state free precession(bSSFP). Artifact dimensions parallel and perpendicular to the needle were independently measured by two radiologists, and mean values were analyzed.Subsequently, patients with suspected musculoskeletaltumors underwent MRI-guided needle biopsies using the optimized UTE. Two radiologists independently evaluated image quality and needle conspicuity using a 5-point Likert scale.Differenceswere analyzed using the Friedman test with post hoc Wilcoxon signed-rank tests and Bonferroni correction.Interobserver agreement was calculated using intraclass correlation coefficients.
Results:
The UTE sequence was optimized with aminimum TE of 0.11 ms, isotropic 1.5-mm voxels (reconstructed to 0.75 mm), and a 22.8-s acquisition time. Compared with conventional sequences, UTE produced smaller artifacts in the phantom model,with up to 70% reduction at the 90° insertion angle relative to B0.Artifact morphology remained stable across angles and planesinUTE sequences. Clinically, UTE provided adequate lesion conspicuity (3.50 ± 0.40) and excellentneedle visibility (4.39 ± 0.45) , with good-to-excellent interobserver agreement.
Conclusions:
Optimized UTE significantly reduces needle-related susceptibility artifacts and improves lesion and needle visualization during MRI-guided musculoskeletalbiopsy.
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