Directional Doppler in Cardiology: A 50-Year Journey

多普勒效应 医学 介绍(产科) 血流 医学物理学 放射科 物理 天文
作者
C Veyrat
出处
期刊:Journal of The American Society of Echocardiography [Elsevier]
卷期号:31 (12): 1308-1322 被引量:3
标识
DOI:10.1016/j.echo.2018.09.014
摘要

•1966–68 Birth: 3 new devices made Doppler directional, opening the flow dynamics era. •1968–73 First Directional Doppler human recorded, peripheral vessels up to the heart. •1973–82 Imaging progresses (1D and 2D, color-coded) set new applications. •1973–2000 Engineer-Physicist-Physician led Directional Doppler to clinical maturity. •2000s New developments are carried out and expected from continuous collaboration. In 1968, while cardiologists were focused on cardiac structures imaged by ultrasound, Daniel Kalmanson in Paris, France, devised a new ultrasonic modality, directional continuous-wave Doppler, enabling him to record instantaneous cardiovascular blood flow velocities with recognition of their direction (relative to the transducer) in vessels. An innovative presentation of Doppler data also made velocity traces physiologically understandable. Following the noninvasive study of the arterial and venous beds, flow velocity in the right (1969) and left (1970) cardiac chambers was studied by means of a directional Doppler catheter. The curtain was then raised for the renewal of our pathophysiologic understanding of cardiac dynamics and the adoption of a new methodology. Technological evolution paved the way for clever researchers to pioneer important advances, diversifying the technique. Guided by the early principles, which are still valid in 2018, directional Doppler finally gained acceptance from the entire scientific community. In 1968, while cardiologists were focused on cardiac structures imaged by ultrasound, Daniel Kalmanson in Paris, France, devised a new ultrasonic modality, directional continuous-wave Doppler, enabling him to record instantaneous cardiovascular blood flow velocities with recognition of their direction (relative to the transducer) in vessels. An innovative presentation of Doppler data also made velocity traces physiologically understandable. Following the noninvasive study of the arterial and venous beds, flow velocity in the right (1969) and left (1970) cardiac chambers was studied by means of a directional Doppler catheter. The curtain was then raised for the renewal of our pathophysiologic understanding of cardiac dynamics and the adoption of a new methodology. Technological evolution paved the way for clever researchers to pioneer important advances, diversifying the technique. Guided by the early principles, which are still valid in 2018, directional Doppler finally gained acceptance from the entire scientific community.
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