Carvalho Paulo A W G, Gandomi Katie Y, Nycz Christopher J, Fischer Gregory S
Robotics Engineering, Worcester Polytechnic Insitute, Worcester, MA 01609.
Mechanical and Robotics Engineering, Worcester Polytechnic Insitute, Worcester, MA 01609.
Int Mech Eng Congress Expo. 2018 Nov;3. doi: 10.1115/IMECE2018-87963.
Intra-operative medical imaging based on magnetic resonance imaging (MRI) coupled with robotic manipulation of surgical instruments enables precise feedback-driven procedures. Electrically powered non-ferromagnetic motors based on piezoelectric elements have shown to be well suited for MRI robots. However, even avoiding ferrous materials, the high metal content on commercially available motors still cause distortions to the magnetic fields. We construct semi-custom piezoelectric actuators wherein the quantity of conductive material is minimized and demonstrate that the distortion issues can be partly addressed through substituting several of these components for plastic equivalents, while maintaining motor functionality. Distortion was measured by assessing the RMS change in position of 49 centroid points in a 12.5mm square grid of a gelatin-filled phantom. The metal motor caused a distortion of up to 4.91mm versus 0.55mm for the plastic motor. An additional SNR drop between motor off and motor spinning of approximately 20% was not statistically different for metal versus plastic (p=0.36).
基于磁共振成像(MRI)的术中医学成像与手术器械的机器人操作相结合,可实现精确的反馈驱动手术。基于压电元件的电动非铁磁电机已被证明非常适合用于MRI机器人。然而,即使避免使用含铁材料,市售电机上的高金属含量仍会对磁场造成畸变。我们构建了半定制压电致动器,其中导电材料的数量被最小化,并证明通过用塑料等效物替代其中几个组件,同时保持电机功能,可以部分解决畸变问题。通过评估明胶填充体模12.5毫米正方形网格中49个质心点位置的均方根(RMS)变化来测量畸变。金属电机导致的畸变高达4.91毫米,而塑料电机为0.55毫米。电机关闭和电机旋转之间额外的约20%的信噪比下降,金属电机和塑料电机之间在统计学上没有差异(p=0.36)。