arXiv:2505.23984eess.IVcs.HC2025-05被引 2

用视觉引导模块化夹具,提升骨盆肿瘤切除精度。

Improved Accuracy in Pelvic Tumor Resections Using a Real-Time Vision-Guided Surgical System

  • 结合实时光学追踪与模块化夹具,实现手术导航。
  • 距离偏差从2.07毫米降至1.01毫米,角度偏差显著降低。
  • 无需外部显示器,成本低且不打断手术流程。

骨盆骨肿瘤切除因三维解剖结构复杂、术中视野受限而极具挑战。现有导航系统与个体化器械存在成本高、辐射暴露、流程中断、制作周期长及不可重复使用等局限。本研究评估了一种结合模块化夹具与实时视觉导航的手术系统在骨盆肿瘤切除中的准确性。开发并验证了集成实时光学追踪与模块化切割夹具的视觉导航系统。使用五具女性骨盆模拟模型,每侧半骨盆随机分配至视觉导航+模块化夹具组或传统自由手组,共分析40个切除面(每组20个)。通过测量实际切除面与计划面之间的距离和角度偏差评估精度。结果显示,视觉导航组平均距离偏差由2.07 ± 1.71 mm降至1.01 ± 0.78 mm(p=0.0193),所有样本误差均小于3 mm;旋转角偏差由15.36 ± 17.57°降至4.21 ± 3.46°(p=0.0275),俯仰角偏差由6.17 ± 4.58°降至1.84 ± 1.48°(p<0.001)。该系统显著提升骨盆肿瘤切除精度,同时保持流程效率,为无需外部监测的低成本实时导航方案,有望改善复杂骨盆肿瘤手术结果。

原文摘要 · Abstract (English)

Pelvic bone tumor resections remain significantly challenging due to complex three-dimensional anatomy and limited surgical visualization. Current navigation systems and patient-specific instruments, while accurate, present limitations including high costs, radiation exposure, workflow disruption, long production time, and lack of reusability. This study evaluates a real-time vision-guided surgical system combined with modular jigs to improve accuracy in pelvic bone tumor resections. A vision-guided surgical system combined with modular cutting jigs and real-time optical tracking was developed and validated. Five female pelvis sawbones were used, with each hemipelvis randomly assigned to either the vision-guided and modular jig system or traditional freehand method. A total of twenty resection planes were analyzed for each method. Accuracy was assessed by measuring distance and angular deviations from the planned resection planes. The vision-guided and modular jig system significantly improved resection accuracy compared to the freehand method, reducing the mean distance deviation from 2.07 $\pm$ 1.71 mm to 1.01 $\pm$ 0.78 mm (p=0.0193). In particular, all specimens resected using the vision-guided system exhibited errors of less than 3 mm. Angular deviations also showed significant improvements with roll angle deviation reduced from 15.36 $\pm$ 17.57$^\circ$ to 4.21 $\pm$ 3.46$^\circ$ (p=0.0275), and pitch angle deviation decreased from 6.17 $\pm$ 4.58$^\circ$ to 1.84 $\pm$ 1.48$^\circ$ (p<0.001). The proposed vision-guided and modular jig system significantly improves the accuracy of pelvic bone tumor resections while maintaining workflow efficiency. This cost-effective solution provides real-time guidance without the need for referencing external monitors, potentially improving surgical outcomes in complex pelvic bone tumor cases.

手术导航骨盆肿瘤视觉引导精准切除

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