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一种用于可转向经皮器械的可变刚度机构:在针内的集成。

A variable stiffness mechanism for steerable percutaneous instruments: integration in a needle.

机构信息

The BioRobotics Institute, Scuola Superiore Sant'Anna, Pisa, Italy.

Department of BioMechanical Engineering, Delft University of Technology, Delft, The Netherlands.

出版信息

Med Biol Eng Comput. 2018 Dec;56(12):2185-2199. doi: 10.1007/s11517-018-1847-7. Epub 2018 Jun 4.

Abstract

Needles are advanced tools commonly used in minimally invasive medical procedures. The accurate manoeuvrability of flexible needles through soft tissues is strongly determined by variations in tissue stiffness, which affects the needle-tissue interaction and thus causes needle deflection. This work presents a variable stiffness mechanism for percutaneous needles capable of compensating for variations in tissue stiffness and undesirable trajectory changes. It is composed of compliant segments and rigid plates alternately connected in series and longitudinally crossed by four cables. The tensioning of the cables allows the omnidirectional steering of the tip and the stiffness tuning of the needle. The mechanism was tested separately under different working conditions, demonstrating a capability to exert up to 3.6 N. Afterwards, the mechanism was integrated into a needle, and the overall device was tested in gelatine phantoms simulating the stiffness of biological tissues. The needle demonstrated the capability to vary deflection (from 11.6 to 4.4 mm) and adapt to the inhomogeneity of the phantoms (from 21 to 80 kPa) depending on the activation of the variable stiffness mechanism. Graphical abstract ᅟ.

摘要

针是微创医疗程序中常用的精细工具。通过软组织结构,柔性针的精确操纵能力主要取决于组织硬度的变化,这会影响针与组织的相互作用,从而导致针的偏转。本工作提出了一种用于经皮针的可变刚度机构,能够补偿组织硬度的变化和不理想的轨迹变化。它由柔顺段和刚性板交替串联连接,并由四根电缆纵向交叉。电缆的张紧允许尖端进行全方位转向,并调整针的刚度。该机构在不同的工作条件下分别进行了测试,结果表明其能够产生高达 3.6N 的力。然后,将该机构集成到针中,并在凝胶体模型中对整体装置进行了测试,该模型模拟了生物组织的刚度。根据可变刚度机构的激活情况,该针能够改变偏转角度(从 11.6 毫米变为 4.4 毫米)并适应模型的非均质性(从 21 千帕变为 80 千帕)。

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