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Effects of Helix Geometry on Magnetic Guiding of Helical Polymer Composites on a Gastric Cancer Model: A Feasibility Study

机译:螺旋几何形状对胃癌模型中螺旋聚合物复合材料磁导的影响:可行性研究

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摘要

This study investigates the effects of soft-robot geometry on magnetic guiding to develop an efficient helical mediator on a three-dimensional (3D) gastric cancer model. Four different magnetically active helical soft robots are synthesized by the inclusion of 5-μm iron particles in polydimethylsiloxane matrices. The soft robots are named based on the diameter and length (D2-L15, D5-L20, D5-L25, and D5-L35) with samples having varied helical pitch and weight values. Then, the four samples are tested on a flat surface as well as a stomach model with various 3D wrinkles. We analyze the underlying physics of intermittent magnetomotility for the helix on a flat surface. In addition, we extract representative failure cases of magnetomotility on the stomach model. The D5-L25 sample was the most suitable among the four samples for a helical soft robot that can be moved to a target lesion by the magnetic-flux density of the stomach model. The effects of diameter, length, pitch, and weight of a helical soft robot on magnetomotility are discussed in order for the robot to reach the target lesion successfully via magnetomotility.
机译:这项研究调查了三维几何(3D)胃癌模型上软机器人几何形状对磁导的影响,从而开发出有效的螺旋介体。通过在聚二甲基硅氧烷基体中加入5μm的铁颗粒,可以合成四个不同的磁性主动螺旋软机器人。根据直径和长度(D2-L15,D5-L20,D5-L25和D5-L35)来命名软机器人,其样品具有不同的螺旋螺距和重量值。然后,在平坦的表面以及具有各种3D皱纹的胃模型上测试这四个样本。我们分析了平面上螺旋的间歇磁势的基本物理原理。此外,我们在胃部模型中提取了典型的电磁运动失败案例。 D5-L25样本最适合用于螺旋软机器人的四个样本,该样本可以通过胃模型的磁通密度移动到目标病变处。讨论了螺旋软机器人的直径,长度,螺距和重量对电磁场的影响,以使机器人能够通过电磁场成功到达目标病变。

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