Shear wave speed recovery in transient elastography and supersonic imaging using propagating fronts
نویسندگان
چکیده
Transient elastography and supersonic imaging are promising new techniques for characterizing the elasticity of soft tissues. Using this method, an ‘ultrafast imaging’ system (up to 10 000 frames s−1) follows in real time the propagation of a low frequency shear wave. The displacement of the propagating shear wave is measured as a function of time and space. The objective of this paper is to develop and test algorithms whose ultimate product is images of the shear wave speed of tissue mimicking phantoms. The data used in the algorithms are the front of the propagating shear wave. Here, we first develop techniques to find the arrival time surface given the displacement data from a transient elastography experiment. The arrival time surface satisfies the Eikonal equation. We then propose a family of methods, called distance methods, to solve the inverse Eikonal equation: given the arrival times of a propagating wave, find the wave speed. Lastly, we explain why simple inversion schemes for the inverse Eikonal equation lead to large outliers in the wave speed and numerically demonstrate that the new scheme presented here does not have any large outliers. We exhibit two recoveries using these methods: one is with synthetic data; the other is with laboratory data obtained by Mathias Fink’s group (the Laboratoire Ondes et Acoustique, ESPCI, Université Paris VII).
منابع مشابه
Using level set based inversion of arrival times to recover shear wave speed in transient elastography and supersonic imaging
Transient elastography and supersonic imaging are promising new techniques for characterizing the elasticity of soft tissues. Using this method, an ‘ultrafast imaging’ system (up to 10 000 frames s−1) follows in real time the propagation of a low-frequency shear wave. The displacement of the propagating shear wave is measured as a function of time and space. Here we develop a fast level set bas...
متن کاملImproving arrival time identification in transient elastography.
In this paper, we improve the first step in the arrival time algorithm used for shear wave speed recovery in transient elastography. In transient elastography, a shear wave is initiated at the boundary and the interior displacement of the propagating shear wave is imaged with an ultrasound ultra-fast imaging system. The first step in the arrival time algorithm finds the arrival times of the she...
متن کاملShear wave elastography with a new reliability indicator
Non-invasive methods for liver stiffness assessment have been introduced over recent years. Of these, two main methods for estimating liver fibrosis using ultrasound elastography have become established in clinical practice: shear wave elastography and quasi-static or strain elastography. Shear waves are waves with a motion perpendicular (lateral) to the direction of the generating force. Shear...
متن کاملPosture and Activation Dependent Variations in Shear Wave Speed in the Gastrocnemius Muscle and Aponeurosis
Musculotendon tissue interactions are strongly dependent on the morphological and mechanical characteristics of the aponeurosis [1]. Despite its mechanical significance, the material properties of the aponeurosis are not well understood. In fact, the literature reports conflicting results concerning the relative stiffness of tendon and aponeurosis tissue [2, 3], which may arise from the challen...
متن کاملMathematical and numerical modeling of elastic waves propagation in the heart
The objective of this thesis is to develop a rigorous mathematical and numerical background for the extension and dissemination of imaging modalities by ultrasound, i.e. elastic waves, applied to the cardiac settings. The problems treated will concerned the topics of mathematical modeling, numerical analysis and scientific computing. More precisely we plan to define a linearized model for the p...
متن کامل