Department of Bioengineering, University of Pittsburgh, Pittsburgh, PA, USA.
Department of Mechanical Engineering and Materials Science, University of Pittsburgh, Pittsburgh, PA, USA.
Sci Rep. 2021 Feb 11;11(1):3587. doi: 10.1038/s41598-021-83154-8.
Right ventricular (RV) remodeling and longitudinal fiber reorientation in the setting of pulmonary hypertension (PH) affects ventricular structure and function, eventually leading to RV failure. Characterizing the kinematics of myocardial fibers helps better understanding the underlying mechanisms of fiber realignment in PH. In the current work, high-frequency ultrasound imaging and structurally-informed finite element (FE) models were employed for an exploratory evaluation of the stretch-induced kinematics of RV fibers. Image-based experimental evaluation of fiber kinematics in porcine myocardium revealed the capability of affine assumptions to effectively approximate myofiber realignment in the RV free wall. The developed imaging framework provides a noninvasive modality to quantify transmural RV myofiber kinematics in large animal models. FE modeling results demonstrated that chronic pressure overload, but not solely an acute rise in pressures, results in kinematic shift of RV fibers towards the longitudinal direction. Additionally, FE simulations suggest a potential protective role for concentric hypertrophy (increased wall thickness) against fiber reorientation, while eccentric hypertrophy (RV dilation) resulted in longitudinal fiber realignment. Our study improves the current understanding of the role of different remodeling events involved in transmural myofiber reorientation in PH. Future experimentations are warranted to test the model-generated hypotheses.
右心室(RV)在肺动脉高压(PH)环境下的重塑和纵向纤维重定向会影响心室结构和功能,最终导致 RV 衰竭。描述心肌纤维的运动有助于更好地理解 PH 中纤维重定向的潜在机制。在当前的工作中,采用高频超声成像和结构信息有限元(FE)模型对 RV 纤维的拉伸诱导运动进行了探索性评估。基于图像的猪心肌纤维运动学实验评估表明,仿射假设能够有效地近似 RV 游离壁中的心肌纤维重定向。开发的成像框架提供了一种非侵入性的方法,可以在大动物模型中定量 RV 中层心肌纤维的运动学。FE 建模结果表明,慢性压力超负荷而不仅仅是压力的急性升高,会导致 RV 纤维向纵向方向运动。此外,FE 模拟表明,同心性肥厚(壁厚度增加)可能对纤维重定向具有保护作用,而离心性肥厚(RV 扩张)会导致纵向纤维重定向。我们的研究提高了对 PH 中不同重塑事件在中层心肌纤维重定向中作用的现有认识。需要进一步的实验来验证模型产生的假设。