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An investigation into the role of different constituents in damage accumulation in arterial tissue and constitutive model development

机译:不同成分在动脉组织损伤积累中的作用及本构模型发展的调查

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Carotid atherosclerotic plaque rupture is one of the leading causes of stroke. Treatments for atherosclerosis can induce tissue damage during the deployment of an intravascular device or through external tissue clamping during surgery. In this paper, a constituent specific study was performed to investigate the role of the ground matrix and collagen fibres of arterial tissue in response to supra-physiological loads. Cyclic mechanical tests were conducted on intact and collagenase-digested strips of porcine common carotid arteries. Using these tests, four passive damage-relevant phenomena were studied, namely (i) Mullins effect, (ii) hysteresis, (iii) permanent set and (iv) matrix failure and fibre rupture. A constitutive model was also developed to capture all of these damage-relevant phenomena using a continuum damage mechanics approach. The implemented constitutive model was fit to experimental results for both intact and digested samples. The results of this work demonstrate the important role of the ground matrix in the permanent deformation of the arterial tissue under high loads. Supra-physiological load-induced tissue damage may play a key role in vascular remodelling in arteries with atherosclerosis or following interventional procedures.
机译:颈动脉粥样硬化斑块破裂是中风的主要原因之一。用于动脉粥样硬化的治疗可以在部署血管内装置或通过手术期间通过外部组织夹紧诱导组织损伤。本文进行了组分特异性研究,以研究动脉组织的地基基质和胶原纤维的作用响应同上生理载荷。在完整和胶原酶消化的猪常见颈动脉的完整和胶原酶消化条带上进行循环机械测试。使用这些测试,研究了四种被动损伤相关现象,即(i)穆林斯效应,(ii)滞后,(iii)永久集和(iv)矩阵失效和纤维破裂。还开发了一个组成型模型以利用连续损伤力学方法捕获所有这些损伤相关现象。实施的本体模型适合完整和消化样品的实验结果。这项工作的结果证明了地基质在高负荷下动脉组织永久变形的重要作用。同上生理载荷诱导的组织损伤可能在动脉粥样硬化或介入手术中的动脉中的血管重塑中发挥关键作用。

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