Post beamforming adaptive second order volterra filter (ASOVF) for pulse-echo ultrasonic imaging

We have previously introduced post-beamforming second order Volterra filter (SOVF) for decomposing the pulse echo ultrasonic radio-frequency (RF) signal into its linear and quadratic components. Using singular value decomposition (SVD), an optimal minimum-norm least squares algorithm for deriving the coefficients of the linear and quadratic kernels of the SOVF was developed and verified. However, the agent specificity of the standard SVD-based quadratic kernel is sometimes compromised by sensitivity to nonlinear echoes from tissue. In this paper, we present an adaptive second-order Volterra filter (ASOVF) designed to obtain the optimum filter coefficients minimizing the cost function to produce images with high sensitivity to nonlinear oscillations (20-30 dB below the fundamental) from microbubble ultrasound contrast agents (UCA) while maintaining high levels of noise rejection. The least-squares approach of a second-order Volterra model and its adaptive filtering algorithm based on recursive least-squares are introduced.

[1]  C. Chin,et al.  Pulse inversion Doppler: a new method for detecting nonlinear echoes from microbubble contrast agents , 1999, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.

[2]  S. Thomas Alexander,et al.  Adaptive Signal Processing , 1986, Texts and Monographs in Computer Science.

[3]  E.S. Ebbini,et al.  Post-beamforming Volterra filters for contrast-assisted ultrasonic imaging: in-vivo results , 2003, IEEE Symposium on Ultrasonics, 2003.

[4]  K J Parker,et al.  Contrast agents in diagnostic ultrasound. , 1989, Ultrasound in medicine & biology.

[5]  E.S. Ebbini,et al.  Post-beamforming second-order Volterra filter for pulse-echo ultrasonic imaging , 2003, IEEE Transactions on Ultrasonics, Ferroelectrics and Frequency Control.

[6]  Gene H. Golub,et al.  Matrix computations , 1983 .

[7]  P. Kumar,et al.  Theory and practice of recursive identification , 1985, IEEE Transactions on Automatic Control.