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通过射频血管内超声信号的小波分析检测富含脂质的动脉粥样硬化斑块:体外验证及初步体内应用

Detection of lipid-laden atherosclerotic plaque by wavelet analysis of radiofrequency intravascular ultrasound signals: in vitro validation and preliminary in vivo application.

作者信息

Murashige Akihiro, Hiro Takafumi, Fujii Takashi, Imoto Koji, Murata Takashige, Fukumoto Yusaku, Matsuzaki Masunori

机构信息

Division of Cardiovascular Medicine, Department of Medical Bioregulation, Yamaguchi University Graduate School of Medicine, 1-1-1 Minami Kogushi, Ube, Yamaguchi 755-8505 Japan.

出版信息

J Am Coll Cardiol. 2005 Jun 21;45(12):1954-60. doi: 10.1016/j.jacc.2004.10.080.

Abstract

OBJECTIVES

This study examined the feasibility of using a wavelet analysis of radiofrequency (RF) intravascular ultrasound (IVUS) signals in detecting lipid-laden plaque.

BACKGROUND

Wavelet analysis is a new mathematical model for assessing local changes in a geometrical profile of time-series signals.

METHODS

Radiofrequency IVUS signals of 85 arbitrarily selected vectors were acquired from 27 formalin-fixed noncalcified atherosclerotic plaques from human necropsy with a digitizer at 500 MHz with 8-bit resolution by use of a 40-MHz IVUS catheter. Wavelet analysis of these RF signals was performed using a Daubechies-2 wavelet to obtain a color-coded map of the correlation coefficient with the wavelet reconstructed over the x-y plane of the wavelet scale and the distance from the IVUS catheter. The plaque segment was then examined histologically after being stained with Masson's trichrome stain. This technique also was applied in vivo in 29 human coronary plaque segments. These segments were excised subsequently by directional coronary atherectomy and processed for histologic analysis.

RESULTS

In the in vitro study, histologic examination revealed lipid-laden segments in 29 vectors. When performing a wavelet analysis with the Daubechies-2 wavelet, the color-coded mapping revealed a different pattern in lipid-laden plaques compared with other types of plaque. Using this wavelet analysis, lipid-laden plaque could be detected with a sensitivity of 83% (24 of 29) and a specificity of 82% (46 of 56). In the in vivo study, fatty plaque could be detected with a sensitivity of 81% (13 of 16) and a specificity of 85% (11 of 13) with this method.

CONCLUSIONS

Wavelet analysis of RF IVUS signals enabled in vitro as well as in vivo detection of lipid-laden plaque. This method may be useful in assessing plaque vulnerability in patients with coronary artery disease.

摘要

目的

本研究探讨了使用小波分析射频(RF)血管内超声(IVUS)信号检测脂质斑块的可行性。

背景

小波分析是一种用于评估时间序列信号几何轮廓局部变化的新数学模型。

方法

使用40MHz的IVUS导管,通过数字化仪以500MHz、8位分辨率从27个来自人体尸检的福尔马林固定非钙化动脉粥样硬化斑块中获取85个任意选择向量的射频IVUS信号。使用Daubechies-2小波对这些RF信号进行小波分析,以获得在小波尺度的x-y平面和距IVUS导管距离上重建的小波的相关系数的彩色编码图。然后,在斑块段用Masson三色染色后进行组织学检查。该技术也在29个人类冠状动脉斑块段中进行了体内应用。这些段随后通过定向冠状动脉斑块旋切术切除并进行组织学分析。

结果

在体外研究中,组织学检查在29个向量中发现了脂质段。当使用Daubechies-2小波进行小波分析时,彩色编码映射显示与其他类型斑块相比,脂质斑块有不同的模式。使用这种小波分析,检测脂质斑块的灵敏度为83%(29个中的24个),特异性为82%(56个中的46个)。在体内研究中,使用该方法检测脂肪斑块的灵敏度为81%(16个中的13个),特异性为85%(13个中的11个)。

结论

RF IVUS信号的小波分析能够在体外和体内检测脂质斑块。该方法可能有助于评估冠状动脉疾病患者的斑块易损性。

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