Zlibut Alexandru, Cojocaru Cosmin, Onciul Sebastian, Agoston-Coldea Lucia
Department of Internal Medicine, Iuliu Hatieganu University of Medicine and Pharmacy, 400347 Cluj-Napoca, Romania.
Cardiology Department, Emergency Clinical Hospital of Bucharest, 014461 Bucharest, Romania.
Diagnostics (Basel). 2023 Feb 2;13(3):553. doi: 10.3390/diagnostics13030553.
Subclinical alterations in myocardial structure and function occur early during the natural disease course. In contrast, clinically overt signs and symptoms occur during late phases, being associated with worse outcomes. Identification of such subclinical changes is critical for timely diagnosis and accurate management. Hence, implementing cost-effective imaging techniques with accuracy and reproducibility may improve long-term prognosis. A growing body of evidence supports using cardiac magnetic resonance (CMR) to quantify deformation parameters. Tissue-tagging (TT-CMR) and feature-tracking CMR (FT-CMR) can measure longitudinal, circumferential, and radial strains and recent research emphasize their diagnostic and prognostic roles in ischemic heart disease and primary myocardial illnesses. Additionally, these methods can accurately determine LV wringing and functional dynamic geometry parameters, such as LV torsion, twist/untwist, LV sphericity index, and long-axis strain, and several studies have proved their utility in prognostic prediction in various cardiovascular patients. More recently, few yet important studies have suggested the superiority of fast strain-encoded imaging CMR-derived myocardial strain in terms of accuracy and significantly reduced acquisition time, however, more studies need to be carried out to establish its clinical impact. Herein, the current review aims to provide an overview of currently available data regarding the role of CMR in evaluating myocardial strain and biomechanics.
心肌结构和功能的亚临床改变在自然病程早期就会出现。相比之下,临床上明显的体征和症状出现在晚期,与更差的预后相关。识别这些亚临床变化对于及时诊断和准确管理至关重要。因此,采用具有准确性和可重复性的经济高效的成像技术可能会改善长期预后。越来越多的证据支持使用心脏磁共振成像(CMR)来量化形变参数。组织标记(TT-CMR)和特征追踪CMR(FT-CMR)可以测量纵向、圆周和径向应变,最近的研究强调了它们在缺血性心脏病和原发性心肌疾病中的诊断和预后作用。此外,这些方法可以准确地确定左心室绞拧和功能动态几何参数,如左心室扭转、扭转/解扭、左心室球形指数和长轴应变,并且多项研究已经证明了它们在各种心血管疾病患者预后预测中的效用。最近,少数但重要的研究表明,快速应变编码成像CMR衍生的心肌应变在准确性和显著缩短采集时间方面具有优势,然而,需要开展更多研究来确定其临床影响。在此,本综述旨在概述目前关于CMR在评估心肌应变和生物力学方面作用的可用数据。