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Updated: Jun 10, 2026

Ultrasound Assessment of Endothelial-Dependent Flow-Mediated Vasodilation of the Brachial Artery in Clinical Research
Published on: October 22, 2014
Measuring FMD in the brachial artery: how important is QRS gating?
Tinoy J Kizhakekuttu1, David D Gutterman, Shane A Phillips
1Cardiovascular Medicine Division, Department of Medicine, Medical College of Wisconsin, Milwaukee, WI 53226, USA.
Insights
Measuring brachial artery dilation (FMD) using average diameter measurements is as accurate as ECG-gated methods. This simplified approach reduces processing time, potentially making FMD a more accessible clinical tool.
Area of Science:
- Vascular Biology
- Cardiovascular Physiology
- Medical Imaging Analysis
Background:
- Brachial flow-mediated dilation (FMD) measurement traditionally uses ECG-gated images at end diastole.
- This method assumes minimized inter-individual arterial compliance differences, but evidence is conflicting.
- ECG gating is often unavailable on ultrasound systems, requiring upgrades or longer processing times.
Purpose of the Study:
- To compare the accuracy of FMD and nitroglycerin-mediated dilation (NMD) measurements using QRS-gated versus average brachial artery diameter analysis.
- To assess the impact of simplified image analysis on post-processing time.
Main Methods:
- FMD and NMD were measured in adults with and without type 2 diabetes mellitus.
- Measurements were performed using both standard QRS-gated diameter analysis and average diameter over the R-R interval.
- Intraclass correlation coefficients (ICCs) were used to assess agreement between methods.
Main Results:
- Strong agreement was found between QRS-gated and average diameter methods for both FMD and NMD (ICCs = 0.88–0.99).
- Average diameter measurements significantly reduced post-image-processing time compared to QRS-gated analysis (P < 0.001).
Conclusions:
- Brachial artery dilation measurements (FMD and NMD) using average diameter are accurate and comparable to QRS-gated methods.
- Simplified average diameter analysis offers a valid alternative, potentially improving efficiency and clinical utility of FMD assessments.
Abstract:
Recommendations for the measurement of brachial flow-mediated dilation (FMD) typically suggest images be obtained at identical times in the cardiac cycle, usually end diastole (QRS complex onset). This recommendation presumes that inter-individual differences in arterial compliance are minimized. However, published evidence is conflicting. Furthermore, ECG gating is not available on many ultrasound systems; it requires an expensive software upgrade or increased image processing time. We tested whether analysis of images acquired with QRS gating or with the more simplified method of image averaging would yield similar results. We analyzed FMD and nitroglycerin-mediated dilation (NMD) in 29 adults with type 2 diabetes mellitus and in 31 older adults and 12 young adults without diabetes, yielding a range of brachial artery distensibility. FMD and NMD were measured using recommended QRS-gated brachial artery diameter measurements and, alternatively, the average brachial diameters over the entire R-R interval. We found strong agreement between both methods for FMD and NMD (intraclass correlation coefficients = 0.88-0.99). Measuring FMD and NMD using average diameter measurements significantly reduced post-image-processing time (658.9 ± 71.6 vs. 1,024.1 ± 167.6 s for QRS-gated analysis, P < 0.001). FMD and NMD measurements based on average diameter measurements can be performed without reducing accuracy. This finding may allow for simplification of FMD measurement and aid in the development of FMD as a potentially useful clinical tool.
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