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Author Spotlight: Assessing the Reliability of Doppler Ultrasound in Measuring Leg Blood Flow
Published on: December 15, 2023
Validity of the Handheld Doppler to Determine Lower-Limb Blood Flow Restriction Pressure for Exercise Protocols
Gilberto C Laurentino1, Jeremy P Loenneke2, James G Mouser2
1School of Physical Education and Sport, University of São Paulo, São Paulo, SP, Brazil.
Insights
The handheld Doppler is a valid tool for determining limb occlusion pressure during blood flow restriction exercises, matching Doppler ultrasound measurements. This practical method ensures accurate exercise protocols.
Area of Science:
- Exercise Physiology
- Biomedical Engineering
- Sports Science
Background:
- Blood flow restriction (BFR) exercise requires accurate determination of arterial occlusion pressure.
- Handheld (HH) Doppler is commonly used to identify this pressure, but its validity is debated.
- Uncertainty exists regarding whether the absence of an auscultatory signal truly indicates arterial occlusion.
Purpose of the Study:
- To evaluate the validity of the HH Doppler compared to Doppler ultrasound (US) for determining lower-limb arterial occlusion pressure.
- To assess the reliability and agreement between these two methods in healthy men.
Main Methods:
- Thirty-five healthy men participated in the study.
- Arterial occlusion pressure was measured twice using a thigh cuff: once with HH Doppler on the posterior tibial artery and once with Doppler US on the superficial femoral artery.
- Cuff inflation continued until the auscultatory pulse or femoral arterial blood flow was no longer detected.
Main Results:
- No significant difference was found between HH Doppler and Doppler US measurements (133 ± 18 vs. 135 ± 17 mm Hg, p = 0.168).
- A strong correlation (r = 0.938) and reasonable agreement were observed between the two methods.
- The total error of the estimate was 6.0 mm Hg, indicating high precision.
Conclusions:
- The HH Doppler is a valid and practical method for determining arterial occlusion pressure in lower-limb BFR exercise protocols.
- Findings support the use of HH Doppler for establishing safe and effective BFR exercise parameters.
- This method offers a reliable alternative to Doppler US for occlusion pressure assessment.
Abstract:
Laurentino, GC, Loenneke, JP, Mouser, JG, Buckner, SL, Counts, BR, Dankel, SJ, Jessee, MB, Mattocks, KT, Iared, W, Tavares, LD, Teixeira, EL, and Tricoli, V. Validity of the handheld Doppler to determine lower-limb blood flow restriction pressure for exercise protocols. J Strength Cond Res 34(9): 2693-2696, 2020-Handheld (HH) Doppler is frequently used for determining the arterial occlusion pressure during blood flow restriction exercises; however, it is unknown whether the blood flow is occluded when the auscultatory signal is no longer present. The purpose of this study was to assess the validity between the HH Doppler and the Doppler ultrasound (US) measurements for determining the arterial occlusion pressure in healthy men. Thirty-five participants underwent 2 arterial occlusion pressure measurements. In the first measure, a pressure cuff (17.5 cm wide) was placed at the most proximal region of the thigh and the pulse of posterior tibial artery was detected using an HH Doppler probe. The cuff was inflated until the auscultatory pulse was no longer detected. After 10 minutes of rest, the procedure was repeated with the Doppler US probe placed on the superficial femoral artery. The cuff was inflated up to the point at which the femoral arterial blood flow was interrupted. The point at which the auscultatory pulse and blood flow were no longer detected was deemed the arterial occlusion pressure. There were no significant differences in arterial occlusion pressure level between the HH Doppler and the Doppler US (133 [±18] vs. 135 [±17] mm Hg, p = 0.168). There was a significant correlation (r = 0.938, p = 0.168), reasonable agreement, and a total error of the estimate of 6.0 mm Hg between measurements. Arterial occlusion pressure level determined by the HH Doppler and the Doppler US was similar, providing evidence that the HH Doppler is a valid and practical method.
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