Real time three-dimensional heat-induced echo-strain imaging for monitoring high-intensity acoustic ablation produced by conformal interstitial and external directional ultrasound therapy applicators

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United States of America Patent

PATENT NO 9060670
SERIAL NO

12712019

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Abstract

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Three dimensional heat-induced echo-strain imaging is a potentially useful tool for monitoring the formation of thermal lesions during ablative therapy. Heat-induced echo-strain, known as thermal strain, is due to the changes in the speed of propagating ultrasound signals and to tissue expansion during heat deposition. This paper presents a complete system for targeting and intraoperative monitoring of thermal ablation by high intensity focused acoustic applicators. A special software interface has been developed to enable motor motion control of 3D mechanical probes and rapid acquisition of 3D-RF data (ultrasound raw data after the beam-forming unit). Ex-vivo phantom and tissue studies were performed in a controlled laboratory environment. While B-mode ultrasound does not clearly identify the development of either necrotic lesions or the deposited thermal dose, the proposed 3D echo-strain imaging can visualize these changes, demonstrating agreement with temperature sensor readings and gross-pathology. Current results also demonstrate feasibility for real-time computation through a parallelized implementation for the algorithm used. Typically, 125 frames per volume can be processed in less than a second. Motion compensation can account for a shift within frames due to either tissue movement or positional error in the US 3D imaging probe.

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Patent Owner(s)

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THE JOHNS HOPKINS UNIVERSITY3400 N CHARLES STREET BALTIMORE MD 21218

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Inventor(s)

Inventor Name Address # of filed Patents Total Citations
Boctor, Emad M Baltimore, US 26 595
Burdette, Everette C Champaign, US 47 3206

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