Murphy Ryan J, Iordachita Iulian, Armand Mehran
Annu Int Conf IEEE Eng Med Biol Soc. 2016 Aug;2016:5099-5102. doi: 10.1109/EMBC.2016.7591874.
Dexterous continuum manipulators (DCMs) offer great potential for increasing instrument reach in minimally-invasive surgical procedures. We previously designed and fabricated a tendon driven DCM with a large instrument channel and evenly distributed compliant joints for minimally-invasive skull base surgery and the treatment of osteolysis during hip revision surgery. The evenly distributed compliant joints, in some cases, may limit the reach of the DCM during lesion removal. In this paper, we propose a finite element analysis (FEA) method for optimizing the distribution of the compliant joints based on treatment space requirements determined preoperatively. After performing experiments to validate the FEA results, we investigated the effects of height and cross distance of unevenly distributed compliant joints on tip trajectories and deflection shapes of DCMs. A boundary exploration for skull base surgery was performed to investigate the improvement in the percent of boundary explored by the optimized DCMs with the unevenly distributed compliant joints. Results show the advantage of using DCMs with unevenly distributed joints in reaching the boundary of the lesion. For a typical lesion in the petrous apex during skull base surgery, simulation results indicates that the design of unevenly distributed compliant joints can increase the reach of the DCM accomplishing 71% lesion removal compared with 59% from the DCM with evenly distributed compliant joints.
灵巧连续体操纵器(DCMs)在增加微创手术器械的操作范围方面具有巨大潜力。我们之前设计并制造了一种肌腱驱动的DCM,它具有一个大的器械通道和均匀分布的柔顺关节,用于微创颅底手术以及髋关节翻修手术中的骨溶解治疗。在某些情况下,均匀分布的柔顺关节可能会限制DCM在病变切除过程中的操作范围。在本文中,我们提出了一种有限元分析(FEA)方法,用于根据术前确定的治疗空间要求优化柔顺关节的分布。在进行实验验证FEA结果后,我们研究了不均匀分布的柔顺关节的高度和横向距离对DCM末端轨迹和偏转形状的影响。对颅底手术进行了边界探索,以研究具有不均匀分布柔顺关节的优化DCM在边界探索百分比方面的改进。结果显示了使用具有不均匀分布关节的DCM到达病变边界的优势。对于颅底手术中岩尖的典型病变,模拟结果表明,与具有均匀分布柔顺关节的DCM相比,不均匀分布柔顺关节的设计可以增加DCM的操作范围,实现71%的病变切除,而均匀分布柔顺关节的DCM为59%。