Related Experiment Video
Updated: Feb 15, 2026

In vivo 19F MRI for Cell Tracking
Published on: November 25, 2013
In vivo MRI features of spinal muscles in the ovine model
Stephanie Valentin1, Tobey DeMott Yeates2, Theresia Licka1,3
1Movement Science Group Vienna, Equine Clinic, University of Veterinary Medicine Vienna, Vienna, Austria.
Abstract:
Muscle fatty infiltration (MFI) has been identified in patients with spinal pain using magnetic resonance imaging (MRI). Even though sheep are a commonly used animal model for the human spine, comparative sheep MFI data from MRI is not available. Determining MFI in sheep spinal muscles using acquisition protocols commonly used in man will identify the applicability of this approach in future sheep model studies, such that the effects of spinal interventions on muscle can be assessed prior to their use in a human (clinical) population. Therefore, the purpose of this study was to quantify ovine lumbar spine MFI using 3D 2-point Dixon and T1-weighted sequences. T1-weighted and Dixon lumbar spine axial sequences were collected in 14 healthy Austrian mountain sheep using a 1.5T MRI. At each vertebrae, the region of interest of psoas major and minor (PS), multifidus (M) and longissimus (L) were identified. To determine MFI from the T1-weighted images, mean pixel intensity (MPI) was calculated as a percentage of subcutaneous or intermuscular fat. For the Dixon images, fat sequence MPI was calculated as a percentage of the summed fat and water sequence MPIs. Spinal degeneration was graded and correlated to MFI. Dixon MFI was compared to T1-weighted MFI obtained from subcutaneous and intermuscular fat. For every muscle, T1-weighted MFI calculated using subcutaneous fat scored significantly lower than Dixon MFI and T1-weighted MFI calculated using intermuscular fat (p<0.001). There were no significant MFI differences between T1-weighted images calculated using intermuscular fat and Dixon images for M and L (p>0.05), although significant differences were found for PS. In sheep, Dixon sequences provide an acceptable comparison to T1-weighted sequences for lumbar extensor MFI based on intermuscular fat. However, compared to human literature, ovine lumbar musculature contains greater MFI, making interspecies comparisons more complex.
Insights
Muscle fatty infiltration (MFI) in sheep lumbar spine was quantified using MRI. Dixon sequences showed acceptable comparison to T1-weighted sequences for MFI assessment in sheep extensor muscles.
Area of Science:
- Biomedical Imaging
- Veterinary Medicine
- Musculoskeletal Research
Background:
- Muscle fatty infiltration (MFI) is a known indicator of spinal pain in humans, often assessed via MRI.
- Sheep are a valuable animal model for human spine research, but comparative MFI data using human MRI protocols is lacking.
- Establishing sheep MFI quantification methods is crucial for preclinical assessment of spinal interventions.
Purpose of the Study:
- To quantify ovine lumbar spine MFI using 3D 2-point Dixon and T1-weighted MRI sequences.
- To evaluate the applicability of human MRI acquisition protocols for assessing MFI in sheep spinal muscles.
- To compare MFI measurements between Dixon and T1-weighted sequences and different fat references.
Main Methods:
- 1.5T MRI scans (T1-weighted and Dixon sequences) were performed on 14 healthy sheep lumbar spines.
- Regions of interest (psoas major/minor, multifidus, longissimus) were identified at each vertebra.
- Mean pixel intensity was calculated to determine MFI, comparing Dixon sequences with T1-weighted sequences using subcutaneous and intermuscular fat references.
Main Results:
- T1-weighted MFI using subcutaneous fat was significantly lower than Dixon MFI and T1-weighted MFI using intermuscular fat (p<0.001).
- No significant MFI differences were found between T1-weighted (intermuscular fat) and Dixon images for multifidus and longissimus muscles (p>0.05).
- Ovine lumbar muscles exhibit higher MFI compared to human literature, complicating direct interspecies comparisons.
Conclusions:
- 3D 2-point Dixon sequences offer an acceptable alternative to T1-weighted sequences for quantifying lumbar extensor MFI in sheep, particularly when using intermuscular fat.
- The higher MFI in sheep lumbar musculature necessitates careful consideration for interspecies comparisons in spinal research.
- This study validates MRI protocols for MFI assessment in sheep, supporting their use in preclinical spinal intervention studies.
Related Concept Videos
Toxidromes: Clinical Features
COPD: Pathogenesis and Clinical Features
The primary cause for the onset of COPD is cigarette smoking and exposure to air pollution. These hazardous factors initiate a chain reaction within the lungs, resulting in chronic inflammation, damage to the airways, and a...
Imaging Studies I: CT and MRI
Description of the Procedures
Computed Tomography (CT) scan:
Computed Tomography (CT) scans use X-ray technology to generate detailed images of bones, organs, and tissues. During the scan, the patient lies on a moving table...
Special Features of Adaptive Immunity
The primary cell types involved in adaptive immunity are T cells and B cells. Each type has a unique role in defending the body against pathogens. T cells are responsible for cell-mediated immunity. They identify and eliminate infected cells directly,...
Spinal Cord
Esophageal Strictures-II: Clinical Features and Management
Healthcare providers should gather a comprehensive medical history and conduct a physical examination for diagnosis. If esophageal stricture is...

