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Multimodal Augmented Reality System for Surgical Microscopy

机译:用于手术显微镜的多峰增强现实系统

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Image-guided, computer-assisted neurosurgery has emerged to improve localization and targeting, to provide a better anatomic definition of the surgical field, and to decrease invasiveness. Usually, in image-guided surgery, a computer displays the surgical field in a CT/MR environment, using axial, coronal or sagittal views, or even a 3D representation of the patient. Such a system forces the surgeon to look away from the surgical scene to the computer screen. Moreover, this kind of information, being pre-operative imaging, can not be modified during the operation, so it remains valid for guidance in the first stage of the surgical procedure, and mainly for rigid structures like bones. In order to solve the two constraints mentioned before, we are developing an ultrasound-guided surgical microscope. Such a system takes the advantage that surgical microscopy and ultrasound systems are already used in neurosurgery, so it does not add more complexity to the surgical procedure. We have integrated an optical tracking device in the microscope and an augmented reality overlay system with which we avoid the need to look away from the scene, providing correctly aligned surgical images with sub-millimeter accuracy. In addition to the standard CT and 3D views, we are able to track an ultrasound probe, and using a previous calibration and registration of the imaging, the image obtained is correctly projected to the overlay system, so the surgeon can always localize the target and verify the effects of the intervention. Several tests of the system have been already performed to evaluate the accuracy, and clinical experiments are currently in progress in order to validate the clinical usefulness of the system.
机译:图像引导的计算机辅助神经外科手术已经出现,以改善定位和靶向性,为手术领域提供更好的解剖学定义,并减少侵入性。通常,在图像引导手术中,计算机使用轴向,冠状或矢状面甚至患者的3D表示来显示CT / MR环境中的手术区域。这样的系统迫使外科医生将视线从手术现场移到计算机屏幕上。此外,这种信息(术前成像)在手术期间无法修改,因此对于外科手术的第一阶段的指导仍然有效,并且主要适用于骨骼等刚性结构。为了解决前面提到的两个限制,我们正在开发一种超声引导的手术显微镜。这种系统的优势在于神经外科已经使用了手术显微镜和超声系统,因此不会给手术过程增加更多的复杂性。我们在显微镜中集成了光学跟踪设备和增强现实覆盖系统,借助该系统,我们无需将视线移开场景,从而提供了亚毫米级精度的正确对准的手术图像。除了标准的CT和3D视图外,我们还可以跟踪超声探头,并使用先前的成像校准和定位功能,将获得的图像正确地投影到覆盖系统上,因此外科医生可以始终定位目标和验证干预措施的效果。已经对该系统进行了几次测试以评估准确性,并且目前正在进行临床实验以验证该系统的临床实用性。

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