A submatrix spatial coherence approach to minimum variance beamforming combined with sign coherence factor for coherent plane wave compounding

Technol Health Care. 2022;30(S1):11-25. doi: 10.3233/THC-228002.

Abstract

Background: The coherent plane wave compounding (CPWC) is a promising technique to enhance the imaging quality while maintaining the high frame rate in the plane wave ultrasound imaging. Recently, the spatial-coherence-based method has been specially designed to process echo matrix required by the minimum variance (MV) method.

Objective: In this paper, a novel beamforming method that integrates the submatrix-spatial-coherence-based MV with the sign coherence factor (SCF) is proposed to further improve the imaging quality.

Method: The submatrix smoothing technique is modified to smooth and de-correlate signals of the receiving array dimension. Then, the SCF is used to modify the input vector of the beamformer, which can reduce side lobe noises with almost no increase in the amount of calculation. Simulation, phantom, in vivo, and sound velocity error experiments have been performed to verify the superiority of the proposed beamformer.

Results: The imaging results show that the proposed approach performs better in the imaging resolution and contrast compared to the traditional CPWC method.

Conclusion: The robustness of the proposed method is enhanced, and the over-suppression phenomenon can be alleviated, which is a phenomenon that occurs in the original spatial-coherence and SCF methods.

Keywords: Coherent plane wave compounding; minimum variance; sign coherence factor; spatial coherence; ultrasound imaging.

MeSH terms

  • Algorithms*
  • Computer Simulation
  • Humans
  • Image Processing, Computer-Assisted / methods
  • Phantoms, Imaging
  • Sound*
  • Ultrasonography / methods