...
首页> 外文期刊>Computer Assisted Surgery >A new head-mounted display-based augmented reality system in neurosurgical oncology: a study on phantom
【24h】

A new head-mounted display-based augmented reality system in neurosurgical oncology: a study on phantom

机译:一种新的基于头戴式显示器的神经外科肿瘤增强现实系统:幻像研究

获取原文
   

获取外文期刊封面封底 >>

       

摘要

Purpose: Benefits of minimally invasive neurosurgery mandate the development of ergonomic paradigms for neuronavigation. Augmented Reality (AR) systems can overcome the shortcomings of commercial neuronavigators. The aim of this work is to apply a novel AR system, based on a head-mounted stereoscopic video see-through display, as an aid in complex neurological lesion targeting. Effectiveness was investigated on a newly designed patient-specific head mannequin featuring an anatomically realistic brain phantom with embedded synthetically created tumors and eloquent areas.Materials and methods: A two-phase evaluation process was adopted in a simulated small tumor resection adjacent to Broca’s area. Phase I involved nine subjects without neurosurgical training in performing spatial judgment tasks. In Phase II, three surgeons were involved in assessing the effectiveness of the AR-neuronavigator in performing brain tumor targeting on a patient-specific head phantom.Results: Phase I revealed the ability of the AR scene to evoke depth perception under different visualization modalities. Phase II confirmed the potentialities of the AR-neuronavigator in aiding the determination of the optimal surgical access to the surgical target.Conclusions: The AR-neuronavigator is intuitive, easy-to-use, and provides three-dimensional augmented information in a perceptually-correct way. The system proved to be effective in guiding skin incision, craniotomy, and lesion targeting. The preliminary results encourage a structured study to prove clinical effectiveness. Moreover, our testing platform might be used to facilitate training in brain tumour resection procedures.
机译:目的:微创神经外科手术的好处要求开发符合人体工程学的神经导航范式。增强现实(AR)系统可以克服商业神经导航仪的缺点。这项工作的目的是应用基于头戴式立体视频透视显示器的新型AR系统,以帮助进行复杂的神经病变定位。研究人员对一种新设计的针对特定患者的头部人体模型的有效性进行了研究,该人体模型具有解剖学上逼真的脑部幻影,其中嵌入了人工合成的肿瘤和雄辩区域。第一阶段涉及九名未经神经外科训练的受试者来执行空间判断任务。在第二阶段中,三名外科医生参与评估了AR神经调节剂对以患者特定的头部模型为目标的脑肿瘤靶向治疗的有效性。结果:第一阶段揭示了AR场景在不同可视化模式下唤起深度感知的能力。第二阶段证实了AR神经调节剂在确定最佳手术入路方面的潜力。结论:AR神经调节剂直观,易于使用,并在感知上提供三维增强信息。正确的方法。该系统被证明可以有效地指导皮肤切口,开颅手术和靶向病变。初步结果鼓励进行结构化研究以证明临床有效性。此外,我们的测试平台可用于促进脑肿瘤切除程序的培训。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号