Related Experiment Video
Updated: Nov 30, 2025

Continuous Venous-Arterial Doppler Ultrasound During a Preload Challenge
Published on: January 20, 2023
Physiology and clinical utility of the peripheral venous waveform
Devin Chang1, Philip J Leisy2, Jenna H Sobey3
1Department of Biomedical Engineering, Vanderbilt University, Nashville, TN, USA.
Abstract:
The peripheral venous system serves as a volume reservoir due to its high compliance and can yield information on intravascular volume status. Peripheral venous waveforms can be captured by direct transduction through a peripheral catheter, non-invasive piezoelectric transduction, or gleaned from other waveforms such as the plethysmograph. Older analysis techniques relied upon pressure waveforms such as peripheral venous pressure and central venous pressure as a means of evaluating fluid responsiveness. Newer peripheral venous waveform analysis techniques exist in both the time and frequency domains, and have been applied to various clinical scenarios including hypovolemia (i.e. hemorrhage, dehydration) and volume overload.
Related Concept Videos
Venous Return
What is Venous Return?
Venous return refers to the rate at which blood flows back to the heart from the body's peripheral veins. It's an integral part of the circulatory system...
Venous Thrombosis II: Clinical Manifestations and Diagnostic Studies
Assessment of the Cardiovascular System III: Palpation
Jugular Venous Pressure (JVP) Measurement
Position the patient at a thirty- to forty-five-degree angle or in a semi-fowler's position. Look for the highest point of pulsation in the internal jugular vein and measure the vertical distance to the angle of Loius or sternal angle. A normal JVP is 3-4 cm above...
Peripheral Arterial Disease II: Clinical Manifestations and Diagnostic Evaluation
Pulse Assessment Sites
Pulse
The pulse serves as a clinical...

