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Foraminal [18F]FDG Uptake on PET/MRI Is Associated with Radiculopathy and Symptom Reduction after Image-Guided Nerve
Virginie Kreutzinger1, Katharina Ziegeler2, Cynthia T Chin2
1From the Department of Radiology and Biomedical Imaging, University of California San Francisco, San Francisco, California V.kreutzinger@gmail.com.
Background And Purpose:
There is an imperfect correlation between morphologic MRI findings and radiating low back pain (LBP). Nerve irritation, visualized as glucose hypermetabolism on [18F]FDG-PET/MRI, has the potential to identify symptomatic segments. This study aimed to investigate the association of foraminal [18F]FDG uptake on PET/MRI, radiologic abnormalities, and patient outcomes.
Materials And Methods:
Prospectively recruited patients with radiating LBP underwent [18F]FDG-PET/MRI of the lumbar spine in this observational study. Back pain and leg/buttock pain were assessed by using the visual analog scale (0-10). Foraminal stenosis, facet joint arthropathy, and annular fissures of the disc were graded by radiologists. As part of the standard clinical care, a subset of patients received image-guided nerve root blocks, by using a steroid/anesthetic mixture, and pain on visual analog scale was noted before and after injection. Standardized tracer uptake was quantitatively assessed in all neural foramina, facet joints, and discs. Generalized estimating equations were used to investigate associations between the maximum standardized uptake value of [18F]FDG in the neural foramina, degree of stenosis (none, mild, moderate, severe), and pain, additionally adjusted for tracer uptake in the adjacent tissues, age, sex, and body mass index.
Results:
A total of 110 lumbar neural foramina in 11 patients were included in the analysis. Generalized estimating equations revealed significant associations between foraminal [18F]FDG uptake and degree of foraminal stenosis (β = 0.18; 95% CI, 0.03-0.33; P = .02). In patients with unilateral radicular symptoms but bilateral stenoses on MRI, [18F]FDG uptake was significantly higher on the symptomatic side (1.64 versus 1.88; P = .002). In segments treated with image-guided nerve root block, change in pain was positively associated with foraminal [18F]FDG uptake before injection (β = 2.24; 95% CI, 0.03-4.45; P = .05) but negatively associated with degree of stenosis (β = -1.27; 95%CI -2.24 to -0.31; P = .01).
Conclusions:
Foraminal [18F]FDG uptake on PET/MRI as a surrogate marker of nerve irritation may improve differentiation between painful versus nonpainful foraminal stenosis.
Insights
Positron emission tomography/magnetic resonance imaging (PET/MRI) using [18F]FDG can identify nerve irritation in patients with radiating low back pain. This technique helps differentiate between painful and non-painful spinal stenosis.
Area of Science:
- Radiology
- Nuclear Medicine
- Orthopedics
Background:
- Morphological MRI findings show imperfect correlation with radiating low back pain.
- Nerve irritation, indicated by glucose hypermetabolism, is a potential cause of pain.
- [18F]FDG-PET/MRI offers a method to visualize nerve irritation.
Purpose of the Study:
- To investigate the association between foraminal [18F]FDG uptake on PET/MRI, radiological abnormalities, and patient outcomes.
- To determine if [18F]FDG uptake can differentiate symptomatic from non-symptomatic spinal stenosis.
- To explore the relationship between imaging findings and pain relief after nerve root blocks.
Main Methods:
- 110 lumbar neural foramina in 11 patients with radiating low back pain were analyzed.
- [18F]FDG PET/MRI was performed, and foraminal stenosis, facet joint arthropathy, and annular fissures were graded.
- Foraminal [18F]FDG uptake was quantitatively assessed, and associations with stenosis and pain were analyzed using generalized estimating equations.
Main Results:
- Significant association found between foraminal [18F]FDG uptake and the degree of foraminal stenosis (p=0.02).
- [18F]FDG uptake was higher on the symptomatic side in patients with unilateral radicular symptoms and bilateral stenosis (p=0.002).
- Pain reduction after nerve root blocks was positively associated with baseline foraminal [18F]FDG uptake (p=0.05) and negatively with stenosis severity (p=0.01).
Conclusions:
- Foraminal [18F]FDG uptake on PET/MRI serves as a surrogate marker for nerve irritation.
- This imaging modality can improve the differentiation between painful and non-painful foraminal stenosis.
- PET/MRI findings correlate with pain perception and treatment response in patients with radiating low back pain.
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