通过三维标记磁共振成像研究正常和患病心脏形状和负荷的区域差异。

Y F Petrank, S J Dong, J Tyberg, S Sideman, R Beyar
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引用次数: 19

摘要

目的:我们旨在描述两组肥厚性心肌病(HCM)和右心室压力过载(RVPO)患者与左心室功能正常(LV)患者的负荷相关的区域几何特征。背景:这两种疾病都与左室形状和功能的显著改变有关,但尚未有详细的三维工具研究。方法:采用三维(3D)标记磁共振成像(MRI)表征HCM和RVPO患者左心室的三维几何形状和区域应力。曲率、应力、壁厚和心内膜运动由表面和体积元素计算。结果:与正常心脏和HCM心脏相比,RVPO的心脏中隔在周向和经向上表现出更多的扁平。与正常和RVPO心脏相比,HCM心脏的应激指数最低,这是由于其厚度较大。与正常心脏相比,HCM和RVPO心脏的外壁运动和其他区域壁运动有更显著的差异。结论:三维标记MRI的曲率和应力成像可以作为表征和区分健康和病变心脏的重要临床工具。这里提供的结果验证了先前从平面成像方法中已知的HCM和RVPO知识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Regional differences in shape and load in normal and diseased hearts studied by three dimensional tagged magnetic resonance imaging.

Objectives: We aimed to characterize regional geometry in relation to load in two groups of patients with hypertrophic cardiomyopathy (HCM) and right ventricular pressure overload (RVPO) in relation to a group of subjects with normal left ventricular (LV) function.

Background: Both these diseases are associated with marked changes in LV shape and function, which have not been studied with detailed three dimensional tools.

Methods: Three dimensional (3D) tagged magnetic resonance imaging (MRI) was used to characterize the 3D geometry and regional stresses of the left ventricles in patients with HCM and RVPO. Curvatures, stresses, wall thickness, and endocardial motion were calculated from surface and volume elements.

Results: Hearts with RVPO exhibited more circumferential and meridional flattening of the septum than normal and HCM hearts. The stress indices were lowest in the HCM hearts, compared to normal and RVPO hearts, due to the larger thicknesses. There was a more significant difference between lateral wall motion and other regional wall motions in the HCM and RVPO hearts as compared to normal hearts.

Conclusions: It is suggested that curvature and stress mapping by 3D tagged MRI can be used as an important clinical tool for characterizing and distinguishing between healthy and diseased hearts. The results provided here validated previous knowledge on HCM and RVPO known from planary imaging methods.

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