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首页> 外文期刊>Journal of Mathematics >Optimal Design of Intracranial Hematoma Puncture Drainage Tube Based on Adaptive Bifurcation Algorithm
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Optimal Design of Intracranial Hematoma Puncture Drainage Tube Based on Adaptive Bifurcation Algorithm

机译:基于自适应分岔算法的颅内血肿穿刺排水管最优设计

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摘要

Aiming at the puncture and drainage of clinical intracranial hematoma, we proposed an adaptive bifurcation algorithm based on the hematoma point cloud and optimized the design of the drainage tube. Firstly, based on the CT data of intracranial hematoma patients, a three-dimensional hematoma model was established, the point cloud on the surface of the hematoma was extracted and simplified, and the location of the main drainage tube was located by using the long-axis extraction algorithm. Secondly, the Eight Diagrams algorithm was used to identify the internal point cloud of hematoma, and the positions of multiple absorption points were determined by the K-means clustering algorithm. The locations of the bifurcation points of the main drainage tubes were calculated by the numerical method, and the telescopic lengths and directions of multiple subdrainage tubes were obtained. Finally, connect the main tube and the subtube, design an adaptive bifurcation drainage tube model, and apply it to intracranial hematoma puncture and drainage surgery. The algorithm can accurately determine the puncture point, puncture path, number, and location of subdrainage tubes according to the geometric characteristics of hematoma, achieve a uniform and accurate dose adjustment and drainage of intracranial hematoma, and accelerate the dissolution and drainage speed. The application of an adaptive bifurcation drainage tube can significantly reduce the risk of intracerebral hemorrhage, intracranial infection, and other complications, which has certain guiding significance and application value in clinical practice.
机译:旨在临床颅内血肿的穿刺和排水,我们提出了一种基于血肿点云的自适应分岔算法,优化了排水管的设计。首先,基于颅内血肿患者的CT数据,建立了三维血肿模型,提取血肿表面上的点云,并通过使用长度定位主排水管的位置。轴提取算法。其次,使用八个图算法来识别血肿的内部点云,并且通过K-Means聚类算法确定多个吸收点的位置。通过数值方法计算主排水管的分叉点的位置,获得多个子绳管的伸缩长度和方向。最后,连接主管和子控管,设计自适应分岔排水管模型,并将其应用于颅内血液血液穿刺和排水手术。根据血肿的几何特征,算法可以准确地确定子灌注管的穿刺点,穿刺路径,数量和位置,实现颅内血肿的均匀和准确剂量调节和排出,并加速溶解和排水速度。适应性分叉引流管的应用可以显着降低脑出血,颅内感染和其他并发症的风险,在临床实践中具有一定的指导意义和应用价值。

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