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Introducing notched flexible needles with increased deflection curvature in soft tissue

机译:引入凹陷的柔性针,在软组织中增加了偏转曲率

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Robotics-assisted needle steering can enhance the accuracy of needle-based medical interventions, especially when the designated target locations are obscured by obstacles. However, the steering techniques using standard needles are not capable of achieving high curvatures and cannot follow tightly curved paths inside tissue. In this work, we introduce a new notched steerable needle with improved curvature. The notched needle is developed by carving a series of small notches on a regular needle shaft. The notches decrease the needle's flexural rigidity and increase the maximum achievable curvature. First, we develop a model of the notched needle deflection inside soft tissue using the finite element method (FEM). The model relates the needle radius of curvature to the number of notches and their locations on the needle shaft. Next, the capability of the notched steerable needle in achieving high curvature and the model's accuracy in predicting needle curvature are validated by performing several needle insertion experiments on a tissue phantom. The results demonstrate that our newly developed needles can achieve a minimum radius of curvature of 198 mm, which is 67% better than standard needles, enabling future research in needle steering in tight spaces.
机译:机器人辅助针转向可以提高基于针的医疗干预的准确性,特别是当指定的目标位置被障碍物遮挡时。然而,使用标准针的转向技术不能能够实现高曲率,并且不能在组织内部不能紧密弯曲的路径。在这项工作中,我们介绍了一种新的曲率曲率的新的凹痕可操纵针。通过在常规针轴上雕刻一系列小凹口开发出凹口针。凹口降低针的弯曲刚度并增加可实现的最大曲率。首先,我们使用有限元方法(FEM)在软组织内开发出凹口针偏转的模型。该模型将针状曲率与针轴上的凹口的数量及其位置涉及。接下来,通过对组织幻像进行若干针插入实验,验证了在预测针曲率的高曲率和模型的准确性方面的缺口可转向针的能力。结果表明,我们的新开发的针可以达到198毫米的最小曲率半径,比标准针更好地为67%,从而实现了在紧张空间中的针脚转向的未来研究。

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