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Updated: Feb 23, 2026

Author Spotlight: Assessing the Reliability of Doppler Ultrasound in Measuring Leg Blood Flow
Published on: December 15, 2023
CORP: Ultrasound assessment of vascular function with the passive leg movement technique
Jayson R Gifford1,2,3, Russell S Richardson2,3,4
1Department of Exercise Sciences, Brigham Young University , Provo, Utah.
Insights
Passive leg movement (PLM) is a simple, noninvasive test to assess vascular function. This method quantifies leg blood flow changes, aiding in cardiovascular disease research and clinical applications.
Area of Science:
- Physiology
- Cardiovascular Research
- Vascular Biology
Background:
- Vascular dysfunction is an early indicator in cardiovascular disease progression.
- Noninvasive methods are needed to monitor vascular health in clinical and research settings.
- Passive leg movement (PLM) is a validated, simple technique for assessing peripheral vascular function.
Purpose of the Study:
- To provide comprehensive guidelines for the assessment and interpretation of vascular function using PLM.
- To enhance the reproducibility and consistency of PLM studies.
- To promote PLM as a clinically relevant research tool.
Main Methods:
- Quantifying leg blood flow changes using Doppler ultrasound during passive leg movement (90° range of motion).
- Assessing the dependence of the PLM response on nitric oxide bioavailability (≤80%).
- Comparing PLM-induced hyperemia in populations with varying cardiovascular health.
Main Results:
- The PLM technique shows good agreement with technical assessments like intra-arterial drug infusions.
- PLM is significantly dependent on nitric oxide bioavailability.
- Individuals with poorer cardiovascular health (elderly, heart failure) show blunted PLM responses compared to healthy young individuals.
Conclusions:
- The PLM technique is a valuable tool for assessing peripheral vascular function across the spectrum of cardiovascular health.
- Standardized guidelines are needed to improve PLM study consistency and clinical application.
- PLM can help identify vascular dysfunction early in cardiovascular disease progression.
Abstract:
As dysfunction of the vascular system is an early, modifiable step in the progression of many cardiovascular diseases, there is demand for methods to monitor the health of the vascular system noninvasively in clinical and research settings. Validated by very good agreement with more technical assessments of vascular function, like intra-arterial drug infusions and flow-mediated dilation, the passive leg movement (PLM) technique has emerged as a powerful, yet relatively simple, test of peripheral vascular function. In the PLM technique, the change in leg blood flow elicited by the passive movement of the leg through a 90° range of motion is quantified with Doppler ultrasound. This relatively easy-to-learn test has proven to be ≤80% dependent on nitric oxide bioavailability and is especially adept at determining peripheral vascular function across the spectrum of cardiovascular health. Indeed, multiple reports have documented that individuals with decreased cardiovascular health such as the elderly and those with heart failure tend to exhibit a substantially blunted PLM-induced hyperemic response (~50 and ~85% reduction, respectively) compared with populations with good cardiovascular health such as young individuals. As specific guidelines have not yet been put forth, the purpose of this Cores of Reproducibility in Physiology (CORP) article is to provide a comprehensive reference for the assessment and interpretation of vascular function with PLM with the aim to increase reproducibility and consistency among studies and facilitate the use of PLM as a research tool with clinical relevance.
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