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Framework for Augmented Reality in Minimally Invasive Laparoscopic Surgery

机译:在微创腹腔镜手术中增强现实的框架

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This article presents a framework for fusing pre-operative data and intra-operative data for surgery guidance. This framework is employed in the context of Minimally Invasive Surgery (MIS) of the liver. From stereoscopic images a three dimensional point cloud is reconstructed in real-time. This point cloud is then used to register a patient-specific biomechanical model derived from Computed Tomography images onto the laparoscopic view. In this way internal structures such as vessels and tumors can be visualized to help the surgeon during the procedure. This is particularly relevant since abdominal organs undergo large deformations in the course of the surgery, making it difficult for surgeons to correlate the laparoscopic view with the pre-operative images. Our method has the potential to reduce the duration of the operation as the biomechanical model makes it possible to estimate the in-depth position of tumors and vessels at any time of the surgery, which is essential to the surgical decision process. Results show that our method can be successfully applied during laparoscopic procedure without interfering with the surgical work flow.
机译:本文介绍了融合术前数据和用于手术指导的操作系统数据的框架。该框架在肝脏的微创手术(MIS)的上下文中使用。从立体图像中,实时重建三维点云。然后使用该点云将从计算机断层摄影图像衍生的患者特定的生物力学模型注册到腹腔镜视图上。以这种方式,诸如血管和肿瘤之类的内部结构可以可视化以帮助外科医生在程序期间。这是特别相关的,因为腹部器官在手术过程中经历大变形,因此外科医生难以将腹腔镜视图与术前图像相关联。当生物力学模型使得可以在手术中的任何时候估计肿瘤和血管的深入位置,这项方法具有减少操作的持续时间,这对手术决策过程至关重要。结果表明,我们的方法可以在腹腔镜手术过程中成功应用,而不会干扰外科工作流程。

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