Presented By: Biomedical Engineering
BME 500 Seminar: Flemming Forsberg, Ph.D.
Flemming Forsberg, Ph.D.
Department of Radiology
Thomas Jefferson University
“Quantitative ultrasound contrast imaging from pre-clinical models to human trials”
Abstract:
The use of gas filled microbubbles (1-10 μm in diameter) as vascular tracers and contrast agents for ultrasound imaging is well established. Such contrast agents are used worldwide to improve the diagnostic capabilities of ultrasound imaging especially when employed in combination with novel nonlinear contrast imaging modes such pulse inversion second harmonic and subharmonic imaging (SHI). Our group produced the first ever human SHI images. We have previously shown that SHI signals can indicate hydrostatic pressures in vitro and has developed a noninvasive pressure measurement technique, known as subharmonic-aided pressure estimation (SHAPE), based on this principle. Noninvasive SHAPE measurements may be a useful alternative to catheter- based measurements of cardiac conditions or portal hypertension. Here, we present results from our pre-clinical and clinical trials on the utility of ultrasound contrast imaging in general as well as quantitative SHI and SHAPE results in particular.
Department of Radiology
Thomas Jefferson University
“Quantitative ultrasound contrast imaging from pre-clinical models to human trials”
Abstract:
The use of gas filled microbubbles (1-10 μm in diameter) as vascular tracers and contrast agents for ultrasound imaging is well established. Such contrast agents are used worldwide to improve the diagnostic capabilities of ultrasound imaging especially when employed in combination with novel nonlinear contrast imaging modes such pulse inversion second harmonic and subharmonic imaging (SHI). Our group produced the first ever human SHI images. We have previously shown that SHI signals can indicate hydrostatic pressures in vitro and has developed a noninvasive pressure measurement technique, known as subharmonic-aided pressure estimation (SHAPE), based on this principle. Noninvasive SHAPE measurements may be a useful alternative to catheter- based measurements of cardiac conditions or portal hypertension. Here, we present results from our pre-clinical and clinical trials on the utility of ultrasound contrast imaging in general as well as quantitative SHI and SHAPE results in particular.
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