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纤维方向对人体心室舒张力学的影响。

Effect of fibre orientation on diastolic mechanics of human ventricle.

作者信息

Palit Arnab, Bhudia Sunil K, Arvanitis Theodoros N, Sherwood Victoria, Wayte Sarah, Turley Glen A, Williams Mark A

出版信息

Annu Int Conf IEEE Eng Med Biol Soc. 2015;2015:6523-6. doi: 10.1109/EMBC.2015.7319887.

Abstract

Fibre orientation of myocardial wall plays a significant role in ventricular wall stress, which is assumed to be responsible for many cardiac mechanics, including ventricular remodelling, associated with heart failure. Previous studies, conducted to identify the effects of fibre orientation on left -ventricle (LV) diastolic mechanics, used only animal's myocardium properties (no human data) and therefore, may not apply for predicting human cardiac mechanics. In the present study, computational modelling of LV diastole was carried out to investigate the effects of fibre orientation on LV end diastolic pressure volume relation (EDPVR) and wall stress distribution using subject-specific in vivo passive properties of human myocardium for two human hearts. Results indicated that LV inflation increased when fibres were aligned more towards LV longitudinal axis and the effect was more notable when the fibre angle was higher in endocardium than epicardium wall. Changes in fibre angle distribution considerably altered fibre stress distribution of LV wall and the changes were significant in anterior and lateral regions of equatorial and apical locations. Furthermore, the regions of high fibre stress from midwall to endocardium were gradually confined towards endocardium with the decrease in fibre angle. Such information will be useful for future studies/diagnoses of LV mechanics in normal and pathological conditions.

摘要

心肌壁的纤维取向在心室壁应力中起着重要作用,而心室壁应力被认为与包括心室重构在内的许多心脏力学现象有关,这些现象都与心力衰竭相关。以往为确定纤维取向对左心室(LV)舒张力学的影响所进行的研究,仅使用了动物的心肌特性(没有人类数据),因此,可能不适用于预测人体心脏力学。在本研究中,利用两颗人类心脏的特定个体体内被动特性,对LV舒张进行了计算建模,以研究纤维取向对LV舒张末期压力-容积关系(EDPVR)和壁应力分布的影响。结果表明,当纤维更朝向LV纵轴排列时,LV充盈增加,并且当内膜纤维角度高于外膜壁时,这种影响更为显著。纤维角度分布的变化显著改变了LV壁的纤维应力分布,并且在赤道和心尖位置的前部和外侧区域变化显著。此外,随着纤维角度的减小,从中壁到内膜的高纤维应力区域逐渐向内膜局限。这些信息将有助于未来对正常和病理状态下LV力学的研究/诊断。

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