经导管二尖瓣置入术中酒精消融后心肌力学特性的研究。

IF 1.8 4区 医学 Q3 CARDIAC & CARDIOVASCULAR SYSTEMS
Steven Said, Mina Shafiei, Dong Qiu, Ali N Azadani
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引用次数: 0

摘要

目的:酒精室间隔消融(ASA)已成为治疗左心室流出道(LVOT)梗阻的一种微创替代方法。ASA越来越受欢迎,特别是在接受经导管二尖瓣置换术(TMVR)的患者中。本研究旨在探讨ASA对心肌组织力学性能的影响。方法:从新鲜冷冻猪心脏隔区取出24个正方形样本。力学试验采用双轴试验机进行。一半的样本进行了3分钟的消融,另一半进行了5分钟的消融。结果:所有样品在纤维方向和跨纤维方向上均表现出非线性应变响应。烧蚀3min后,实现20%位移所需的平均力在纤维方向上从182.08 mn增加到347.42 mn(真应力从11.0 kpa增加到24.1 kpa),在跨纤维方向上从66.83 mn增加到110.75 mn(真应力从4.3 kpa增加到8.2 kpa)。烧蚀5min后,纤维方向的平均受力值从178.0 mn增加到452.8 mn(真应力从11.0 kpa增加到32.4 kpa),跨纤维方向的平均受力值从70.0 mn增加到154.8 mn(真应力从4.8 kpa增加到12.0 kpa)。差异均有统计学意义(p≤0.002)。组织学分析也显示酒精消融术逐渐破坏心肌结构。结论:本研究表明,ASA显著改变心肌的被动力学特性,在短期内增加间隔区组织刚度。硬化程度与消融时间成正比,消融时间越长,硬化程度越大,因此需要在TMVR手术前仔细选择消融时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanical Properties of the Myocardium Post-Alcohol Ablation in Transcatheter Mitral Valve Implantation.

Purpose: Alcohol septal ablation (ASA) has become a minimally invasive alternative to septal myectomy for treating left ventricular outflow tract (LVOT) obstructions. ASA has gained popularity, especially among patients undergoing transcatheter mitral valve replacement (TMVR). This study aimed to determine the effect of ASA on the mechanical properties of myocardial tissue.

Methods: Twenty-four square samples were excised from the septal regions of fresh-frozen swine hearts. Mechanical testing was conducted using a biaxial tester. Half of the samples underwent 3-minute ablation, while the other half underwent 5-minute ablation.

Results: All samples exhibited a nonlinear response to strain in the fiber and cross-fiber directions. After 3 min of ablation, the mean force required to achieve 20% displacement increased from 182.08-mN to 347.42-mN (true stress from 11.0-KPa to 24.1-KPa) in the fiber direction and from 66.83-mN to 110.75-mN (true stress from 4.3-KPa to 8.2-KPa) in the cross-fiber direction. Following 5 min of ablation, mean force values rose from 178.0-mN to 452.8-mN (true stress from 11.0-KPa to 32.4-KPa) in the fiber direction, and from 70.0-mN to 154.8-mN (true stress from 4.8-KPa to 12.0-KPa) in the cross-fiber direction. All changes were statistically significant (p ≤ 0.002). Histological analysis also revealed that alcohol ablation progressively disrupted myocardial architecture.

Conclusion: This study demonstrates that ASA significantly alters the passive mechanical properties of the myocardium, increasing tissue stiffness in the septal region over the short term. The extent of stiffening is directly proportional to the duration of ablation, with longer ablation times causing greater stiffness, necessitating careful selection of ablation time before TMVR procedures.

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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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