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Mapping cardiac microstructure of rabbit heart in different mechanical states by high resolution diffusion tensor imaging: A proof-of-principle study

机译:高分辨率扩散张量成像技术绘制不同机械状态下兔心脏的心脏微结构:一项原理证明研究

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摘要

Myocardial microstructure and its macroscopic materialisation are fundamental to the function of the heart. Despite this importance, characterisation of cellular features at the organ level remains challenging, and a unifying description of the structure of the heart is still outstanding. Here, we optimised diffusion tensor imaging data to acquire high quality data in ex vivo rabbit hearts in slack and contractured states, approximating diastolic and systolic conditions. The data were analysed with a suite of methods that focused on different aspects of the myocardium. In the slack heart, we observed a similar transmural gradient in helix angle of the primary eigenvector of up to 23.6°/mm in the left ventricle and 24.2°/mm in the right ventricle. In the contractured heart, the same transmural gradient remained largely linear, but was offset by up to +49.9° in the left ventricle. In the right ventricle, there was an increase in the transmural gradient to 31.2°/mm and an offset of up to +39.0°. The application of tractography based on each eigenvector enabled visualisation of streamlines that depict cardiomyocyte and sheetlet organisation over large distances. We observed multiple V- and N-shaped sheetlet arrangements throughout the myocardium, and insertion of sheetlets at the intersection of the left and right ventricle. This study integrates several complementary techniques to visualise and quantify the heart’s microstructure, projecting parameter representations across different length scales. This represents a step towards a more comprehensive characterisation of myocardial microstructure at the whole organ level.
机译:心肌的微观结构及其宏观物化是心脏功能的基础。尽管具有这种重要性,但是在器官水平上表征细胞特征仍然具有挑战性,并且对心脏结构的统一描述仍然很出色。在这里,我们优化了扩散张量成像数据,以获取处于松弛和收缩状态的离体兔心脏的高质量数据,近似舒张和收缩状态。使用一套针对心肌不同方面的方法对数据进行了分析。在松弛的心脏中,我们观察到主特征向量的螺旋角的类似透壁梯度在左心室高达23.6°/ mm,在右心室高达24.2°/ mm。在收缩的心脏中,相同的透壁梯度在很大程度上保持线性,但在左心室中被最大+ 49.9°抵消。在右心室中,透壁梯度增加到31.2°/ mm,最大偏移量为+ 39.0°。基于每个特征向量的束线照相术的应用使可视化的流线可视化,该流线描绘了远距离的心肌细胞和薄片组织。我们观察到整个心肌有多个V型和N型小片排列,并且在左心室和右心室相交处插入了小片。这项研究整合了多种互补技术,以可视化和量化心脏的微结构,并在不同的长度范围内投射参数表示形式。这代表了在整个器官水平上更全面地表征心肌微结构的一步。

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