Division of Nuclear Medicine and Medical Imaging Center, University Hospital Leuven, Herestraat 49, 3000, Leuven, Belgium.
Eur J Nucl Med Mol Imaging. 2010 Jun;37(6):1148-55. doi: 10.1007/s00259-010-1405-5. Epub 2010 Mar 20.
Detection of hypometabolic areas on interictal FDG-PET images for assessing the epileptogenic zone is hampered by partial volume effects. We evaluated the performance of an anatomy-based maximum a-posteriori (A-MAP) reconstruction algorithm which combined noise suppression with correction for the partial volume effect in the detection of hypometabolic areas in patients with focal cortical dysplasia (FCD).
FDG-PET images from 14 patients with refractory partial epilepsy were reconstructed using A-MAP and maximum likelihood (ML) reconstruction. In all patients, presurgical evaluation showed that FCD represented the epileptic lesion. Correspondence between the FCD location and regional metabolism on a predefined atlas was evaluated. An asymmetry index of FCD to normal cortex was calculated.
Hypometabolism at the FCD location was detected in 9/14 patients (64%) using ML and in 10/14 patients (71%) using A-MAP reconstruction. Hypometabolic areas outside the FCD location were detected in 12/14 patients (86%) using ML and in 11/14 patients (79%) using A-MAP reconstruction. The asymmetry index was higher using A-MAP reconstruction (0.61, ML 0.49, p=0.03).
The A-MAP reconstruction algorithm improved visual detection of epileptic FCD on brain FDG-PET images compared to ML reconstruction, due to higher contrast and better delineation of the lesion. This improvement failed to reach significance in our small sample. Hypometabolism outside the lesion is often present, consistent with the observation that the functional deficit zone tends to be larger than the epileptogenic zone.
在发作间期 FDG-PET 图像上检测代谢低下区以评估致痫灶受到部分容积效应的影响。我们评估了一种基于解剖结构的最大后验(A-MAP)重建算法的性能,该算法结合了噪声抑制和部分容积效应校正,以检测局灶性皮质发育不良(FCD)患者的代谢低下区。
使用 A-MAP 和最大似然(ML)重建对 14 例难治性部分性癫痫患者的 FDG-PET 图像进行重建。在所有患者中,术前评估显示 FCD 代表了癫痫病变。评估了 FCD 位置与预定义图谱上的区域代谢之间的对应关系。计算了 FCD 与正常皮质的不对称指数。
使用 ML 重建检测到 14 例患者中有 9 例(64%)在 FCD 位置出现代谢低下,而使用 A-MAP 重建则检测到 10 例(71%)。在 14 例患者中有 12 例(86%)在 FCD 位置以外检测到代谢低下区,而使用 A-MAP 重建则检测到 11 例(79%)。使用 A-MAP 重建的不对称指数更高(0.61,ML 0.49,p=0.03)。
与 ML 重建相比,A-MAP 重建算法提高了 FDG-PET 图像上癫痫 FCD 的视觉检测,因为对比度更高,病变边界更清晰。在我们的小样本中,这种改善未达到显著性。病变以外的代谢低下通常存在,这与功能缺陷区往往大于致痫区的观察结果一致。