Tzabazis A, Ihmsen H, Schywalsky M, Schwilden H
Klinik für Anästhesiologie, Universität Erlangen-Nürnberg, Krankenhausstrasse 12, D-91054 Erlangen, Germany.
Br J Anaesth. 2004 Apr;92(4):564-9. doi: 10.1093/bja/aeh102. Epub 2004 Feb 20.
Based on previous pharmacokinetic and pharmacodynamic studies, we have developed an EEG-controlled closed-loop system for the i.v. hypnotic agent propofol in rats.
Seven adult male Sprague-Dawley rats (weight 423-584 g) were included in the study. EEG was recorded with occipito-occipital needle electrodes and the EEG power spectrum was estimated. The median frequency (MEF) was extracted from the power spectrum and was modified MEF (mMEF) to account for the occurrence of spikes and burst suppression patterns in the EEG. Propofol infusion was controlled by a model-based adaptive control algorithm to maintain a set point of mMEF=3.0 (sd 0.5) Hz. The performance of the feedback system was characterized by the median performance error MDPE=median[(mMEF-set point)/set point] and the median absolute performance error (MDAPE). The effective therapeutic infusion (ETI) to maintain the set point was determined from the resulting infusion rates.
In all rats a feedback period of 90 min could be performed. Mean MDPE was 1.2 (se 0.4)% and MDAPE was 13.9 (0.3)%. The ETI was 0.73 (sd 0.20) mg kg(-1) min(-1). Mean arterial pressure before propofol infusion was 148 (14) mm Hg, with the lowest value during closed-loop infusion being 110 (20) mm Hg.
The feedback system presented here may be a useful tool not only for automatic drug control to maintain a defined hypnotic effect but may also be a powerful device in pharmacological studies such as the determination of dose requirements or the assessment of drug-drug interactions.
基于先前的药代动力学和药效学研究,我们开发了一种用于大鼠静脉注射催眠药丙泊酚的脑电图控制闭环系统。
七只成年雄性Sprague-Dawley大鼠(体重423 - 584克)被纳入研究。用枕-枕针电极记录脑电图并估计脑电图功率谱。从中提取中位数频率(MEF),并将其修改为mMEF以考虑脑电图中尖峰和爆发抑制模式的出现。丙泊酚输注由基于模型的自适应控制算法控制,以维持mMEF = 3.0(标准差0.5)Hz的设定点。反馈系统的性能通过中位数性能误差MDPE =中位数[(mMEF - 设定点)/设定点]和中位数绝对性能误差(MDAPE)来表征。根据所得输注速率确定维持设定点的有效治疗输注量(ETI)。
在所有大鼠中均可以进行90分钟的反馈期。平均MDPE为1.2(标准误0.4)%,MDAPE为13.9(0.3)%。ETI为0.73(标准差0.20)毫克·千克⁻¹·分钟⁻¹。丙泊酚输注前的平均动脉压为148(14)毫米汞柱,闭环输注期间的最低值为110(20)毫米汞柱。
此处介绍的反馈系统可能不仅是用于自动药物控制以维持确定的催眠效果的有用工具,而且在药理学研究中,如确定剂量需求或评估药物相互作用方面,也可能是一种强大的设备。