心脏磁共振对健康中国人心室的三维特征追踪研究

IF 1.6 4区 医学 Q3 CARDIAC & CARDIOVASCULAR SYSTEMS Cardiovascular Engineering and Technology Pub Date : 2024-10-01 Epub Date: 2024-06-26 DOI:10.1007/s13239-024-00736-z
Binze Han, Shouming Chen, Li Liu, Liuhong Hu, Longlin Yin
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引用次数: 0

摘要

目的:心肌应变作为心肌变形的重要定量指标,比射血分数(EF)等参数更早发现心脏功能的变化。据报道,心脏磁共振(CMR)和后处理软件具有获得稳定和可重复应变值的能力。近来,人们对正常应变值的范围存在争议,尤其是在中国人群中。因此,我们旨在利用心脏磁共振特征追踪技术(CMR-FT)探索中国人的心室特征和心肌应变值。此外,我们还尝试利用心肌和腱索轮廓通过 CMR-FT 计算心室容积。本研究可为应用 CMR-FT 追踪中国人群的心室特征和心肌应变提供有价值的见解,尤其是为中国人提供可参考的心肌应变参数:方法:109 名健康的中国人(年龄范围:18 至 58 岁;52 名男性和 57 名女性)接受了 3.0T CMR,以获取心脏图像。采用商业后处理软件对图像序列进行半自动处理分析,得出双心室形态(舒张末容积,EDV;EDV/体表面积,EDV/BSA)、功能(EF;心输出量,CO;心脏指数,CI)和应变(径向应变,RS;环向应变,CS;纵向应变,LS)值。根据左心室美国心脏协会(AHA)16 节段的应变值计算左心室(左心室底部、中部、顶部)和三个冠状动脉区域的心肌应变值:结果表明,与男性相比,女性的左心室球部应变值较大(LVGPRS:42.0 ± 8.5 对 33.6 ± 6.2%,P 结论:我们成功地追踪了左心室美国心脏协会(AHA)16 节段的心肌应变特征:在此,我们利用 3.0T CMR 成功追踪了中国健康人群双侧心室的特征。我们证实 LV Globe 应变值存在性别差异。我们的结果还显示,RV 应变值呈非正态分布,RV 全球应变值与性别和年龄无关。此外,在中国人群中,LVGPRS、LVGPLS 和 RVGPRS 与 BMI、CO、CI 和 EDV 显著相关。
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Three-Dimensional Feature Tracking Study of Healthy Chinese Ventricle by Cardiac Magnetic Resonance.

Purpose: Myocardial strain, as a crucial quantitative indicator of myocardial deformation, can detect the changes of cardiac function earlier than parameters such as ejection fraction (EF). It has reported that cardiac magnetic resonance(CMR) and post-processing software possess the ability to obtain the stability and repeatability strain values. Recently, the normal strain values range of people are debatable, especially in the Chinese population. Therefore, we aim to explore the ventricular characteristics and the myocardial strain values of the Chinese people by using the cardiac magnetic resonance feature tracking (CMR-FT). Additionally, we attempted to use the myocardial and chordae tendineae contours to calculate the ventricular volumes by the CMR-FT. This study may provide valuable insights into the application of CMR-FT in tracking the ventricular characteristics and myocardial strain for Chinese population, especially in suggesting an referable myocardial strain parameters of the Chinese.

Methods: A total of 109 healthy Chinese individuals (age range: 18 to 58 years; 52 males and 57 females) underwent 3.0T CMR to acquire the cardiac images. The commercial post-processing software was employed to analyse the image sequence by semi-automatic processing, then the biventricular morphology (End-Diastolic Volume, EDV; EDV/Body Surface Area, EDV/BSA), function(EF; Cardiac Output, CO; Cardiac Index, CI) and strain(Radial Strain, RS; Circumferential Strain, CS; Longitudinal Strain, LS) values were obtained.The biventricular myocardial strain values were stratified according to the age and gender. The Left Ventricular( LV base, mid, apex) and myocardial strain values of three coronary artery areas were calculated based on the the strain value of LV American Heart Association(AHA) 16 segments.

Results: It was shown that the females had larger LV globe strain values compared with the males (LVGPRS: 42.0 ± 8.5 versus 33.6 ± 6.2%, P < 0.001; LVGPCS: -21.2 ± 2.1 versus - 19.7 ± 2.3%, P < 0.001; LVGPLS: -16.4 ± 2.6 versus - 14.6 ± 2.2%, P < 0.001;). Moreover, the differences in RS, CS, and LS among the LV myocardium 16 segments were obvious. However, the right ventricle (RV) strain values showed non-normal distribution in the volunteers of this research.

Conclusions: Here, we successfully tracked the characteristics of bilateral ventricles in healthy Chinese populations through using the 3.0T CMR. We confirmed that there was a gender difference in LV Globe Strain values. In addition, we obtained strain values for each myocardial segment of the LV and different coronary artery regions based on the AHA 16 segments method, Our results also showed that the RV strain values with a non-normal distribution, and RV global strain values were not related to the gender and age. Furthermore, LVGPRS, LVGPLS, and RVGPRS were significantly correlated with BMI, CO, CI, and EDV in the Chinese population.

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来源期刊
Cardiovascular Engineering and Technology
Cardiovascular Engineering and Technology Engineering-Biomedical Engineering
CiteScore
4.00
自引率
0.00%
发文量
51
期刊介绍: Cardiovascular Engineering and Technology is a journal publishing the spectrum of basic to translational research in all aspects of cardiovascular physiology and medical treatment. It is the forum for academic and industrial investigators to disseminate research that utilizes engineering principles and methods to advance fundamental knowledge and technological solutions related to the cardiovascular system. Manuscripts spanning from subcellular to systems level topics are invited, including but not limited to implantable medical devices, hemodynamics and tissue biomechanics, functional imaging, surgical devices, electrophysiology, tissue engineering and regenerative medicine, diagnostic instruments, transport and delivery of biologics, and sensors. In addition to manuscripts describing the original publication of research, manuscripts reviewing developments in these topics or their state-of-art are also invited.
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