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首页> 外文期刊>Neurology: Official Journal of the American Academy of Neurology >In vivo hippocampal glucose metabolism in mesial temporal lobe epilepsy.
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In vivo hippocampal glucose metabolism in mesial temporal lobe epilepsy.

机译:体内海马在中央的葡萄糖代谢颞叶癫痫。

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BACKGROUND: The appearance of decreased 2-[(18)F]fluoro-2-deoxy-D-glucose (FDG) uptake in the mesial temporal region in temporal lobe epilepsy may simply reflect loss of gray matter due to hippocampal atrophy. Increased partial volume effects due to atrophic hippocampi may further increase appearance of hypometabolism. METHODS: The authors used a combination of MRI-PET coregistration, with MRI-based gray matter segmentation, and partial volume correction to improve the examination of hippocampal specific glucose uptake in FDG PET. The goal was to determine 1) if relative mesial temporal hypometabolism is an artifact of gray matter (hippocampal) atrophy, 2) whether hippocampal metabolism correlates with atrophy evaluated on MRI, and 3) if MRI-based partial volume correction influences measurement of hippocampal metabolic-volume relationships, including epilepsy lateralization. RESULTS: Findings showed that ipsilateral hippocampi of mesial temporal lobe epilepsy (MTLE) are relatively hypometabolic per unit of gray matter volume, and that hippocampal metabolism directly correlates with hippocampal volume. Specifically, partial volume corrected hippocampal metabolism correlated strongly (r = 0.613, p < 0.001) with hippocampal volume. Without partial volume correction, a weaker, but still significant, correlation was present (r = 0.482, p < 0.001). Degree of asymmetry was consistently greater and provided higher sensitivity of lateralization with partial volume vs non-partial volume corrected metabolic measurements. CONCLUSIONS: Although, decreased metabolism may occur in the absence of neuronal cell loss, hippocampal atrophy and presumed degree of neuronal cell loss appears to be a primary factor involved in the cause of decreased metabolism in epileptogenic hippocampi. Partial volume correction is recommended for optimal interpretation of hippocampal structure and function relationships.
机译:背景:减少的外观2 - [(18) F] fluoro-2-deoxy-D-glucose (FDG)吸收颞叶内侧颞区癫痫可能仅仅反映灰质的损失由于海马萎缩。由于萎缩性海马体积的影响进一步提高代谢减退。方法:作者结合使用mri pet coregistration, mri灰色分割问题,和部分体积修正来提高考试的海马特定葡萄糖吸收壁的宠物。我们的目标是确定1)如果相对中间的时间代谢减退是灰色的工件物质(海马)萎缩,2)海马代谢与萎缩在MRI评估,3)如果MRI部分体积校正测量的影响海马metabolic-volume关系,包括癫痫偏侧性。结果表明,同侧海马内侧颞叶癫痫(MTLE)相对单位灰质的觉直接体积,海马代谢与海马体积。部分体积修正海马代谢强烈相关(r = 0.613, p < 0.001)海马体积。修正,较弱,但仍然重要,相关性是存在的(r = 0.482, p < 0.001)。不对称度一直和大提供更高灵敏度的偏侧性与部分体积和公正不阿的体积纠正代谢测量。尽管如此,新陈代谢会发生在下降缺乏神经细胞丧失、海马神经细胞的萎缩和假定的程度的损失似乎是一个主要因素参与由癫痫引起的代谢降低的原因海马。推荐最佳的解释海马结构与功能的关系。

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