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3D navigation and monitoring for spinal milling operation based on registration between multiplanar fluoroscopy and CT images

机译:基于多平面透视和CT图像之间的配准的3D导航和监视铣削手术

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摘要

Milling operations in spinal surgery demand much experience and skill for the surgeon to perform the procedure safely. A 3D navigation method is introduced aiming at providing a monitoring system with enhanced safety and minimal intraoperative interaction. An automatic registration method is presented to establish the 3D-3D transformation between the preoperative CT images and a common reference system in the surgical space, and an intensity-based similarity metric adapted for the multi-planar configuration is introduced in the registration procedure. A critical region is defined for real-time monitoring in order to prevent penetration of the lamina and avoid violation of nerve structures. The contour of the spinal canal is reconstructed as the critical region, and different levels of warning limits are defined. During the milling procedure, the position of the surgical instrument relative to the critical region is provided with augmented display and audio warnings. Timely alarm is provided for surgeons to prevent surgical failure when the mill approaches the critical region. Our validation experiment shows that real-time 3D navigation and monitoring is advantageous for improving the safety of the milling operation.
机译:脊柱外科手术中的铣削操作需要大量的经验和技巧,以使外科医生安全地执行手术。引入了3D导航方法,旨在提供一种具有增强的安全性和最小的术中交互作用的监视系统。提出了一种自动配准方法,以建立术前CT图像与手术空间中的公共参考系统之间的3D-3D转换,并在配准程序中引入了适用于多平面配置的基于强度的相似性度量。为实时监控定义了一个关键区域,以防止椎板穿透并避免侵犯神经结构。椎管的轮廓被重建为关键区域,并定义了不同级别的警告界限。在铣削过程中,为手术器械相对于关键区域的位置提供了增强的显示和音频警告。当磨机接近关键区域时,可为外科医生提供及时的警报,以防止手术失败。我们的验证实验表明,实时3D导航和监视对于提高铣削操作的安全性是有利的。

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