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An inelastic multi-mechanism constitutive equation for cerebral arterial tissue

机译:脑动脉组织的非弹性多机理本构方程

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Intracranial aneurysms (ICA) are abnormal saccular dilations of cerebral arteries, commonly found at apices of arterial bifurcations and outer walls of curved arterial segments. Histological evidence suggests the stages in ICA development include the deformation of a segment of arterial wall into a “bleb” with no identifiable neck region followed by the development of an aneurysm with a clear neck. Afterwards, the aneurysm may undergo further enlargement, possibly with significant biological response including calcification and thrombosis. Past studies of the biomechanics of cerebral aneurysm tissue have been directed at modeling elastic deformations of pre-existing aneurysms. Taking this approach, the aneurysm wall is treated as a different entity than the arterial tissue from which it developed. In the current work, a nonlinear, inelastic, dual-mechanism constitutive equation for cerebral arterial tissue is developed. It is the first to model the recruitment of collagen fibers and degradation of the internal elastic lamina, two important characteristics of early stage aneurysm formation.
机译:颅内动脉瘤(ICA)是脑动脉的异常囊状扩张,通常见于动脉分叉的顶点和弯曲的动脉节段的外壁。组织学证据表明,ICA发展的阶段包括将动脉壁的一部分变形为没有可辨认的颈部区域的“气泡”,然后发展为具有清晰颈部的动脉瘤。此后,动脉瘤可能会进一步肿大,可能伴有明显的生物学反应,包括钙化和血栓形成。过去对脑动脉瘤组织生物力学的研究已经针对模拟已有的动脉瘤的弹性变形。采用这种方法,动脉瘤壁被视为与其形成的动脉组织不同的实体。在当前的工作中,开发了用于脑动脉组织的非线性,非弹性,双机制本构方程。它是第一个模拟胶原纤维募集和内部弹性薄片降解的模型,这是早期动脉瘤形成的两个重要特征。

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