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Modeling of Looping Behavior in a Flexible Instrument Using a Bezier Curve

机译:灵活的循环行为建模仪器使用贝塞尔曲线

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摘要

Flexible medical instruments undergo looping during insertion and navigation inside the human body. It makes the control of the distal end difficult and raises safety concerns. This paper proposes the minimum strain energy concept to get the deformed shape of a flexible instrument in three-dimensional space. A Bezier curve is used to define the trajectory of the deformed shape under different loading conditions and constraints. Looping behavior is studied for different end shortening conditions. The effect of end twist on looping behavior is studied. It is observed that end twist leads to early onset of out-of-plane deformation leading to looping. The strain energy plot gives an insight into the behavior of these instruments with respect to end shortening and twist. The strain energy plot shows the minimum value for 2π end twist. Therefore, the instrument tends to go for looping if the end twist is present. Force and torque characteristics are obtained which will lead to the design and control of these instruments. Force and torque plots show negative stiffness when the instrument is going for looping. The unlooping phenomenon is also discussed and a strategy is proposed to mitigate looping. The proposed modeling approach can be utilized to address the complex behavior of a flexible instrument in medical as well as in other industrial applications. The insight developed will help in designing and developing control for safe and reliable usage of flexible instruments in various domains.
机译:灵活的医疗器械进行循环在人类中插入和导航的身体。困难,增加安全隐患。提出了最小应变能的概念一个灵活的变形形状工具三维空间。定义的轨迹变形形状在不同的加载条件和约束。不同的缩短结束条件。循环的结束扭曲行为进行了研究。观察到结束扭曲导致早发性平面外变形导致循环。应变能量图给出了一个深入的了解这些工具对结束的行为缩短和扭曲。显示了最小值为2π扭结束。因此,仪器会循环如果最终的转折是礼物。特点是会导致获得的这些工具的设计和控制。力和扭矩图显示负刚度当仪器循环。unlooping现象也和讨论策略,提出了减轻循环。所提出的建模方法可以利用解决一个灵活的复杂行为仪器在医疗以及其他工业应用。将有助于在设计和开发控制安全可靠的使用灵活的工具在不同的领域。

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