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SonoWand,一种基于超声的神经导航系统。

SonoWand, an ultrasound-based neuronavigation system.

作者信息

Gronningsaeter A, Kleven A, Ommedal S, Aarseth T E, Lie T, Lindseth F, Langø T, Unsgård G

机构信息

SINTEF Unimed, Trondheim, Norway.

出版信息

Neurosurgery. 2000 Dec;47(6):1373-9; discussion 1379-80.

Abstract

OBJECTIVE

We have integrated a neuronavigation system into an ultrasound scanner and developed a single-rack system that enables the surgeon to perform frameless and armless stereotactic neuronavigation using intraoperative three-dimensional ultrasound data as well as preoperative magnetic resonance or computed tomographic images. The purpose of this article is to describe our two-rack prototype and present the results of our work on image quality enhancement.

DESCRIPTION OF INSTRUMENTATION

The system consists of a high-end ultrasound scanner, a modest-cost computer, and an optical positioning/digitizer system. Special technical and clinical efforts have been made to achieve high image quality. A special interface between the ultrasound instrument and the navigation computer ensures rapid transfer of digital three-dimensional data with no loss of image quality.

OPERATIVE TECHNIQUE

The positioning system tracks the position and orientation of the patient, the ultrasound probe, the pointer, and various surgical instruments. This makes it possible to update the three-dimensional map during surgery and navigate by ultrasound data in a similar manner as with magnetic resonance data.

METHODS

The two-rack prototype has been used for clinical testing since November 1997 at the University Hospital in Trondheim.

EXPERIENCE AND RESULTS

The image quality improvements have enabled us, in most cases, to extract information from ultrasound with clinical value similar to that of preoperative magnetic resonance imaging. The overall clinical accuracy of the ultrasound-based navigation system is expected to be comparable to or better than that of a magnetic resonance imaging-based system.

CONCLUSION

The SonoWand system enables neuronavigation through direct use of intraoperative three-dimensional ultrasound. Further research will be necessary to explore the potential clinical value and the limitations of this technology.

摘要

目的

我们已将神经导航系统集成到超声扫描仪中,并开发出一种单机架系统,使外科医生能够使用术中三维超声数据以及术前磁共振或计算机断层扫描图像进行无框架、无臂立体定向神经导航。本文的目的是描述我们的双机架原型,并展示我们在图像质量增强方面的工作成果。

仪器描述

该系统由一台高端超声扫描仪、一台成本适中的计算机和一个光学定位/数字化仪系统组成。为实现高图像质量,我们在技术和临床方面都做出了特殊努力。超声仪器与导航计算机之间的特殊接口可确保数字三维数据的快速传输,且不损失图像质量。

手术技术

定位系统可跟踪患者、超声探头、指针和各种手术器械的位置与方向。这使得在手术过程中更新三维地图并以与磁共振数据类似的方式通过超声数据进行导航成为可能。

方法

自1997年11月起,该双机架原型已在特隆赫姆大学医院用于临床测试。

经验与结果

图像质量的提升使我们在大多数情况下能够从超声中提取具有与术前磁共振成像相似临床价值的信息。基于超声的导航系统的总体临床准确性预计与基于磁共振成像的系统相当或更高。

结论

SonoWand系统能够通过直接使用术中三维超声实现神经导航。有必要进一步研究以探索该技术的潜在临床价值和局限性。

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