Saletu B, Anderer P, Kinsperger K, Grünberger J
Methods Find Exp Clin Pharmacol. 1987 Jun;9(6):385-408.
Multi-lead analysis of drug-induced changes in human brain function as monitored by the scalp-recorded electroencephalogram (EEG) and subsequent imaging of topographic pharmaco-EEG maps has become possible and practical with the advent of modern mini- and micro-computers. The present paper gives a survey about topographic analyses of pharmaco-EEG data obtained in systematic double-blind, placebo-controlled studies in normal healthy volunteers involving representative drugs of 5 different psychopharmacological classes, such as neuroleptics (chlorprothixene), antidepressants (imipramine), tranquilizers (diazepam), psychostimulants (caffeine), and antihypoxidotics/nootropics (pyritinol). The determination of cerebral bioavailability utilizing time- and dose-efficacy relations, as well as the evaluation of bioequipotency of different formulations of compounds is shown. Topographic pharmaco-EEG seems not only to confirm our previous knowledge that quantitative analysis of the human EEG in combination with certain statistical procedures ("quantitative pharmaco-EEG") is a valuable method to determine if, how, when and at which dosage a drug will be centrally effective, but also to have the potential to show effects of psychotropic drugs on the target organ--the human brain--which could not be previously picked up by single lead recordings. Topographic pharmaco-EEG imaging can be viewed as an enlargement of our armamentarium to better understand the mode of action of psychotropic drugs in human neuropsychopharmacology, as well as to monitor and (eventually) predict therapeutic efficacy in patients.
随着现代微型和微型计算机的出现,通过头皮记录脑电图(EEG)监测药物引起的人类脑功能变化并随后对脑电地形图进行成像的多导联分析已成为可能且切实可行。本文综述了在正常健康志愿者中进行的系统双盲、安慰剂对照研究中获得的脑电地形图数据的分析情况,这些研究涉及5种不同精神药理学类别的代表性药物,如抗精神病药(氯丙硫蒽)、抗抑郁药(丙咪嗪)、镇静剂(地西泮)、精神兴奋剂(咖啡因)以及抗缺氧药/益智药(吡硫醇)。展示了利用时间和剂量-效应关系确定脑生物利用度以及评估化合物不同制剂的生物等效性。脑电地形图似乎不仅证实了我们之前的认识,即结合某些统计程序对人类脑电图进行定量分析(“定量脑电地形图”)是确定药物是否、如何、何时以及以何种剂量产生中枢效应的有价值方法,而且还有可能显示精神药物对靶器官——人类大脑——的作用,而这些作用是以前单导联记录无法检测到的。脑电地形图成像可被视为我们手段的扩展,以更好地理解精神药物在人类神经精神药理学中的作用模式,以及监测并(最终)预测患者的治疗效果。