A New Radial Strain and Strain Rate Estimation Method Using Autocorrelation for Carotid Artery

  • Ye, Jihui
  • Kim, Hoonmin
  • Park, Jongho
  • Yeo, Sunmi
  • Shim, Hwan
  • ... Yoo, Yangmo
  • 외 1명
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초록

Atherosclerosis is a leading cause of cardiovascular disease. The early diagnosis of atherosclerosis is of clinical interest since it can prevent any adverse effects of atherosclerotic vascular diseases. In this paper, a new carotid artery radial strain estimation method based on autocorrelation is presented. In the proposed method, the strain is first estimated by the autocorrelation of two complex signals from the consecutive frames. Then, the angular phase from autocorrelation is converted to strain and strain rate and they are analyzed over time. In addition, a 2D strain image over region of interest in a carotid artery can be displayed. To evaluate the feasibility of the proposed radial strain estimation method, radio-frequency (RF) data of 408 frames in the carotid artery of a volunteer were acquired by a commercial ultrasound system equipped with a research package (V10, Samsung Medison, Korea) by using a L5-131S linear array transducer. From in vivo carotid artery data, the mean strain estimate was -0.1372 while its minimum and maximum values were -2.961 and 0.909, respectively. Moreover, the overall strain estimates are highly correlated with the reconstructed M-mode trace. Similar results were obtained from the estimation of the strain rate change over time. These results indicate that the proposed carotid artery radial strain estimation method is useful for assessing the arterial wall's stiffness noninvasively without increasing the computational complexity.

키워드

strain imagingradial strainautocorrelation methodcarotidSTIFFNESS
제목
A New Radial Strain and Strain Rate Estimation Method Using Autocorrelation for Carotid Artery
저자
Ye, JihuiKim, HoonminPark, JonghoYeo, SunmiShim, HwanLim, HyungjoonYoo, Yangmo
DOI
10.1117/12.2042676
발행일
2014
유형
Proceedings Paper
저널명
Proceedings of SPIE - The International Society for Optical Engineering
9040