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Skull base surgery using Navigation Microscope Integration system

机译:使用导航显微镜集成系统进行颅底手术

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Objective: The use of intraoperative navigation system in neurosurgery has increased rapidly. The Neuronavigation Microscope Integration (NMI) system consists of a microscope (Zeiss, Germany) with StealthStation (Medotronic, U.S.A.) including light emitting diodes, a dynamic reference frame with light emitting diodes, an optical digitizer with camera array and a computer workstation. We investigated the usefulness of the NMI system for skull base surgery. Patients and Methods: Between April 2003 and August 2010, we used the NMI system in 136 patients undergoing skull base surgery including transsphenoidal surgery at Kagawa University Hospital. Results: Since the navigational informations could be superimposed into the microscope view, we obtained the accurate locations of tumor and normal anatomical structures before skin incision. During the operations, the surgeons did not need to turn away from the surgical field or to use bulky pointer. For the skull base surgery, the navigational informations were not affected by the brain shift during the operations. The deviations of registration assessment were within 2 mm and the real anatomical deviations were within 3 mm. For the transsphenoidal surgery, pituitary tumors could be removed safety without X-ray imaging. Conclusion: Our findings suggest that the NMI system can provide valuable and reliable intraoperative navigational informations in skull base surgery.
机译:目的:术中导航系统在神经外科中的应用已迅速增加。神经导航显微镜集成(NMI)系统由带有StealthStation(美国Medotronic)的StealthStation的显微镜(德国蔡司)组成,该显微镜包括发光二极管,带有发光二极管的动态参考镜架,带有摄像头阵列的光学数字转换器和计算机工作站。我们调查了NMI系统在颅底手术中的有用性。患者与方法:2003年4月至2010年8月,我们在香川大学医院的136例接受颅底手术(包括经蝶窦手术)的患者中使用了NMI系统。结果:由于可以将导航信息叠加到显微镜视图中,因此我们可以在皮肤切开之前获得肿瘤和正常解剖结构的准确位置。在手术过程中,外科医生无需离开手术区或使用笨重的指示器。对于颅底手术,导航信息不受手术过程中脑部移位的影响。配准评估的偏差在2 mm以内,实际的解剖偏差在3 mm以内。对于经蝶窦手术,无需X射线成像即可安全地切除垂体肿瘤。结论:我们的发现表明,NMI系统可以在颅底手术中提供有价值且可靠的术中导航信息。

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