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首页> 外文期刊>Magma: Magnetic resonance materials in physics, biology, and medicine >Segmental biventricular analysis of myocardial function using high temporal and spatial resolution tissue phase mapping
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Segmental biventricular analysis of myocardial function using high temporal and spatial resolution tissue phase mapping

机译:使用高时和空间分辨率组织映射的心肌函数分段性函数分析

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Objective Myocardial dysfunction of the right ventricle (RV) is an important indicator of RV diseases, e.g. RV infarction or pulmonary hypertension. Tissue phase mapping (TPM) has been widely used to determine function of the left ventricle (LV) by analyzing myocardial velocities. The analysis of RV motion is more complicated due to the different geometry and smaller wall thickness. The aim of this work was to adapt and optimize TPM to the demands of the RV. Materials and methods TPM measurements were acquired in 25 healthy volunteers using a velocity-encoded phase-contrast sequence and kt-accelerated parallel imaging in combination with optimized navigator strategy and blood saturation. Post processing was extended by a 10-segment RV model and a detailed biventricular analysis of myocardial velocities was performed. Results High spatio-temporal resolution (1.0 × 1.0 × 6 mm~3, 21.3 ms) and the optimized blood saturation enabled good delineation of the RV and its velocities. Global and segmental velocities, as well as time to peak velocities showed significant differences between the LV and RV. Furthermore, complex timing of the RV could be demonstrated by segmental time to peak analysis. Conclusion High spatio-temporal resolution TPM enables a detailed biventricular analysis of myocardial motion and might provide a reliable tool for description and detection of diseases affecting left and right ventricular function.
机译:右心室(RV)的客观心肌功能障碍是RV疾病的重要指标,例如RV疾病。 RV梗死或肺动脉高压。组织相位映射(TPM)已被广泛用于通过分析心肌速度来确定左心室(LV)的功能。由于不同的几何形状和较小的壁厚,RV运动的分析更加复杂。这项工作的目的是适应和优化TPM对RV的需求。材料和方法使用速度编码的相位对比序列和KT加速并行成像在25个健康的志愿者中获得TPM测量,以及优化导航仪策略和血液饱和。通过10段RV模型延伸后处理,并进行了对心肌速度的详细的生物铭分析。结果高时空分辨率(1.0×1.0×6mm〜3,21.3 ms)和优化的血液饱和,使RV及其速度良好地描绘。全球和节段性速度以及峰值速度的时间显示LV和RV之间的显着差异。此外,可以通过分段时间来证明RV的复杂定时以峰值分析。结论高时空分辨率TPM能够详细的心肌运动分析,可以提供可靠的工具,用于描述和检测影响左和右心室功能的疾病。

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