Anderer P, Pascual-Marqui R D, Semlitsch H V, Saletu B
Clinical Psychophysiology, Department of Psychiatry, University of Vienna, Austria.
Electroencephalogr Clin Neurophysiol. 1998 Mar;108(2):160-74. doi: 10.1016/s0168-5597(97)00080-4.
The P300 event-related potential (ERP) is considered to be closely related to cognitive processes. In normal aging, P300 scalp latencies increase, parietal P300 scalp amplitudes decrease and the scalp potential field shifts to a relatively more frontal distribution. Based on ERPs recorded in 172 normal healthy subjects aged between 20 and 88 years in an auditory oddball paradigm, the effects of age on the electrical activity in the brain corresponding to N1 and P300 components were estimated by means of low resolution electromagnetic tomography (LORETA). This distributed approach directly computes a unique 3-dimensional electrical source distribution by assuming that neighbouring neurons are simultaneously and synchronously active. N1 LORETA generators, located predominantly in both auditory cortices and also symmetrically in prefrontal areas, increased with advancing age for standards but remained stable for targets. P300 LORETA generators, located symmetrically in the prefrontal cortex, in the parieto-occipital junction and in the inferior parietal cortex (supramarginal gyrus) and medially in the superior parietal cortex, were differentially affected by age. While age did not affect parieto-occipital sources, superior parietal and right prefrontal sources decreased pronouncedly. Thus, in normal aging, P300 current density decreased in regions were a fronto-parietal network for sustained attention was localized.
P300事件相关电位(ERP)被认为与认知过程密切相关。在正常衰老过程中,P300头皮潜伏期延长,顶叶P300头皮波幅降低,头皮电位场向相对更靠前的分布转移。基于在172名年龄在20至88岁之间的正常健康受试者中,采用听觉Oddball范式记录的ERP,利用低分辨率电磁断层成像(LORETA)估计年龄对与N1和P300成分相对应的大脑电活动的影响。这种分布式方法通过假设相邻神经元同时且同步活动,直接计算出唯一的三维电源分布。N1的LORETA发生器主要位于双侧听觉皮层,也对称位于前额叶区域,对于标准刺激随年龄增长而增加,但对于目标刺激保持稳定。P300的LORETA发生器对称位于前额叶皮层、顶枕交界处和顶下皮层(缘上回),并在内侧位于顶上皮层,受年龄的影响存在差异。虽然年龄不影响顶枕源,但顶上和右侧前额叶源明显减少。因此,在正常衰老过程中,持续注意力的额顶网络所在区域的P300电流密度降低。