Díaz F, Zuron M
Facultade de Psicoloxía, Departamento de Psicoloxía Clínica e Psicobioloxía, Universidade de Santiago de Compostela, Spain.
Electroencephalogr Clin Neurophysiol. 1995 Nov;96(6):526-37. doi: 10.1016/0013-4694(95)00080-i.
Short-, middle- and long-latency auditory evoked potentials (SAEPs, MAEPs and LAEPs) were examined in 12 subjects with Down's syndrome and in 12 age-matched normal subjects. In comparison with the normal subjects, Down subjects showed shorter latencies for SAEP peaks II, III, IV and V (and correspondingly shorter interpeak intervals I-II and I-III) so long as stimulus intensity was at least 45 dB SL. The MAEP peak Na had a longer latency in Down subjects than in normal subjects, but not the Pa latency. In passive oddball experiments for LAEPs, the latencies of all components from N1 to P3 were progressively longer in Down subjects, and the N2-P3 amplitude increased slightly between the first and fourth blocks of stimuli (whereas in the normal subjects it decreased). These alterations in auditory evoked potentials, which may correlate with cerebral alterations in organization and responsiveness responsible for deficient information processing, may constitute an electrophysiological pattern that is characteristic of Down's syndrome.
对12名唐氏综合征患者和12名年龄匹配的正常受试者进行了短潜伏期、中潜伏期和长潜伏期听觉诱发电位(SAEPs、MAEPs和LAEPs)检测。与正常受试者相比,只要刺激强度至少为45 dB SL,唐氏综合征患者的SAEP峰II、III、IV和V的潜伏期较短(相应地,峰间间期I-II和I-III也较短)。唐氏综合征患者的MAEP峰Na潜伏期比正常受试者长,但Pa潜伏期无差异。在LAEPs的被动oddball实验中,唐氏综合征患者从N1到P3的所有成分潜伏期逐渐延长,并且在刺激的第一组和第四组之间N2-P3波幅略有增加(而正常受试者则降低)。听觉诱发电位的这些改变可能与负责信息处理不足的大脑组织和反应性改变相关,可能构成唐氏综合征的一种电生理模式。