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脑皮质癫痫中皮质和白质各层弥散异常的基于表面的层分析。

Surface-based laminar analysis of diffusion abnormalities in cortical and white matter layers in neocortical epilepsy.

机构信息

Department of Pediatrics, Children's Hospital of Michigan, Detroit Medical Center, Wayne State University School of Medicine, Detroit, MI 48201, USA.

出版信息

Epilepsia. 2013 Apr;54(4):667-77. doi: 10.1111/epi.12129. Epub 2013 Feb 28.

Abstract

PURPOSE

Microstructural alterations seen in the epileptic cortex have been implicated as a cause and also result of multiple seizure activity. In the present study, we evaluated water diffusion changes at different cortical thickness fractions and in the underlying white matter of the epileptic cortex and compared them with electrographically normal cortex and also with corresponding cortical regions of healthy controls.

METHODS

We selected 18 children with normal magnetic resonance imaging (MRI) who underwent two-stage epilepsy surgery to control seizures of neocortical origin, and compared their MR images with those of 18 age-matched healthy controls. First, delineation of the gray-white and gray-pial intersection surfaces was performed on high-resolution volumetric T1 MR images. Using the delineated surfaces as reference, diffusion values were measured at different cortical thickness fractions and in the underlying white matter at various depths, using diffusion tensor imaging (DTI). Cortical regions representing seizure onset and electrographically normal cortex were differentiated by electrocorticography in the epilepsy patients.

KEY FINDINGS

We observed different patterns of diffusion abnormalities in both the seizure onset and electrographically normal cortical regions when compared to healthy controls. In the seizure-onset regions, a marked increase in diffusivity was noted in the cortical gray matter, and this increase was most pronounced in the outer fraction of the gray matter. Similarly, increased diffusivity was noted in the white matter underlying the epileptic cortex. The electrographically normal cortex, in contrast, showed decreased diffusivity in inner and middle cortical fractions compared to the controls. The white matter underlying the electrographically normal cortex did not show any difference in diffusivity between the children with epilepsy and controls. Finally, both the cortical gray matter and the underlying white matter regions showed decreased anisotropy in epileptic as well as electrographically normal regions when compared to controls.

SIGNIFICANCE

Our results suggest specific patterns of diffusion changes in the cortical fractions and the underlying white matter of the epileptic region compared to electrographically normal and normal control regions. The abnormal increase in diffusivity of the superficial cortex might be associated with microstructural abnormalities commonly seen in layers II through IV of epileptic cortex. Such combined use of a high-resolution structural image to extract the laminar diffusion values, which are highly sensitive to microstructural alterations, could be of clinical value in localizing epileptogenic cortex.

摘要

目的

在癫痫皮质中观察到的微观结构改变被认为是多种癫痫发作活动的原因和结果。在本研究中,我们评估了不同皮质厚度层和癫痫皮质下的白质中的水扩散变化,并将其与电描记法正常皮质进行了比较,也与健康对照组的相应皮质区域进行了比较。

方法

我们选择了 18 名接受了两阶段癫痫手术以控制皮质起源癫痫发作的儿童,并将他们的磁共振图像与 18 名年龄匹配的健康对照组进行了比较。首先,在高分辨率容积 T1 MR 图像上对灰白质和灰白质交界面进行描绘。使用描绘的表面作为参考,使用扩散张量成像(DTI)在不同的皮质厚度层和在不同深度的下白质中测量扩散值。在癫痫患者中,通过皮质电图区分了癫痫发作起始和电描记法正常的皮质区域。

主要发现

与健康对照组相比,我们在癫痫发作起始和电描记法正常的皮质区域观察到不同的扩散异常模式。在癫痫发作起始区域,皮质灰质的扩散性明显增加,这种增加在灰质的外部分最为明显。同样,在癫痫皮质下的白质中也观察到扩散性增加。相比之下,电描记法正常的皮质区域与对照组相比,在皮质的内和中层分数中表现出扩散性降低。电描记法正常皮质下的白质在癫痫儿童和对照组之间的扩散性没有差异。最后,与对照组相比,癫痫和电描记法正常区域的皮质灰质和下白质区域的各向异性均降低。

意义

我们的结果表明,与电描记法正常和正常对照组区域相比,癫痫区域的皮质分数和下白质区域存在特定的扩散变化模式。表面皮质扩散性的异常增加可能与癫痫皮质的 II 到 IV 层中常见的微观结构异常有关。这种结合使用高分辨率结构图像来提取对微观结构改变高度敏感的层状扩散值的方法,可能在定位致痫皮质方面具有临床价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d7ba/3618513/b7c7ce304b3b/nihms-438067-f0001.jpg

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