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首页> 外文期刊>Neurosurgery >Analysis of the hemodynamic characteristics of brain arteriovenous malformations using electrical models: baseline settings, surgical extirpation, endovascular embolization, and surgical bypass.
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Analysis of the hemodynamic characteristics of brain arteriovenous malformations using electrical models: baseline settings, surgical extirpation, endovascular embolization, and surgical bypass.

机译:使用电动模型分析脑动静脉畸形的血液动力学特征:基线设置,手术摘除,血管内栓塞和手术搭桥。

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OBJECTIVE: The goal of this report is to analyze the hemodynamic characteristics of low- and high-flow arteriovenous malformations (AVM) using computerized electrical models. METHODS: Two electrical models of brain AVMs were created. These models consist of electrical resistors that simulate AVM vessels. In both models, a low-flow AVM and a high-flow AVM, the flow of electrons simulates the flow of blood. RESULTS: Using the models, it was possible to analyze the pressure and flow patterns in the nidus of the small, low-flow AVM and in the nidus of the large, high-flow AVM. Baseline hemodynamic "physiological" conditions of the two AVMs were studied. With the models, it was also possible to assess the AVM hemodynamic changes (in the feeding arteries, in the various parts of the nidus, and in the draining veins) after surgery, after embolization, and after surgical bypass of the malformation. The role of autoregulation in the three treatment modalities was also assessed. CONCLUSION: These electrical models seem to be useful in simulating and studying the behavior of flow and pressure in the different parts of the AVM nidus (arterial, arteriolar, arteriolar-venular, venular, venous) before and after treatment. The models can also be used to devise and simulate new treatment strategies that might lead to improved treatment of these highly complex vascular malformations of the brain.
机译:目的:本报告的目的是使用计算机电子模型分析低流量和高流量动静脉畸形(AVM)的血液动力学特征。方法:创建了两个大脑AVM的电模型。这些模型包含模拟AVM容器的电阻器。在低流量AVM和高流量AVM两种模型中,电子流模拟血液流动。结果:使用这些模型,可以分析小型,低流量AVM的尼杜斯和大型,高流量AVM的尼杜斯中的压力和流动模式。研究了两个AVM的基线血液动力学“生理”状况。使用这些模型,还可以评估手术后,栓塞后以及手术绕过畸形后的AVM血液动力学变化(在进食动脉,病灶的各个部位以及在引流静脉中)。还评估了自动调节在三种治疗方式中的作用。结论:这些电学模型似乎对于模拟和研究治疗前后AVM nidus不同部位(动脉,小动脉,小动脉-静脉,静脉,静脉)的流量和压力行为很有用。这些模型还可以用于设计和模拟新的治疗策略,这些策略可能会导致对这些高度复杂的大脑血管畸形的治疗得到改善。

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