This study considers modern surgical navigation systems based on augmented reality technologies. Augmented reality glasses are used to construct holograms of the patient's organs from MRI and CT data, subsequently transmitted to the glasses. This, in addition to seeing the actual patient, the surgeon gains visualization inside the patient's body (bones, soft tissues, blood vessels, etc.). The solutions developed at Peter the Great St. Petersburg Polytechnic University allow reducing the invasiveness of the procedure and preserving healthy tissues. This also improves the navigation process, making it easier to estimate the location and size of the tumor to be removed. We describe the application of developed systems to different types of surgical operations (removal of a malignant brain tumor, removal of a cyst of the cervical spine). We consider the specifics of novel navigation systems designed for anesthesia, for endoscopic operations. Furthermore, we discuss the construction of novel visualization systems for ultrasound machines. Our findings indicate that the technologies proposed show potential for telemedicine.
翻译:本研究以扩大的现实技术为基础,考虑现代外科手术导航系统。强化的现实眼镜用于从磁共振和CT数据中制作病人器官的全息图,随后传送到眼镜上。除了观察实际病人外,外科外科外科医生在病人身体内(骨骼、软组织、血管等)取得可视化效果。彼得圣彼得圣彼得堡理工大学开发的解决方案可以减少手术的侵入性并保护健康组织。这也改善了导航过程,从而更容易估计要移除的肿瘤的位置和大小。我们描述了发达系统在不同类型的外科手术中的应用情况(消除恶性脑肿瘤、移除宫颈脊椎细胞)。我们考虑了为麻醉、内科手术而设计的新型导航系统的具体特点。此外,我们讨论了超声波机器新视觉系统的设计。我们的调查结果表明,拟议的技术显示了远程医疗的潜力。