Converting Coherence to Signal-to-noise Ratio for Enhancement of Adaptive Ultrasound Imaging

Hideyuki Hasegawa*, Ryo Nagaoka

*この論文の責任著者

研究成果: ジャーナルへの寄稿学術論文査読

19 被引用数 (Scopus)

抄録

High-frame-rate ultrasound is an emerging technique for functional ultrasound imaging. However, the lateral spatial resolution and contrast in high-frame-rate ultrasound with an unfocused transmit beam are inherently lower than those in conventional ultrasonic imaging based on the line-by-line acquisition using a focused ultrasonic beam because of the low directivity of the transmit beam. Coherence-based beamforming methods were introduced in ultrasound imaging for improvement of image quality. Such methods improve the lateral spatial resolution using the coherence among ultrasonic echo signals received by individual transducer elements. In this study, a new method based on the signal-to-noise ratio (SNR) among the element echo signals was developed for enhancement of the effect of the coherence factor (CF), which was previously developed for improvement in spatial resolution and contrast. In the proposed method, a new factor, namely, SNR factor, was introduced, and the relationship between the previously developed CF and SNR factor was discussed. The proposed method was implemented in plane wave imaging, and the performance was evaluated by simulated and phantom experiments. In simulation, the lateral spatial resolution and contrast obtained with the conventional CF were 0.23 mm and 47.0 dB, respectively, which were significantly better than 0.39 mm and 15.3 dB obtained by conventional delay-and-sum (DAS) beamforming. Using the proposed method, the lateral spatial resolution and contrast were further improved to 0.12 mm and 69.8 dB, respectively. Similar trends were found also in phantom experiments.

本文言語英語
ページ(範囲)27-40
ページ数14
ジャーナルUltrasonic Imaging
42
1
DOI
出版ステータス出版済み - 2020/01/01

ASJC Scopus 主題領域

  • 放射線技術および超音波技術
  • 放射線学、核医学およびイメージング

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