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神经外科的新诊断成像方法:解剖学和功能性神经成像的出现

[New diagnostic imaging methods in neurosurgery: advent of anatomical and functional neuroimaging].

作者信息

Oishi Makoto, Uzuka Takeo, Yoneoka Yuichiro, Fujii Yukihiko, Igarashi Hironaka

机构信息

Department of Neurosurgery, Brain Research Institute, Niigata University, 1-757 Asahimachidori, Niigata City, Niigata, Japan.

出版信息

No Shinkei Geka. 2007 Mar;35(3):291-300.

Abstract

Progress in imaging techniques has contributed to improvements in reliable diagnosis and surgical decision making in neurosurgery. From the viewpoint of neurosurgeons, there are two major needs in the development of imaging techniques. One is greater accuracy in demonstrating the anatomy of the brain at microscopic resolutions and the other is visualization of function or metabolism that is invisible on surgical views. Use of 3.0 T magnetic resonance imaging (MRI) in clinical patients has revealed anatomy appropriate for microsurgery at high resolution, and three-dimensional reconstruction of MRI on high-specification computers helps neurosurgeons to understand the anatomy of the brain in individual patients. Functional imaging methods such as functional MRI, positron emission tomography, and magnetoencephalography have provided new insights in brain surgery, visualizing various cerebral functions on anatomic images. Recently, diffusion tensor imaging is used to visualize neural tracts passing through subcortical white matter and MR spectroscopy is used to show the metabolic status of lesions. These tools are also forms of functional imaging. New noninvasive imaging techniques are still being developed to visualize function more easily. Here, we summarize the roles of recent imaging techniques in our previous studies and discuss the future of imaging in neurosurgery.

摘要

成像技术的进步推动了神经外科手术中可靠诊断和手术决策的改进。从神经外科医生的角度来看,成像技术的发展有两个主要需求。一是在微观分辨率下更准确地显示脑部解剖结构,另一个是可视化手术视野中不可见的功能或代谢情况。在临床患者中使用3.0T磁共振成像(MRI)已揭示出适合高分辨率显微手术的解剖结构,并且在高规格计算机上对MRI进行三维重建有助于神经外科医生了解个体患者的脑部解剖结构。功能磁共振成像、正电子发射断层扫描和脑磁图等功能成像方法为脑外科手术提供了新的见解,可在解剖图像上可视化各种脑功能。最近,扩散张量成像用于可视化穿过皮质下白质的神经束,磁共振波谱用于显示病变的代谢状态。这些工具也是功能成像的形式。新的非侵入性成像技术仍在不断发展,以便更轻松地可视化功能。在此,我们总结了近期成像技术在我们先前研究中的作用,并讨论神经外科成像的未来发展。

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