Semah Franck
Nuclear Medicine Dpt. SHFJ, CEA, 4, place du Général-Leclerc, 91401 Orsay, France.
Epileptic Disord. 2002 Sep;4 Suppl 1:S41-9.
Positron emission tomography (PET) may be used to map regional cerebral glucose metabolism using 18F-deoxyglucose-PET in patients with partial epilepsy. An area of reduced glucose metabolism, that is commonly more extensive than the underlying anatomical abnormality, is reported in most of the patients with medically refractory partial epilepsy. These functional changes are useful in the delineation of the epileptogenic focus prior to surgery. Nevertheless, in patients with mesial temporal lobe epilepsy (MTLE) without mass lesion, the hypometabolism involves a large area of the temporal lobe, including the mesial structures, the temporal pole and part of the lateral temporal cortex. In such patients with MTLE, subcortical structures and extratemporal lobe areas are also often hypometabolic. The reasons for this large hypometabolism remain debated. In MTLE patients, the most severe hypometabolism is found in the temporo-polar region. The clinical significance of this temporo-polar hypometabolism is unknown. The pathophysiology of interictal hypometabolism probably involves several mechanisms, such as neuronal loss, deafferentation, postictal depression, and others epilepsy-related phenomena. The relationship between interictal temporo-polar hypometabolism and seizure onset or seizure spread remain speculative.
正电子发射断层扫描(PET)可用于通过18F-脱氧葡萄糖PET对部分性癫痫患者的局部脑葡萄糖代谢进行成像。在大多数药物难治性部分性癫痫患者中,均报告存在葡萄糖代谢降低的区域,该区域通常比潜在的解剖学异常范围更广。这些功能变化有助于在手术前确定致痫灶。然而,在没有占位性病变的内侧颞叶癫痫(MTLE)患者中,代谢减低涉及颞叶的大片区域,包括内侧结构、颞极和部分外侧颞叶皮质。在这类MTLE患者中,皮质下结构和颞叶外区域也常出现代谢减低。这种大面积代谢减低的原因仍存在争议。在MTLE患者中,颞极区域的代谢减低最为严重。这种颞极代谢减低的临床意义尚不清楚。发作间期代谢减低的病理生理学可能涉及多种机制,如神经元丢失、传入神经阻滞、发作后抑郁以及其他与癫痫相关的现象。发作间期颞极代谢减低与癫痫发作起始或传播之间的关系仍属推测。