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The effect of myelography dye on bone density measurements utilizing Hounsfield units on CT
Ryan Weegens1, Charles H Crawford1,2, Steven D Glassman1,2
11Department of Orthopaedic Surgery, University of Louisville School of Medicine.
Insights
Myelography dye does not affect Hounsfield unit (HU) measurements of bone density on CT scans. This finding supports using CT myelograms for bone density assessment when standard CT images are unavailable.
Area of Science:
- Radiology
- Spine Surgery
- Medical Imaging
Background:
- Hounsfield unit (HU) measurements on CT scans are crucial for preoperative planning in spine surgery.
- Standard CT and postmyelogram CT are common preoperative diagnostic tools.
- The impact of myelography dye on CT bone density measurements is not well-documented.
Purpose of the Study:
- To investigate whether the presence of myelography dye influences Hounsfield unit (HU) measurements of bone density in CT studies.
- To determine the reliability of CT myelograms for bone density assessment.
Main Methods:
- A retrospective analysis of 29 spine surgery patients who underwent both standard CT and postmyelogram CT within a 6-month interval.
- HU measurements were taken from the midvertebral body of lumbar vertebrae (L1-5) using PACS software.
- Measurements were repeated three times, with a 6-week gap between standard CT and CT myelogram assessments to minimize bias.
Main Results:
- Strong correlations were observed between standard CT and CT myelogram HU measurements for L1, L2, L4, and L5 (r² = 0.951, 0.966, 0.820, 0.900, respectively).
- A moderate correlation was found for L3 (r² = 0.668).
- The average HU values for standard CT and CT myelography showed minimal differences across lumbar levels.
Conclusions:
- The presence of myelography dye does not significantly affect CT-based Hounsfield unit measurements of bone density.
- CT myelograms can be reliably used for bone density assessment, particularly when standard CT images are not available.
Objective:
Hounsfield unit (HU) measurements of bone density on CT are increasingly used for preoperative planning in spine surgery. Postmyelogram CT is another common preoperative diagnostic study. However, there is no current literature evaluating whether HU measurements on CT are affected by the presence of myelography dye. The purpose of the current study was to determine if the presence of myelography dye affects HU measurements of bone density in CT studies.
Methods:
Twenty-nine preoperative spine surgery patients who underwent both standard and postmyelography CT performed within 6 months of each other were identified. HU measurements were obtained from an elliptical region of interest using the available software on a standard PACS. Measurements were obtained on the axial cut at the midvertebral body on all lumbar vertebrae on three separate occasions and an average value was calculated for comparative analysis. A 6-week gap was used between measurements of the CT scans and the CT myelograms to diminish bias.
Results:
The mean age of the cohort was 69 years and the average BMI was 32 kg/m2. Five patients were male and 24 were female. Six of the patients had instrumentation placed prior to the initial CT scan. The average HU measurements for CT levels L1-5 were 165, 171, 145, 154, and 225, respectively, whereas HU measurements for CT myelography of levels L1-5 were 168, 177, 148, 170, and 239, respectively. Strong correlations were noted between the HU measured on CT and CT myelography for L1 (r2 = 0.951), L2 (r2 = 0.966), L4 (r2 = 0.820), and L5 (r2 = 0.900), and moderate for L3 (r2 = 0.668).
Conclusions:
The presence of myelography dye had no clear effect on CT HU measurements of bone density. The results of this study support the use of CT myelograms for bone density assessment in the absence of standard CT images.
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