TENSEGRITY INSIGHTS: UNRAVELING THE MECHANICAL BEHAVIOR OF SUBCELLULAR ORGANELLES THROUGH A 3D FINITE ELEMENT MODEL STUDY

Niroomand Oscuii
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Abstract

This study delves into the intricate mechanical behavior of subcellular organelles by employing a sophisticated 3D finite element model that embraces the principles of tensegrity structures. Tensegrity, a structural concept characterized by a balance of tension and compression elements, has been increasingly recognized as a crucial framework for understanding the dynamic nature of cellular components. Through our computational approach, we explore the biomechanical responses of subcellular organelles, shedding light on their structural integrity, deformation patterns, and overall mechanical functionality. The insights gained from thisstudy contribute to the growing understanding of cellular biomechanics, offering potential applications in fields such as cell biology, bioengineering, and medicine.
张力整体洞察力:通过三维有限元模型研究揭示亚细胞器的机械行为
本研究通过采用包含张拉整体结构原理的复杂三维有限元模型,深入研究亚细胞器错综复杂的机械行为。张拉与压缩平衡是一种结构概念,已被越来越多的人认为是理解细胞成分动态性质的重要框架。通过计算方法,我们探索了亚细胞器的生物力学响应,揭示了它们的结构完整性、变形模式和整体机械功能。这项研究获得的洞察力有助于加深对细胞生物力学的理解,为细胞生物学、生物工程和医学等领域提供了潜在应用。
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