Chen Hsuan-Yu, Xiao Xiu-Yun, Chen Chih-Wei, Chou Hao-Kai, Sung Chen-Yu, Lin Feng Huei, Chen Po-Quang, Wong Tze-Hong
Institute of Biomedical Engineering, National Taiwan University; Department of Orthopedic Surgery, National Taiwan University Hospital, Hsin-Chu Branch; Department of Orthopedic Surgery, National Taiwan University Hospital, Hsin-Chu Biomedical Park Branch.
Point Robotics MedTech Inc.
J Vis Exp. 2020 May 11(159). doi: 10.3791/60924.
Pedicle screw implantation has excellent treatment effects and is often used by surgeons in spinal fusion surgery. However, due to the complexity of human body anatomy, this surgical procedure is difficult and challenging, especially in minimally invasive surgery or patients with congenital anomalies and kyphoscoliosis deformity. In addition to the abovementioned factors, the surgical experience and technique of the surgeon also affect the recovery rates and complications of the patients after the surgical operation. Therefore, accurately performing pedicle screw implantation has is a constant topic of common concern for surgeons and patients. In recent years, with the technological development, robot-assisted navigation systems have gradually become adopted. These robot-assisted navigation systems provide surgeons with complete preoperative planning before surgery. The system provides 3D reconstructed images of each vertebra, allowing surgeons to understand the patient's physiological characteristics more quickly. It also provides 2D images of sagittal, coronal, axial and oblique planes so that surgeons can accurately perform pedicle screw placement plan. Previous studies have demonstrated the effectiveness of robot-assisted navigation systems for pedicle screw implantation procedures, including accuracy and safety assessments. This step-by-step protocol aims to outline a standardized surgical technique note for robotic-assisted pedicle screw placement.
椎弓根螺钉植入术具有出色的治疗效果,常被外科医生用于脊柱融合手术。然而,由于人体解剖结构的复杂性,该手术操作困难且具有挑战性,尤其是在微创手术或患有先天性异常及脊柱侧凸畸形的患者中。除上述因素外,外科医生的手术经验和技术也会影响患者术后的恢复率和并发症。因此,准确进行椎弓根螺钉植入术一直是外科医生和患者共同关注的话题。近年来,随着技术的发展,机器人辅助导航系统逐渐被采用。这些机器人辅助导航系统在手术前为外科医生提供完整的术前规划。该系统提供每个椎体的三维重建图像,使外科医生能够更快地了解患者的生理特征。它还提供矢状面、冠状面、轴位面和斜位面的二维图像,以便外科医生准确地进行椎弓根螺钉置入规划。先前的研究已经证明了机器人辅助导航系统在椎弓根螺钉植入手术中的有效性,包括准确性和安全性评估。本分步方案旨在概述机器人辅助椎弓根螺钉置入的标准化手术技术说明。