栓子运输和栓塞性中风的建模

I. Sutalo, A. Bui, K. Liffman, R. Manasseh
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引用次数: 6

摘要

脑微栓塞可能由于血管组织受损(局灶性缺血)而导致血液供应受限,这越来越被认为是认知功能恶化的原因,包括阿尔茨海默病和血管性痴呆。通过分形模型模拟了大脑前动脉(ACA)和大脑中动脉(MCA)周围血管的流动。建立多尺度脑血管模型,并结合血流模型和栓子运输模型。该模型结合了不对称分叉树、栓子-血管相互作用和自动调节。模拟了栓子沉积速率、栓子直径和栓子引入速率的变化。增加栓子直径和栓子引入率使阻塞的终末动脉数量增加到准稳态。对于低栓子沉积率,MCA和ACA区域具有相同的栓塞动力学,尽管MCA比ACA大。我们还发现,由于MCA的结构更广阔,其栓塞率更高,因此比ACA更不容易闭塞。结果还表明,在非对称流动中,单个阻塞的影响比对称流动的影响要小。该模型将有助于更好地了解栓塞性中风及其影响
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Modelling of embolus transport and embolic stroke
Cerebral microembolism may lead to the restriction of blood supply due to damaged blood vessel tissue (focal ischemia) which is increasingly seen as the cause of cognitive deterioration including Alzheimer’s disease and vascular dementia. The flow through fractal models of the peripheral vasculature of the Anterior Cerebral Arteries (ACA) and Middle Cerebral Arteries (MCA) was modelled. The multi-scale model of the cerebral vasculature was coupled with blood flow and embolus transport models. The model incorporated asymmetric bifurcation trees, embolus-vascular interactions and autoregulation. Simulations were carried out where the embolus deposition rate, embolus diameter and embolus introduction rate were varied. Increasing the embolus diameter and embolus introduction rate increased the number of blocked terminal arteries to a quasi steady-state. For a low embolus deposition rate the MCA and ACA territory had the same embolization dynamics, even though, the MCA was larger than the ACA. It was also found for a higher embolus deposition rate the MCA, due to its more expansive structure, was less prone to occlusion than the ACA. The results also showed the effect of a single blockage is expected to be less severe in asymmetric flow than symmetric flow. This model will assist in developing a better understanding into embolic stroke and effect of
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