Service Central de Biophysique et Médecine Nucléaire, CHU Timone & Centre Européen de Recherche en Imagerie Médicale, CERIMED & Centre d'Investigation Clinique, CIC, INSERM, Université de la Méditerranée, Marseille F-13000, France.
Neuropsychologia. 2010 Jun;48(7):2174-81. doi: 10.1016/j.neuropsychologia.2010.04.009. Epub 2010 Apr 14.
To contribute to the identification of brain regions involved in déjà-vu, we studied the metabolic pattern of cortical involvement in patients with seizures of temporal lobe origin presenting with or without déjà-vu. Using voxel-based analysis of 18FDG-PET brain scans, we compared glucose metabolic rate of 8 patients with déjà-vu, 8 patients without déjà-vu, and 20 age-matched healthy subjects. Patients were selected after comprehensive non-invasive presurgical evaluation, including normal brain MRI and surface electroclinical features compatible with unilateral temporal lobe epilepsy (TLE). Patients with and without déjà-vu did not differ in terms of age, gender, epilepsy lateralization, epilepsy onset, epilepsy duration, and other subjective ictal manifestations. TLE patients with déjà-vu exhibited ipsilateral hypometabolism of superior temporal gyrus and of parahippocampal region, in the vicinity of perirhinal/entorhinal cortex, in comparison either to healthy subjects or to TLE patients without déjà-vu (p<0.05 FDR-corrected). By contrast, no difference was found between patient subgroups for hypometabolism of hippocampus and amygdala. At an individual-level, in comparison to healthy subjects, hypometabolism of both parahippocampal region and superior temporal gyrus was present in 7/8 patients with déjà-vu. Hippocampal metabolism was spared in 3 of these 7 patients. These findings argue for metabolic dysfunction of a medial-lateral temporal network in patients with déjà-vu and normal brain MRI. Within the medial temporal lobe, specific involvement of the parahippocampal region, often in the absence of hippocampal impairment, suggests that the feeling of familiarity during seizures greatly depends on alteration of the recognition memory system.
为了探究与“既视感”相关的大脑区域,我们研究了起源于颞叶的癫痫患者在出现或不出现“既视感”时大脑皮质代谢模式。我们通过使用 18FDG-PET 脑扫描的体素分析,对 8 名出现“既视感”的癫痫患者、8 名未出现“既视感”的癫痫患者和 20 名年龄匹配的健康对照者进行了比较。在综合的无创术前评估后选择患者,包括正常的脑 MRI 和与单侧颞叶癫痫(TLE)一致的表面电临床特征。有或没有“既视感”的患者在年龄、性别、癫痫侧化、癫痫发作起始、癫痫持续时间和其他主观癫痫发作表现方面没有差异。与健康对照者或未出现“既视感”的 TLE 患者相比,出现“既视感”的 TLE 患者同侧的颞上回和海马旁回代谢减少,且靠近旁嗅/内嗅皮质(p<0.05 FDR 校正)。相比之下,海马体和杏仁核的代谢减少在患者亚组之间没有差异。在个体水平上,与健康对照者相比,7/8 名出现“既视感”的患者双侧海马旁回和颞上回代谢减少。在这 7 名患者中的 3 名中,海马体代谢正常。这些发现表明,在出现“既视感”且脑 MRI 正常的患者中,内侧-外侧颞叶网络存在代谢功能障碍。在海马旁回内,海马旁回的特定参与,通常在没有海马损伤的情况下,表明癫痫发作时的熟悉感很大程度上取决于识别记忆系统的改变。