首页> 外文期刊>Journal of neurosurgery. >Integration of biochemical images of a tumor into frameless stereotaxy achieved using a magnetic resonance imaging/magnetic resonance spectroscopy hybrid data set.
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Integration of biochemical images of a tumor into frameless stereotaxy achieved using a magnetic resonance imaging/magnetic resonance spectroscopy hybrid data set.

机译:使用磁共振成像/磁共振波谱混合数据集将肿瘤的生化图像整合到无框架立体定位中。

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OBJECT: It is often difficult to delineate the extent of invasion of high- and low-grade gliomas into normal brain tissue by using conventional T1- and T2-weighted magnetic resonance (MR) imaging. Knowledge of the relationship between the tumor infiltration zone and normal brain, however, is one of the prerequisites for performing as radical a tumor resection as possible. Proton MR spectroscopy allows noninvasive measurements of the concentrations and spatial distributions of brain metabolites and, therefore, may provide biochemical information in vivo, that is useful in distinguishing pathological from normal areas of the brain. The authors have developed a method to use the properties of MR spectroscopy to investigate intraoperatively pathological changes in the spatial distribution of choline (Cho)-containing compounds, total creatine, and N-acetylaspartate (NAA) in brain tumors with the aid of frameless stereotaxy. METHODS: Maps of the Cho/NAA ratio were calculated and automatic segmentation of thetumors was performed. Spectroscopic images of the segmented tumor were matched to an anatomical three-dimensional (3D) MR imaging set by applying a fully automated mutual-information algorithm. The resulting 3D MR image can be used subsequently for neurosurgical planning, transfer to a frameless stereotactic system, and display in the navigation microscope during surgery leading to 1H-MR spectroscopy-guided navigation. CONCLUSIONS: This method may allow better intraoperative identification of tumor border zones based on metabolic changes due to tumor infiltration.
机译:目的:通常难以通过使用常规的T1和T2加权磁共振(MR)成像来描述高级别和低级别神经胶质瘤对正常脑组织的侵袭程度。但是,了解肿瘤浸润区与正常大脑之间的关系是尽可能彻底地切除肿瘤的先决条件之一。质子MR光谱法可对脑代谢物的浓度和空间分布进行无创测量,因此可在体内提供生化信息,这对于区分病理学与正常大脑区域非常有用。作者已经开发出一种方法,利用MR光谱学的特性,借助无框立体定位技术,研究了脑肿瘤中胆碱(Cho)化合物,总肌酸和N-乙酰天冬氨酸(NAA)的空间分布的术中病理变化。 。方法:计算Cho / NAA比值的图谱,并自动分割肿瘤。通过应用全自动互信息算法,将分割后的肿瘤的光谱图像与解剖学三维(3D)MR成像集进行匹配。生成的3D MR图像可随后用于神经外科计划,转移到无框立体定位系统中,并在手术期间在导航显微镜中显示,从而实现1H-MR光谱引导的导航。结论:该方法可根据肿瘤浸润引起的代谢变化更好地进行术中肿瘤边界区的识别。

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