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首页> 外文期刊>International journal for numerical methods in biomedical engineering >A comparison of two quasi‐static computational models for assessment of intra‐myocardial injection as a therapeutic strategy for heart failure
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A comparison of two quasi‐static computational models for assessment of intra‐myocardial injection as a therapeutic strategy for heart failure

机译:两种准静态计算模型进行评估,用于评估心肌内注射液,作为心力衰竭的治疗策略

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摘要

Myocardial infarction, or heart attack, is the leading cause of mortality globally. Although the treatment of myocardial infarct has improved significantly, scar tissue that persists can often lead to increased stress and adverse remodeling of surrounding tissue and ultimately to heart failure. Intra-myocardial injection of biomaterials represents a potential treatment to attenuate remodeling, mitigate degeneration, and reverse the disease process in the tissue. In vivo experiments on animal models have shown functional benefits of this therapeutic strategy. However, a poor understanding of the optimal injection pattern, volume, and material properties has acted as a barrier to its widespread clinical adoption. In this study, we developed two quasistatic finite element simulations of the left ventricle to investigate the mechanical effect of intra-myocardial injection. The first model employed an idealized left ventricular geometry with rule-based cardiomyocyte orientation. The second model employed a subject-specific left ventricular geometry with cardiomyocyte orientation from diffusion tensor magnetic resonance imaging. Both models predicted cardiac parameters including ejection fraction, systolic wall thickening, and ventricular twist that matched experimentally reported values. All injection simulations showed cardiomyocyte stress attenuation, offering an explanation for the mechanical reinforcement benefit associated with injection. The study also enabled a comparison of injection location and the corresponding effect on cardiac performance at different stages of the cardiac cycle. While the idealized model has lower fidelity, it predicts cardiac function and differentiates the effects of injection location. Both models represent versatile in silico tools to guide optimal strategy in terms of injection number, volume, site, and material properties.
机译:心肌梗死或心脏病发作是全球死亡的主要原因。虽然心肌梗塞的治疗显着改善,但仍然可以导致周围组织的压力和不利重塑的瘢痕组织显着提高,但最终可能导致周围组织的压力和不利重塑。心肌内注射生物材料代表衰减重塑,减少退化和逆转组织中的疾病过程的潜在治疗方法。在动物模型的体内实验表明了这种治疗策略的功能效益。然而,对最佳注射模式,体积和材料特性的理解差是对其广泛临床采用的屏障。在这项研究中,我们开发了左心室的两个Quasistatic有限元模拟,以研究心肌内注射的机械效果。第一型模型采用了具有规则基的心肌细胞取向的理想化左心室几何。第二种模型采用来自扩散张量磁共振成像的基于心肌细胞取向的受试者特异性左心室几何。两种模型都预测了心脏参数,包括喷射部分,收缩墙增厚和与实验报道的值匹配的心室扭曲。所有注射模拟显示心肌细胞应力衰减,为与注射有关的机械加固益处提供了解释。该研究还使注射位置的比较和对心脏周期的不同阶段的心脏性能的相应影响。虽然理想化的模型具有较低的保真度,但它预测心脏功能并区分喷射位置的影响。这两种模型都代表了Silico工具的多功能,以指导注射号,体积,现场和材料特性方面的最佳策略。

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    Natl Univ Ireland Galway Coll Engn & Informat Mech Engn Galway Ireland|MIT Dept Mech Engn 77 Massachusetts Ave Cambridge MA 02139 USA;

    Natl Univ Ireland Galway Coll Engn & Informat Biomech Res Ctr Biomed Engn Galway Ireland;

    Univ Leeds Leeds Inst Cardiovasc & Metab Med Leeds W Yorkshire England|Univ Oxford Radcliffe Dept Med Div Cardiovasc Med Oxford England;

    Univ Leeds Leeds Inst Cardiovasc & Metab Med Leeds W Yorkshire England|Univ Oxford Radcliffe Dept Med Div Cardiovasc Med Oxford England;

    MIT Inst Med Engn Sci 77 Massachusetts Ave Cambridge MA 02139 USA|Harvard MIT Program Hlth Sci & Technol Cambridge MA USA;

    Royal Coll Surg Ireland RCSI Dept Anat Tissue Engn Res Grp Dublin 2 Ireland|Trinity Coll Dublin Coll Green Trinity Ctr Bioengn Dublin 2 Ireland|Adv Mat & BioEngn Res Amber Ctr NUIG & TCD RCSI Dublin 2 Ireland|Harvard Univ John A Paulson Sch Engn & Appl Sci Cambridge MA 02138 USA|Harvard Univ Wyss Inst Biol Inspired Engn Cambridge MA 02138 USA;

    Natl Univ Ireland Galway Coll Engn & Informat Biomech Res Ctr Biomed Engn Galway Ireland;

    Natl Univ Ireland Galway Coll Engn & Informat Mech Engn Galway Ireland;

    MIT Dept Mech Engn 77 Massachusetts Ave Cambridge MA 02139 USA|MIT Inst Med Engn Sci 77 Massachusetts Ave Cambridge MA 02139 USA;

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  • 正文语种 eng
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  • 关键词

    Finite element method; Intramyocardial injection; Cardiac modeling; Diffusion tensor imaging; Diffusion tensor magnetic resonance imaging;

    机译:有限元方法;肌动画注射;心脏建模;扩散张量成像;扩散张量磁共振成像;

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