Real-Time Dynamic 3-T Mri Assessment Of Spine Kinematics: A Feasibility Study Utilizing Three Different Fast Pulse Sequences

ACTA RADIOLOGICA(2021)

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摘要
BackgroundHalf-Fourier acquisition single-shot turbo spin-echo (HASTE), continuous radial gradient-echo (GRE), and True FISP allow real-time dynamic assessment of the spine.PurposeTo evaluate the feasibility of adding dynamic sequences to routine spine magnetic resonance imaging (MRI) for assessment of spondylolisthesis.Material and MethodsRetrospective review was performed of patients referred for dynamic MRI of the cervical or lumbar spine between January 2017 and 2018 who had flexion-extension radiographs within two months of MRI. Exclusion criteria were: incomplete imaging; spinal hardware; and inability to tolerate dynamic examination. Blinded, independent review by two board-certified musculoskeletal radiologists was performed to assess for spondylolisthesis (>3 mm translation); consensus review of dynamic radiographs served as the gold standard. Cervical spinal cord effacement was assessed. Inter-reader agreement and radiographic concordance was calculated for each sequence.ResultsTwenty-one patients were included (8 men, 13 women; mean age 47.9 +/- 16.5 years). Five had MRI of the cervical spine and 16 had MRI of the lumbar spine. Mean acquisition time was 18.4 +/- 1.7 min with dynamic sequences in the range of 58-77 s. HASTE and True FISP had the highest inter-reader reproducibility (kappa = 0.88). Reproducibility was better for the lumbar spine (kappa = 0.94) than the cervical spine (kappa = 0.28). Sensitivity of sequences for spondylolisthesis was in the range of 68.8%-78.6%. All three sequences had high accuracy levels: >= 90.5% averaged across the cervical and lumbar spine. Cervical cord effacement was observed during dynamic MRI in two cases (100% agreement).ConclusionReal-time dynamic MRI sequences added to spine MRI protocols provide reliable and accurate assessment of cervical and lumbar spine spondylolisthesis during flexion and extension.
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关键词
Dynamic magnetic resonance imaging, half-Fourier acquisition single-shot turbo spin-echo, gradient echo, real-time, spondylolisthesis, dynamic instability
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