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Analysis and Simulation of the Adhesion Forces between Clot and the Artery Wall for a Novel Thrombectomy Device Applied to the Middle Cerebral Artery

机译:新型血液切除术装置施加到中脑动脉的凝块与动脉壁的粘附力分析和模拟

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摘要

A number of Thrombectomy devices using a variety of methods have now been developed to facilitate clot removal. We present research involving one such experimental device recently developed in the UK, called a 'GP' Thrombus Aspiration Device (TAD). This device has the potential to improve the process of extracting thrombosis clots in the cerebral arteries. The development of a simulation model for this device is shown using Bond-Graph formalism applied to modeling and simulating the adhesion forces between the clot and the artery wall. Bond-Graph technique is a visual methodology that adds more transparency to the processes and it has turned out to be remarkably useful as it is a simple, effective method that can be applied to any physical system where there is a power exchange. Such modelling appears to be able to simulate the device under a variety of conditions which may assist in the optimisation of the `GP' TAD device if the novel design features of the device can be effectively incorporated into the model.
机译:现在已经开发出使用各种方法的许多血栓切除术设备以促进血块去除。我们目前的研究涉及最近在英国开发的一种这样的实验装置,称为“ GP”血栓抽吸装置(TAD)。该装置具有改善提取脑动脉血栓形成凝块的过程的潜力。使用Bond-Graph形式表示了该设备的仿真模型的开发,该形式用于建模和模拟血块与动脉壁之间的粘附力。键合图技术是一种视觉方法,可以为过程增加更多的透明度,并且由于它是一种简单,有效的方法,可以应用于具有电源交换功能的任何物理系统,因此非常有用。如果可以将设备的新颖设计特征有效地整合到模型中,则这种建模似乎能够在多种条件下模拟设备,这可能有助于“ GP” TAD设备的优化。

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