磁共振成像立体定位:对相交的识别和利用。

J G Villemure, E Marchand, T Peters, G Leroux, A Olivier
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引用次数: 32

摘要

磁共振成像(MRI)提供了一种非侵入性的方法来观察脑内结构。与兼容的立体定向框架和软件相结合,MRI可用于确定颅内目标的坐标。在植入刺激丘脑电极以控制疼痛之前,通过脑室造影和MRI获得了6例接受立体定向定位的患者的前联合、后联合坐标、靶标和联合间距离。在大多数测量中,心室造影和MRI获得的坐标和测量值的相关性为+/- 1mm,但在2例中高达3mm。磁共振立体定位可以实现对脑内目标的非侵入性和精确定位,但还不能保证其常规使用。进一步了解失真和伪影和纠正这些是强制性的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Magnetic resonance imaging stereotaxy: recognition and utilization of the commissures.

Magnetic Resonance Imaging (MRI) offers a non-invasive method to visualize the intracerebral structures. Coupled to a compatible stereotactic frame and software, MRI can be used to determine the coordinates of intracranial targets. Coordinates of the anterior commissure, posterior commissure, targets and intercommissural distance were obtained from positive contrast ventriculography and by MRI in 6 patients undergoing stereotactic localization prior to the implantation of stimulating thalamic electrodes for pain control. The correlation of coordinates and measurements obtained with ventriculography and MRI is +/- 1 mm in most measurements, but up to 3 mm in 2 cases. Magnetic resonance stereotaxy allows non-invasive and precise localization of intracerebral targets, but does not yet allow its routine use with confidence. Further understanding of distortion and artifacts and corrections of these is mandatory.

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