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Design and Control of a Magnetic Laser Scanner for Endoscopic Microsurgeries

机译:内窥镜显微手术用电磁激光扫描仪的设计与控制

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摘要

State-of-the-art surgical laser systems achieve high-quality tissue ablations with minimal thermal damage to the tissue by providing high-speed laser scanning. However, current technology is not applicable to difficult-to-reach anatomical sites for endoscopic surgery. In these cases, flexible laser fibers are used, but the resulting ablation quality is limited. Therefore, there is a need to improve flexible laser surgery systems. This paper proposes a solution to this issue based on a compact laser scanner and a focusing module designed to be placed at the distal end of a flexible endoscopic system. The device uses magnetic actuation to bend a laser fiber; thus, allowing precise 2-D position control and high-speed scanning of a high-power surgical laser. The design, implementation, and control of such a system are described in this paper, with special focus on its dynamic modeling and controller design to provide real-time control and fast automated execution of surgeon-defined trajectories. Validation experiments performed with different trajectories and scanning frequencies attest the performance of the system, which demonstrates trajectory tracing with 90 mu m (1.4 mrad) accuracy for scanning frequencies up to 15 Hz. This is a significant result that promises to bring the benefits of free-beam laser scanning systems to endoscopic microsurgeries.
机译:通过提供高速激光扫描,最先进的外科手术激光系统实现了高质量的组织消融,并且对组织的热损伤最小。然而,当前技术不适用于内窥镜手术难以到达的解剖部位。在这些情况下,使用了柔性激光纤维,但是所产生的烧蚀质量受到限制。因此,需要改进柔性激光手术系统。本文提出了一种基于紧凑型激光扫描仪和聚焦模块的解决方案,该聚焦模块设计为放置在柔性内窥镜系统的远端。该设备使用磁驱动弯曲激光光纤。因此,可以实现精确的2D位置控制和大功率手术激光器的高速扫描。本文描述了这种系统的设计,实现和控制,特别关注其动态建模和控制器设计,以提供实时控制和快速自动执行的外科医生定义的轨迹。在不同的轨迹和扫描频率下进行的验证实验证明了系统的性能,该系统证明了在高达15 Hz的扫描频率下,轨迹跟踪的精度为90μm(1.4 mrad)。这是一个重大成果,有望将自由光束激光扫描系统的优势带入内窥镜显微外科手术中。

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