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肺力学:为实验启发的计算管道提供肺部成分的材料特征描述。

Lung Mechanics: Material Characterization of Pulmonary Constituents for an Experimentally Informed Computational Pipeline.

机构信息

Department of Mechanical Engineering, University of California, Riverside, California.

BREATHE Center, School of Medicine University of California, Riverside, California.

出版信息

Curr Protoc. 2024 Sep;4(9):e70001. doi: 10.1002/cpz1.70001.

Abstract

The lung comprises multiple components including the parenchyma, airways, and visceral pleura, where each constituent displays specific material properties that together govern the whole organ's properties. The structural and mechanical complexity of the lung has historically undermined its comprehensive characterization, especially compared to other biological organs, such as the heart or bones. This knowledge void is particularly remarkable when considering that pulmonary disease is one of the leading causes of morbidity and mortality across the globe. Establishing the mechanical properties of the lung is central to formulating a baseline understanding of its operation, which can facilitate investigations of diseased states and how the lung will potentially respond to clinical interventions. Here, we present established and widely accepted experimental protocols for pulmonary material quantification, specifying how to extract, prepare, and test each type of lung constituent under planar biaxial tensile loading to investigate the mechanical properties, such as physiological stress-strain profiles, anisotropy, and viscoelasticity. These methods are presented across an array of commonly studied species (murine, rat, and porcine). Additionally, we highlight how such material properties may inform the construction of an inverse finite element model, which is central to implementing predictive computational tools for accurate disease diagnostics and optimized medical treatments. These presented methodologies are aimed at supporting research advancements in the field of pulmonary biomechanics and to help inaugurate future novel studies. © 2024 The Author(s). Current Protocols published by Wiley Periodicals LLC. Basic Protocol 1: General procedures in lung biaxial testing Alternate Protocol 1: Parenchymal-specific preparation and loading procedures Alternate Protocol 2: Airway-specific preparation and loading procedures Alternate Protocol 3: Visceral pleura-specific preparation and loading procedures Basic Protocol 2: Computational analysis.

摘要

肺由多个部分组成,包括实质、气道和内脏胸膜,每个组成部分都具有特定的物质特性,这些特性共同决定了整个器官的特性。肺的结构和力学复杂性在历史上阻碍了其全面的特征描述,尤其是与心脏或骨骼等其他生物器官相比。考虑到肺部疾病是全球发病率和死亡率的主要原因之一,这种知识空白就显得尤为显著。确定肺的力学特性是理解其功能的基础,可以促进对疾病状态的研究以及肺对临床干预的潜在反应。在这里,我们提出了已建立并广泛接受的肺部材料量化实验方案,详细说明了如何在平面双轴拉伸载荷下提取、准备和测试每种类型的肺成分,以研究力学特性,如生理应力-应变曲线、各向异性和粘弹性。这些方法适用于多种常见研究物种(小鼠、大鼠和猪)。此外,我们还强调了这些材料特性如何为构建反有限元模型提供信息,反有限元模型是实现准确疾病诊断和优化医疗治疗的预测计算工具的核心。这些提出的方法旨在支持肺部生物力学领域的研究进展,并为未来的新研究开辟道路。© 2024 作者。Wiley Periodicals LLC 出版的《当代协议》。基础方案 1:肺双轴测试的一般程序备选方案 1:实质特异性准备和加载程序备选方案 2:气道特异性准备和加载程序备选方案 3:内脏胸膜特异性准备和加载程序基础方案 2:计算分析。

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