Adaptive scaled coherence factor for ultrasound pixel-based beamforming

Ultrasonics. 2022 Feb:119:106608. doi: 10.1016/j.ultras.2021.106608. Epub 2021 Oct 27.

Abstract

Synthetic aperture (SA) ultrasound imaging can obtain images with high-resolution owing to its ability to dynamically focus in both directions. The signal-to-noise ratio (SNR) of SA imaging is poor because the pulse energy using one array element is quite low. Thus, the SA method with bidirectional pixel-based focusing (SA-BiPBF) was previously proposed as a solution to this challenge. However, using the nonadaptive delay-and-sum (DAS) beamforming still limits its imaging performance. This study proposes an adaptive scaled coherence factor (AscCF) for SA-BiPBF to further boost the image quality. The AscCF exploits generalized coherence factor (GCF) to measure the signal coherence to adaptively adapt the parameters in SNR estimation rather than fixed ones. Comparisons were made with several other weighting techniques by performing simulations and experiments for performance evaluation. Results confirm that AscCF applied to SA-BiPBF offers a good image contrast while reservation of the speckle pattern. AscCF achieves maximal improvements of contrast ratio (CR) by 48.5% and 47.76 % compared with scaled coherence factor (scCF), respectively in simulation and experiment. Simultaneously, the maximum of improvements in speckle signal-to-noise ratio (sSNR) of AscCF are 11.28 % and 20.01 % upon scCF in simulation and experiment, respectively. From the in vivo result, it also appears a potential for AscCF to act in clinical situations to better detect lesion and retain speckle pattern.

Keywords: Adaptive scaling; Bidirectional pixel-based focusing; Coherence factor; Synthetic aperture.

MeSH terms

  • Acoustics
  • Carotid Arteries / diagnostic imaging
  • Computer Simulation
  • Cysts / diagnostic imaging
  • Image Processing, Computer-Assisted / methods
  • Phantoms, Imaging
  • Signal-To-Noise Ratio
  • Ultrasonography / methods*