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使用λ图分析对瘤周水肿进行扩散张量分析,以表明水肿内微观结构的异质性。

Diffusion tensor analysis of peritumoral edema using lambda chart analysis indicative of the heterogeneity of the microstructure within edema.

作者信息

Morita Ken-ichi, Matsuzawa Hitoshi, Fujii Yukihiko, Tanaka Ryuichi, Kwee Ingrid L, Nakada Tsutomu

机构信息

Center for Integrated Human Brain Science, Department of Neurosurgery, Brain Research Institute, University of Niigata, Japan.

出版信息

J Neurosurg. 2005 Feb;102(2):336-41. doi: 10.3171/jns.2005.102.2.0336.

Abstract

OBJECT

Histopathological studies indicate that cerebral edema associated with tumors (peritumoral edema) does not represent a single pathophysiological or clinical entity. In this study the authors investigated peritumoral edema by performing lambda chart analysis (LCA), a noninvasive technique that can be used to make visible and analyze apparent water diffusivity in tissues in vivo, and assessed the utility of LCA in differentiating high-grade gliomas from nonglial tumors.

METHODS

The water diffusivity characteristics of peritumoral edema associated with four tumor groups-12 high-grade gliomas, five low-grade gliomas, 11 metastatic tumors, and 15 meningiomas-were assessed in 43 patients by performing magnetic resonance imaging with the aid of a 3-tesla magnetic resonance imaging system. In all tumor groups, peritumoral edema exhibited greater trace values and reduced anisotropy compared with normal white matter. Edema associated with high-grade gliomas had significantly higher trace values than edema associated with the other three tumor groups, although the anisotropic angles of those groups were comparable.

CONCLUSIONS

Lambda chart analysis identified two distinct types of peritumoral edema: edema associated with high-grade gliomas and edema associated with low-grade gliomas or nonglial tumors. The apparent water diffusivity was significantly greater in high-grade gliomas, whereas the anisotropy in these lesions was comparable to that of edema in other tumors. These findings indicated that water movement in areas of edema, predominantly in the extracellular spaces, was less restricted in high-grade gliomas, a phenomenon that likely reflected the destruction of the extracellular matrix ultrastructure by malignant cell infiltration and consequently greater water diffusion. Although preliminary, this study indicates that LCA could be used as a clinical tool for differentiating high-grade gliomas and for evaluating the extent of cellular infiltration.

摘要

目的

组织病理学研究表明,与肿瘤相关的脑水肿(瘤周水肿)并非单一的病理生理或临床实体。在本研究中,作者通过进行拉姆达图分析(LCA)来研究瘤周水肿,LCA是一种非侵入性技术,可用于在体内使组织中的表观水扩散率可视化并进行分析,并评估LCA在鉴别高级别胶质瘤与非胶质瘤肿瘤方面的效用。

方法

借助3特斯拉磁共振成像系统,对43例患者的与四个肿瘤组相关的瘤周水肿的水扩散特性进行了评估,这四个肿瘤组分别为12例高级别胶质瘤、5例低级别胶质瘤、11例转移瘤和15例脑膜瘤。在所有肿瘤组中,瘤周水肿与正常白质相比均表现出更高的迹值和更低的各向异性。与高级别胶质瘤相关的水肿的迹值显著高于与其他三个肿瘤组相关的水肿,尽管这些组的各向异性角度相当。

结论

拉姆达图分析识别出两种不同类型的瘤周水肿:与高级别胶质瘤相关的水肿和与低级别胶质瘤或非胶质瘤肿瘤相关的水肿。高级别胶质瘤中的表观水扩散率显著更高,而这些病变中的各向异性与其他肿瘤水肿的各向异性相当。这些发现表明,水肿区域(主要在细胞外间隙)的水运动在高级别胶质瘤中受限较小,这一现象可能反映了恶性细胞浸润对细胞外基质超微结构的破坏,从而导致更大的水扩散。尽管本研究是初步的,但表明LCA可作为鉴别高级别胶质瘤和评估细胞浸润程度的临床工具。

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