首页> 外文期刊>Journal of Neurosurgery. Spine. >Three-dimensional ultrasonography navigation in spinal cord tumor surgery. Technical note.
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Three-dimensional ultrasonography navigation in spinal cord tumor surgery. Technical note.

机译:脊髓肿瘤手术中的三维超声导航。技术说明。

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The authors describe the technical application of three-dimensional (3D) ultrasonography navigation in spinal cord tumor surgery. The spinal cord is a complex neurological structure in which there is the potential for causing neurological morbidity during tumor resection. Standard neuronavigation systems based on computed tomography or C-arm images are not adapted to tumor surgery in the spinal cord. Since 2004 the authors have been using a 3D ultrasonography-based neuronavigation system. During surgery, two-dimensional ultrasound images were acquired and reconstructed into 3D image data to assist in tumor resection. The navigation cameras read the position of a patient reference frame attached to a spinous process, the ultrasonography probe, and surgical instruments. Five- and 10-MHz phased-array ultrasonography probes equipped with optical tracking frames were used for image data acquisition. Spinal cord tumors were visualized using ultrasonography, and 3D ultrasonography-guided tumor biopsy samplingand resection were performed. The practice of attaching the reference frame to a spinous process adjacent to the spinal cord tumor, as well as performing image acquisition just before starting the resection, reduced the possible sources of inaccuracy. The technical application of a navigation system based on intraoperative 3D ultrasound image reconstruction seems feasible and may have the potential of improving functional outcome in association with spinal cord tumor surgery.
机译:作者介绍了三维(3D)超声导航在脊髓肿瘤手术中的技术应用。脊髓是复杂的神经系统结构,在肿瘤切除过程中可能会引起神经系统疾病。基于计算机断层扫描或C型臂图像的标准神经导航系统不适用于脊髓中的肿瘤手术。自2004年以来,作者一直在使用基于3D超声检查的神经导航系统。在手术期间,获取二维超声图像并将其重建为3D图像数据,以协助肿瘤切除。导航摄像头读取附着在棘突上的患者参考架,超声探头和手术器械的位置。配备有光学跟踪框架的5 MHz和10 MHz相控阵超声探头用于图像数据采集。超声检查显示脊髓肿瘤,并进行3D超声引导下的肿瘤活检取样和切除。将参考框架连接到邻近脊髓肿瘤的棘突上,以及在开始切除之前进行图像采集的做法,减少了可能的误差来源。基于术中3D超声图像重建的导航系统的技术应用似乎可行,并且可能具有改善与脊髓肿瘤手术相关的功能结局的潜力。

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