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Virtual reality applied to hepatic surgery simulation: the next revolution.

机译:虚拟现实应用于肝脏手术模拟:下一场革命。

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摘要

OBJECTIVE: This article describes a preliminary work on virtual reality applied to liver surgery and discusses the repercussions of assisted surgical strategy and surgical simulation on tomorrow's surgery. SUMMARY BACKGROUND DATA: Liver surgery is considered difficult because of the complexity and variability of the organ. Common generic tools for presurgical medical image visualization do not fulfill the requirements for the liver, restricting comprehension of a patient's specific liver anatomy. METHODS: Using data from the National Library of Medicine, a realistic three-dimensional image was created, including the envelope and the four internal arborescences. A computer interface was developed to manipulate the organ and to define surgical resection planes according to internal anatomy. The first step of surgical simulation was implemented, providing the organ with real-time deformation computation. RESULTS: The three-dimensional anatomy of the liver could be clearly visualized. The virtual organ could be manipulated and a resection defined depending on the anatomic relations between the arborescences, the tumor, and the external envelope. The resulting parts could also be visualized and manipulated. The simulation allowed the deformation of a liver model in real time by means of a realistic laparoscopic tool. CONCLUSIONS: Three-dimensional visualization of the organ in relation to the pathology is of great help to appreciate the complex anatomy of the liver. Using virtual reality concepts (navigation, interaction, and immersion), surgical planning, training, and teaching for this complex surgical procedure may be possible. The ability to practice a given gesture repeatedly will revolutionize surgical training, and the combination of surgical planning and simulation will improve the efficiency of intervention, leading to optimal care delivery.
机译:目的:本文介绍了将虚拟现实技术应用于肝脏手术的初步工作,并讨论了辅助手术策略和手术模拟对明天手术的影响。发明内容背景数据:由于器官的复杂性和可变性,肝脏手术被认为是困难的。术前医学图像可视化的通用工具无法满足肝脏的要求,从而限制了对患者特定肝脏解剖结构的理解。方法:使用来自美国国家医学图书馆的数据,创建了逼真的三维图像,包括包络和四个内部树状结构。开发了一种计算机界面来操纵器官并根据内部解剖结构定义手术切除平面。实施外科手术模拟的第一步,为器官提供实时变形计算。结果:肝脏的三维解剖结构清晰可见。可以操纵虚拟器官,并根据树状突起,肿瘤和外部包膜之间的解剖关系定义切除。生成的零件也可以可视化和操纵。该模拟允许通过现实的腹腔镜工具实时地改变肝脏模型。结论:与病理学相关的器官的三维可视化对于理解肝脏的复杂解剖结构有很大的帮助。使用虚拟现实概念(导航,交互和沉浸式),可以为这种复杂的手术过程进行手术计划,培训和教学。重复练习给定手势的能力将彻底改变外科手术训练,而外科手术计划与模拟相结合将提高干预效率,从而实现最佳的护理效果。

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