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Ultrasound imaging is familiar to many for the pictures it produces of the developing fetus in pregnancy. It is also one of the most widely used methods to examine the heart, the organs of the abdomen and pelvis, muscles, tendons, and other soft tissue structures. By virtue of the acoustical Doppler effect, it also provides images of human blood flow without the need to inject radioactive compounds, X-ray or other dyes into the circulation. Although in recent years the clinical use of Doppler ultrasound instruments has become widespread, its role has been confined to answering qualitative questions about flow in relatively large vessels.
Dr. Burns seeks to extend this method into a quantitative technique able to measure important hemodynamic variables in the body such as the flow rate of blood, its pressure and the resistance in large vessels. He is analyzing the interaction of ultrasound with moving blood as well as the dynamic characteristics of blood flow and the vessels themselves.
Dr. Burns seeks to extend this method into a quantitative technique able to measure important hemodynamic variables in the body such as the flow rate of blood, its pressure and the resistance in large vessels. He is analyzing the interaction of ultrasound with moving blood as well as the dynamic characteristics of blood flow and the vessels themselves.
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Jon-Émile S Kenny,Chelsea E Munding,Joseph K Eibl,Andrew M Eibl,Bradley F Long,Aaron Boyes,Jianhua Yin, Pietro Verrecchia,Matthew Parrotta,Ronald Gatzke, Paul A Magnin,Peter N Burns,
Scientific reportsno. 1 (2021): 7780-7780
JOURNAL OF ULTRASOUND IN MEDICINEno. 12 (2021): 2535-2536
semanticscholar(2020)
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