An Analysis of Contrast Agent Flow Patterns From Sequential Ultrasound Images Using a Motion Estimation Algorithm Based on Optical Flow Patterns

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초록

This study estimates flow patterns of contrast agents from successive ultrasound image sequences by using an anisotropic diffusion-based optical flow algorithm. Before flow fields were recovered, the test sequences were reconstructed using relative composition of structural and textural parts from the original image. To improve estimation performance, an anisotropic diffusion filtering model was embedded into a spline-based slightly nonconvex total variation-L1 minimization algorithm. In addition, an incremental coarse-to-fine warping framework was employed with a linear minimization scheme to account for a large displacement. After each warping iteration, the implementation used intermediate bilateral filtering to prevent oversmoothing across motion boundaries. The performance of the proposed algorithm was tested using three different sequences obtained from two simulated datasets and phantom ultrasound sequences. The results indicate the robust performance of the proposed method under different noise environments. The results of the phantom study also demonstrate reliable performance according to different injection conditions of contrast agents. These experimental results suggest the potential clinical applicability of the proposed algorithm to ultrasonographic diagnosis based on contrast agents.

키워드

Anisotropic diffusion filteringcontrast agentsoptical flowstructure-texture decomposition (STD)tissue-mimicking phantomENHANCED ULTRASOUNDARTERIAL-WALLQUANTIFICATION
제목
An Analysis of Contrast Agent Flow Patterns From Sequential Ultrasound Images Using a Motion Estimation Algorithm Based on Optical Flow Patterns
저자
Lee, Ju HwanHwang, Yoo NaPark, Sung YunJeong, Jong SeobKim, Sung Min
DOI
10.1109/TBME.2014.2336672
발행일
2015-01
유형
Article
저널명
IEEE Transactions on Biomedical Engineering
62
1
페이지
49 ~ 59