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非侵入性血管弹性成像:理论框架

Noninvasive vascular elastography: theoretical framework.

作者信息

Maurice Roch L, Ohayon Jacques, Frétigny Yves, Bertrand Michel, Soulez Gilles, Cloutier Guy

机构信息

Laboratory of Biorheology and Medical Ultrasonics, Research Center, University of Montreal Hospital, Montreal, Quebec H2L 2W5, Canada.

出版信息

IEEE Trans Med Imaging. 2004 Feb;23(2):164-80. doi: 10.1109/TMI.2003.823066.

Abstract

Changes in vessel wall elasticity may be indicative of vessel pathologies. It is known, for example, that the presence of plaque stiffens the vascular wall, and that the heterogeneity of its composition may lead to plaque rupture and thrombosis. Another domain of application where ultrasound elastography may be of interest is the study of vascular wall elasticity to predict the risk of aneurysmal tissue rupture. In this paper, this technology is introduced as an approach to noninvasively characterize superficial arteries. In such a case, a linear array ultrasound transducer is applied on the skin over the region of interest, and the arterial tissue is dilated by the normal cardiac pulsation. The elastograms, the equivalent elasticity images, are computed from the assessment of the vascular tissue motion. Investigating the forward problem, it is shown that motion parameters might be difficult to interpret; that is because tissue motion occurs radially within the vessel wall while the ultrasound beam propagates axially. As a consequence of that, the elastograms are subjected to hardening and softening artefacts, which are to be counteracted. In this paper, the Von Mises (VM) coefficient is proposed as a new parameter to circumvent such mechanical artefacts and to appropriately characterize the vessel wall. Regarding the motion assessment, the Lagrangian estimator was used; that is because it provides the full two-dimensional strain tensor necessary to compute the VM coefficient. The theoretical model was validated with biomechanical simulations of the vascular wall properties. The results allow believing in the potential of the method to differentiate hard plaques and lipid pools from normal vascular tissue. Potential in vivo implementation of noninvasive vascular elastography to characterize abdominal aneurysms and superficial arteries such as the femoral and the carotid is discussed.

摘要

血管壁弹性的变化可能表明血管存在病变。例如,已知斑块的存在会使血管壁变硬,其成分的异质性可能导致斑块破裂和血栓形成。超声弹性成像可能感兴趣的另一个应用领域是研究血管壁弹性以预测动脉瘤组织破裂的风险。在本文中,介绍了这项技术作为一种无创表征浅表动脉的方法。在这种情况下,将线性阵列超声换能器应用于感兴趣区域上方的皮肤,动脉组织通过正常的心脏搏动而扩张。弹性图,即等效弹性图像,是根据对血管组织运动的评估计算得出的。研究正向问题时发现,运动参数可能难以解释;这是因为组织运动在血管壁内沿径向发生,而超声束沿轴向传播。因此,弹性图会受到硬化和软化伪像的影响,需要加以抵消。在本文中,提出了冯·米塞斯(VM)系数作为一个新参数,以规避此类机械伪像并恰当地表征血管壁。关于运动评估,使用了拉格朗日估计器;这是因为它提供了计算VM系数所需的完整二维应变张量。通过对血管壁特性的生物力学模拟验证了理论模型。结果让人相信该方法有潜力区分硬斑块和脂质池与正常血管组织。还讨论了无创血管弹性成像在体内表征腹主动脉瘤以及股动脉和颈动脉等浅表动脉的潜力。

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