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Coded excitation for ultrasound tissue harmonic imaging
Authors:Jaehee Song  Hak-yeol Sohn  Yang Mo Yoo
Institution:a Interdisciplinary Program of Integrated Biotechnology, Sogang University, Seoul, Republic of Korea
b Department of Electronic Engineering, Sogang University, Seoul, Republic of Korea
Abstract:Coded excitation can improve the signal-to-noise ratio (SNR) in ultrasound tissue harmonic imaging (THI). However, it could suffer from the increased sidelobe artifact caused by incomplete pulse compression due to the spectral overlap between the fundamental and harmonic components of ultrasound signal after nonlinear propagation in tissues. In this paper, three coded tissue harmonic imaging (CTHI) techniques based on bandpass filtering, power modulation and pulse inversion (i.e., CTHI-BF, CTHI-PM, and CTHI-PI) were evaluated by measuring the peak range sidelobe level (PRSL) with varying frequency bandwidths. From simulation and in vitro studies, the CTHI-PI outperforms the CTHI-BF and CTHI-PM methods in terms of the PRSL, e.g., −43.5 dB vs. −24.8 dB and −23.0 dB, respectively.
Keywords:Tissue harmonic imaging  Coded excitation  Pulse compression  Power modulation  Pulse inversion  Peak range sidelobe level
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