The Transmission Characteristics of Large and Small Pressure Waves in the Abdominal vena Cava
- 1 October 1969
- journal article
- Published by Institute of Electrical and Electronics Engineers (IEEE) in IEEE Transactions on Biomedical Engineering
- Vol. BME-16 (4) , 262-273
- https://doi.org/10.1109/tbme.1969.4502658
Abstract
The mechanical behavior of the abdominal venae cavae of anesthetized dogs has been studied by measuring the speed, attenuation, and changes in waveform of various kinds of artificially induced pressure signals. The propagation of large amplitude pressure waves is shown to be affected by reflection interference and pronounced nonlinear phenomena. For pressure signals exceeding a few mmHg the speed increases with amplitude and the wave front steepens during propagation as in the early phases of the formation of a shock wave. By inducing distension waves in the form of finite trains of sine waves with amplitudes less than 20 mmH2O the dispersion and attenuation were determined without requiring Fourier transform computations. At transmural pressures between 50 and 300 mmH2O and frequencies between 20 and 100 Hz the vena cava was found to be only mildly dispersive and the logarithmic decrement appears to be independent of frequency. Irrespective of the amplitude and shape of the pressure signals, their speeds varied along the vena cava, and also with respiration. In addition, the speeds generally increased under the influence of the chemical and electrical stimuli applied, and with rising transmural pressure.Keywords
This publication has 13 references indexed in Scilit:
- Transmission characteristics of axial waves in blood vesselsJournal of Biomechanics, 1968
- Dispersion and Attenuation of Small Artificial Pressure Waves in the Canine AortaCirculation Research, 1968
- Measurement of Viscoelastic Properties of Arteries in the Living DogCirculation Research, 1968
- Wave Propagation through a Viscous Fluid Contained in a Tethered, Initially Stressed, Orthotropic Elastic TubeBiophysical Journal, 1968
- A technique for the indirect measurement of the velocity of induced venous pulsationsAmerican Heart Journal, 1967
- Venous pistol shot soundsThe American Journal of Cardiology, 1962
- A Method Using Induced Waves to Study Pressure Propagation in Human ArteriesCirculation Research, 1957
- A study of the venomotor tone in a short intact venous segment of the forearm of manAmerican Heart Journal, 1956
- Wave Propagation in Elastic Tubes Filled with Streaming LiquidThe Journal of the Acoustical Society of America, 1955
- The Dynamics of Pulsatile Blood FlowCirculation Research, 1954