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.

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