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End-effector calibration and registration procedure for robot assisted laser material processing: Tailored to the particular needs of short pulsed CO_2 laser bone ablation

机译:机器人辅助激光材料加工的终端效应校准和登记程序:根据短脉冲CO_2激光骨烧蚀的特殊需要量身定制

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Material processing using a laser has become a widely used method for industrial procedures (e.g. laser welding or cutting). Furthermore the medical laser has become an integral part of dermatology, neurosurgery, ENT, esthetic, plastic and general surgery. Recent publications have shown, that the short pulsed CO_2 laser is suitable to ablate bony and cartilage tissue and proposes fundamentally new operative techniques in medicine. The obtainable precision in cutting (in the hundred micrometers range) with a laser system can only be reached using means of computer and robot assisted surgery. We established the first robot assisted laser bone ablation setup, comprising a prototype CO_2 laser system and a six degree of freedom robot. The laser beam is guided through a passive articulated mirror arm to the robots end-effector. The end-effector is composed of a two mirror galvanometric scan head, which deflects the pulsed laser beam onto the tissue. In this paper we present an end-effector calibration and registration method to determine the parameters which are critical in obtaining precise and accurate cutting results.
机译:使用激光的材料加工已成为工业手术的广泛使用方法(例如激光焊接或切割)。此外,医疗激光已成为皮肤病学,神经外科,耳鼻喉科,esthetic,塑料和普通手术的组成部分。最近的出版物表明,短脉冲CO_2激光适用于烧蚀骨和软骨组织,并提出了基本上的医学操作技术。只有使用电脑和机器人辅助手术的手段才能达到与激光系统的切割(在百千米处的范围内)的可获得精度。我们建立了第一个机器人辅助激光骨烧蚀设置,包括原型CO_2激光系统和六个自由机器人。激光束通过被动铰接镜臂引导到机器人末端执行器。末端执行器由两个镜像扫描头组成,其使脉冲激光束偏转到组织上。在本文中,我们提出了终端效应器校准和注册方法,以确定在获得精确和准确的切割结果中至关重要的参数。

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