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Updated: Jul 22, 2025

Quantitative Magnetic Resonance Imaging of Skeletal Muscle Disease
Published on: December 18, 2016
Applications of Diffusion-Weighted MRI to the Musculoskeletal System
José G Raya1, Alejandra Duarte2, Nian Wang3,4
1Department of Radiology, NYU Langone Health, New York, New York, USA.
Abstract:
Diffusion-weighted imaging (DWI) is an established MRI technique that can investigate tissue microstructure at the scale of a few micrometers. Musculoskeletal tissues typically have a highly ordered structure to fulfill their functions and therefore represent an optimal application of DWI. Even more since disruption of tissue organization affects its biomechanical properties and may indicate irreversible damage. The application of DWI to the musculoskeletal system faces application-specific challenges on data acquisition including susceptibility effects, the low T2 relaxation time of most musculoskeletal tissues (2-70 msec) and the need for sub-millimetric resolution. Thus, musculoskeletal applications have been an area of development of new DWI methods. In this review, we provide an overview of the technical aspects of DWI acquisition including diffusion-weighting, MRI pulse sequences and different diffusion regimes to study tissue microstructure. For each tissue type (growth plate, articular cartilage, muscle, bone marrow, intervertebral discs, ligaments, tendons, menisci, and synovium), the rationale for the use of DWI and clinical studies in support of its use as a biomarker are presented. The review describes studies showing that DTI of the growth plate has predictive value for child growth and that DTI of articular cartilage has potential to predict the radiographic progression of joint damage in early stages of osteoarthritis. DTI has been used extensively in skeletal muscle where it has shown potential to detect microstructural and functional changes in a wide range of muscle pathologies. DWI of bone marrow showed to be a valuable tool for the diagnosis of benign and malignant acute vertebral fractures and bone metastases. DTI and diffusion kurtosis have been investigated as markers of early intervertebral disc degeneration and lower back pain. Finally, promising new applications of DTI to anterior cruciate ligament grafts and synovium are presented. The review ends with an overview of the use of DWI in clinical routine. EVIDENCE LEVEL: 5 TECHNICAL EFFICACY: Stage 3.
Insights
Diffusion-weighted imaging (DWI) offers detailed insights into musculoskeletal tissue microstructure. This review highlights DWI
Area of Science:
- Magnetic Resonance Imaging
- Biomedical Engineering
- Radiology
Background:
- Diffusion-weighted imaging (DWI) probes tissue microstructure at the micrometer scale.
- Musculoskeletal tissues' ordered structure makes them ideal for DWI analysis.
- Disrupted tissue organization impacts biomechanics and may signal irreversible damage.
Purpose of the Study:
- To review technical aspects of DWI acquisition for musculoskeletal applications.
- To present clinical studies supporting DWI as a biomarker for various musculoskeletal tissues.
- To overview the current clinical routine use of DWI in musculoskeletal imaging.
Main Methods:
- Overview of diffusion-weighting and MRI pulse sequences for DWI.
- Discussion of different diffusion regimes for microstructure analysis.
- Compilation of clinical studies across diverse musculoskeletal tissues.
Main Results:
- DTI of the growth plate predicts child growth.
- DTI of articular cartilage may predict osteoarthritis progression.
- DWI of bone marrow aids in diagnosing vertebral fractures and bone metastases.
Conclusions:
- DWI is a valuable tool for assessing musculoskeletal tissue microstructure.
- DTI shows promise for early detection of degeneration and pathology in various tissues.
- DWI applications are expanding in clinical routine for musculoskeletal conditions.
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