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Updated: May 14, 2026

Ultrasound Assessment of Endothelial-Dependent Flow-Mediated Vasodilation of the Brachial Artery in Clinical Research
Published on: October 22, 2014
Stroke volume obtained from the brachial artery using transbrachial electrical bioimpedance velocimetry
Isaac C Henry1, Donald P Bernstein, Matt J Banet
1Sotera Wireless, San Diego, CA 92121, USA. isaac.henry@soterawireless.com
Insights
A new noninvasive method, transbrachial electrical bioimpedance velocimetry (TBEV), measures cardiac output (CO). TBEV shows promise for accurately assessing blood flow in patients where other noninvasive methods fail.
Area of Science:
- Cardiovascular Physiology
- Biomedical Engineering
- Medical Instrumentation
Background:
- Cardiac output (CO) is vital for oxygen transport, particularly in critically ill patients.
- Invasive CO measurement methods are accurate but limited to intensive care units.
- Existing noninvasive methods like impedance cardiography (ICG) have limitations in accuracy for certain patient groups.
Purpose of the Study:
- To introduce and evaluate a novel noninvasive method for measuring cardiac output.
- To address the limitations of current noninvasive CO monitoring techniques.
Main Methods:
- The study introduces transbrachial electrical bioimpedance velocimetry (TBEV).
- TBEV utilizes a low-amperage, high-frequency alternating current passed from the upper arm to the antecubital fossa.
- Operational aspects are similar to ICG, but TBEV focuses on blood resistivity changes.
Main Results:
- The TBEV waveform and its derivatives are primarily influenced by blood resistivity.
- Evidence suggests TBEV may overcome ICG inaccuracies in specific patient populations.
Conclusions:
- Transbrachial electrical bioimpedance velocimetry (TBEV) is a novel noninvasive technique for cardiac output measurement.
- TBEV offers a potentially more accurate alternative to ICG in patients with severe heart disease or excess lung water.
Abstract:
Stroke volume (SV) is the quantity of blood ejected by the cardiac ventricles per each contraction. When SV is multiplied by heart rate, cardiac output is the result. Cardiac output (CO), in conjunction with hemoglobin concentration and arterial oxygen saturation are the cornerstones of oxygen transport. Measurement of CO is important, especially in sick humans suffering from decompensated heart disease and systemic diseases affecting the contractility or loading conditions of the heart. Although reasonably accurate invasive cardiac output methods are available, their use is restricted to those individuals hospitalized in the intensive care units. Thus, a robust noninvasive alternative is considered desirable. Impedance cardiography (ICG) is one such method, but in patients with severe heart disease and/or excess extravascular lung water, the method is inaccurate. This paper concerns the introduction of a new method, transbrachial electrical bioimpedance velocimetry (TBEV). The technique involves passage of a constant magnitude, high frequency, and low amperage ac from the upper arm to the antecubital fossa. In all other respects, the operational aspects of TBEV are consistent with ICG. There is good evidence suggesting that the TBEV waveform and its derivatives are generated by blood resistivity changes only.
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