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Characterization of patient-specific biventricular mechanics in heart failure with preserved ejection fraction: Hyperelastic warping

机译:保存射血分数的心力衰竭患者特异性生物力学的特征:超弹性翘曲

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Heart failure with preserved ejection fraction (HFPEF) is considered as a major public health problem. Traditionally, HFPEF is diagnosed based on a “normal” EF, but the studies have explored the potential role of left ventricular mechanics. Furthermore, right ventricular mechanics and bi-ventricular interaction in HFPEF is currently not well understood. In this study, we aim to develop a framework using a hyperelastic warping approach to quantify bi-ventricular and septum strains from cardiac magnetic resonance (CMR) images. Whole heart models were reconstructed in HFPEF, HF with reduced EF (HFREF) and normal control patients, and a Laplace-Dirichlet Rule-Based (LDRB) algorithm was employed to assign circumferential orientation. The LV circumferential strain was 10.56% in normal control, and decreased to 5.90% in HFPEF and 1.66% in HFREF. Interestingly, the RV circumferential strain was 7.29% in normal control, but increased to 8.93% in HFPEF, and decreased to 2.16% in HFREF. The septum circumferential strain was comparable between HFPEF and normal control. Heart failure with preserved ejection fraction demonstrated augmented right ventricular strain and comparable septum strain to maintain its “normal” ejection fraction. This might unveil a new mechanism of bi-ventricular interaction and compensation in heart failure with preserved ejection fraction.
机译:用保存的射血分数(HFPEF)的心力衰竭被认为是一个主要的公共卫生问题。传统上,基于“正常”EF诊断的HFPEF,但研究探讨了左心室力学的潜在作用。此外,目前右心室力学和HFPEF中的双心室相互作用目前尚不清楚。在这项研究中,我们的目的是使用高速翘曲方法开发一种框架,以量化来自心脏磁共振(CMR)图像的双心室和隔膜菌株。全心脏模型在HFPEF中重建,HF具有减少的EF(HFREF)和正常对照患者,采用LAPLACE-Dirichlet规则的(LDRB)算法来分配圆周取向。 LV圆周菌株在正常对照中为10.56%,HFPEF中的5.90%降至6.66%。有趣的是,RV周向菌株在正常对照中为7.29%,但HFPEF中的8.93%增加到8.93%,并在HFREF中降至2.16%。隔膜圆周菌株与HFPEF和正常对照之间相当。具有保存的喷射部分的心力衰竭显示增强右心室菌株和可比较的隔膜菌株,以保持其“正常”喷射分数。这可能会揭示一种新的双心室相互作用和残留射血分数的心力衰竭的补偿机制。

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