Knight R T, Scabini D, Woods D L, Clayworth C
Department of Neurology, University of California, Davis 94553.
Electroencephalogr Clin Neurophysiol. 1988 Dec;70(6):499-509. doi: 10.1016/0013-4694(88)90148-4.
We recorded auditory evoked potentials (AEPs) to 1 kHz tone bursts in controls and patients with unilateral lesions centered in posterior superior temporal gyrus and adjacent caudal inferior parietal lobule (STG) or in rostral inferior parietal lobule (IPL). Controls generated a vertex maximal N94 (N1b) and P200 (P2) and additional P45, N78 and N127 temporal AEP components (P45, N1a, N1c). Similar to prior reports, in controls the N1a was most prominent over the left temporal lobe and the P45 was largest over the right temporal lobe consistent with behavioral and anatomical data indicating differential organization of left and right human temporal lobe. The N1c was recorded equally from both T3 and T4 electrodes and was enhanced in the temporal site contralateral to the ear of stimulation. The patient groups had differential effects on AEPs. Unilateral STG lesions resulted in bilateral reductions of the N1b and P45 and marked unilateral reductions of the N1a and N1c over lesioned hemisphere. IPL lesions resulted in bilateral but non-significant reductions of the N1b and N1c. The scalp topography results in normal subjects combined with the effects of unilateral STG lesions provide supportive evidence that the temporal maximal components of the human AEP (P45, N1a, N1c) are generated by radially oriented neuronal dipole sources located in STG. The bilateral reduction of the N1b vertex response by unilateral STG lesions is compatible with a unilateral disruption of a vertically oriented dipole situated in the posterior superior temporal plane. The results emphasize the critical role of the superior temporal plane and lateral superior temporal gyrus in generation of human long latency AEPs.
我们记录了对照组以及单侧病变位于颞上回后部和相邻尾侧顶下小叶(STG)或嘴侧顶下小叶(IPL)的患者对1千赫兹短纯音的听觉诱发电位(AEP)。对照组产生了顶点最大的N94(N1b)和P200(P2)以及额外的P45、N78和N127颞叶AEP成分(P45、N1a、N1c)。与先前的报告相似,在对照组中,N1a在左侧颞叶最为突出,P45在右侧颞叶最大,这与行为学和解剖学数据一致,表明人类左右颞叶的组织存在差异。N1c从T3和T4电极记录到的幅度相同,并且在刺激耳对侧的颞叶部位增强。患者组对AEP有不同的影响。单侧STG病变导致N1b和P45双侧降低,以及病变半球上N1a和N1c明显单侧降低。IPL病变导致N1b和N1c双侧但无显著降低。正常受试者的头皮地形图结果与单侧STG病变的影响相结合,提供了支持性证据,表明人类AEP的颞叶最大成分(P45、N1a、N1c)是由位于STG的径向排列的神经元偶极源产生的。单侧STG病变导致N1b顶点反应双侧降低,这与位于颞上回后部平面的垂直排列偶极的单侧破坏相一致。结果强调了颞上回后部平面和颞上回外侧在人类长潜伏期AEP产生中的关键作用。