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.

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