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利用正电子发射断层扫描(PET)评估梗死周围皮质的神经元密度:皮质拓扑结构和部分容积校正的影响。

Assessing neuronal density in peri-infarct cortex with PET: Effects of cortical topology and partial volume correction.

作者信息

Funck Thomas, Al-Kuwaiti Mohammed, Lepage Claude, Zepper Peter, Minuk Jeffrey, Schipper Hyman M, Evans Alan C, Thiel Alexander

机构信息

Montreal Neurological Institute, McGill University, Montreal, Canada.

Jewish General Hospital, Lady Davis Institute, Montreal, Canada.

出版信息

Hum Brain Mapp. 2017 Jan;38(1):326-338. doi: 10.1002/hbm.23363. Epub 2016 Sep 10.

Abstract

The peri-infarct cortex (PIC) is the site of long-term physiologic changes after ischemic stroke. Traditional methods for delineating the peri-infarct gray matter (GM) have used a volumetric Euclidean distance metric to define its extent around the infarct. This metric has limitations in the case of cortical stroke, i.e., those where ischemia leads to infarction in the cortical GM, because the vascularization of the cerebral cortex follows the complex, folded topology of the cortical surface. Instead, we used a geodesic distance metric along the cortical surface to subdivide the PIC into equidistant rings emanating from the infarct border and compared this new approach to a Euclidean distance metric definition. This was done in 11 patients with [F-18]-Flumazenil ([18-F]-FMZ) positron emission tomography (PET) scans at 2 weeks post-stroke and at 6 month follow-up. FMZ is a PET radiotracer with specific binding to the alpha subunits of the type A γ-aminobutyric acid (GABAA) receptor. Additionally, we used partial-volume correction (PVC) of the PET images to compensate for potential cortical thinning and long-term neuronal loss in follow-up images. The difference in non-displaceable binding potential (BP ) between the stroke unaffected and affected hemispheres was 35% larger in the geodesic versus the Euclidean peri-infarct models in initial PET images and 48% larger in follow-up PET images. The inter-hemispheric BP difference was approximately 17-20% larger after PVC when compared to uncorrected PET images. PET studies of peri-infarct GM in cortical strokes should use a geodesic model and include PVC as a preprocessing step. Hum Brain Mapp 38:326-338, 2017. © 2016 Wiley Periodicals, Inc.

摘要

梗死周围皮质(PIC)是缺血性中风后长期生理变化的发生部位。传统上用于描绘梗死周围灰质(GM)的方法是使用体积欧几里得距离度量来定义其在梗死灶周围的范围。这种度量在皮质中风(即缺血导致皮质GM梗死的情况)中存在局限性,因为大脑皮质的血管化遵循皮质表面复杂的折叠拓扑结构。相反,我们使用沿皮质表面的测地距离度量将PIC细分为从梗死边界发出的等距环,并将这种新方法与欧几里得距离度量定义进行比较。这一过程在11例中风后2周及6个月随访时进行了[F - 18] - 氟马西尼([18 - F] - FMZ)正电子发射断层扫描(PET)的患者中完成。FMZ是一种PET放射性示踪剂,可特异性结合A型γ - 氨基丁酸(GABAA)受体的α亚基。此外,我们对PET图像进行了部分容积校正(PVC),以补偿随访图像中潜在的皮质变薄和长期神经元丢失。在初始PET图像中,与欧几里得梗死周围模型相比,中风未受影响和受影响半球之间的不可置换结合电位(BP)差异在测地模型中要大35%,在随访PET图像中要大48%。与未校正的PET图像相比,PVC后半球间BP差异大约要大17 - 20%。皮质中风梗死周围GM的PET研究应使用测地模型,并将PVC作为预处理步骤。《人类大脑图谱》38:326 - 338,2017年。©2016威利期刊公司。

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