Ebert Lars Christian, Ptacek Wolfgang, Breitbeck Robert, Fürst Martin, Kronreif Gernot, Martinez Rosa Maria, Thali Michael, Flach Patricia M
Institute of Forensic Medicine, University of Zurich, Winterthurerstrasse 190/52, 8057, Zurich, Switzerland,
Forensic Sci Med Pathol. 2014 Jun;10(2):179-86. doi: 10.1007/s12024-013-9520-9. Epub 2014 Jan 29.
In this paper we present the second prototype of a robotic system to be used in forensic medicine. The system is capable of performing automated surface documentation using photogrammetry, optical surface scanning and image-guided, post-mortem needle placement for tissue sampling, liquid sampling, or the placement of guide wires. The upgraded system includes workflow optimizations, an automatic tool-change mechanism, a new software module for trajectory planning and a fully automatic computed tomography-data-set registration algorithm. We tested the placement accuracy of the system by using a needle phantom with radiopaque markers as targets. The system is routinely used for surface documentation and resulted in 24 surface documentations over the course of 11 months. We performed accuracy tests for needle placement using a biopsy phantom, and the Virtobot placed introducer needles with an accuracy of 1.4 mm (±0.9 mm). The second prototype of the Virtobot system is an upgrade of the first prototype but mainly focuses on streamlining the workflow and increasing the level of automation and also has an easier user interface. These upgrades make the Virtobot a potentially valuable tool for case documentation in a scalpel-free setting that uses purely imaging techniques and minimally invasive procedures and is the next step toward the future of virtual autopsy.
在本文中,我们展示了一种用于法医学的机器人系统的第二代原型。该系统能够使用摄影测量、光学表面扫描以及图像引导的尸检针放置技术来进行自动表面记录,以用于组织采样、液体采样或导丝放置。升级后的系统包括工作流程优化、自动换刀机制、用于轨迹规划的新软件模块以及全自动计算机断层扫描数据集配准算法。我们使用带有不透射线标记物的针模作为目标来测试系统的放置精度。该系统常规用于表面记录,在11个月的时间里完成了24次表面记录。我们使用活检模对针放置进行了精度测试,Virtobot放置引导针的精度为1.4毫米(±0.9毫米)。Virtobot系统的第二代原型是第一代原型的升级版,但主要侧重于简化工作流程、提高自动化程度,并且具有更简易的用户界面。这些升级使Virtobot成为在无手术刀环境下进行病例记录的潜在有价值工具,该环境使用纯成像技术和微创程序,是迈向虚拟尸检未来的下一步。