期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
Propofol Target-Controlled Infusion Modeling in Rabbits:Pharmacokinetic and Pharmacodynamic Analysis 被引量:2
1
作者 陈建颜 易明 +1 位作者 姚尚龙 张雪萍 《Journal of Huazhong University of Science and Technology(Medical Sciences)》 SCIE CAS 2016年第3期428-433,共6页
This study aimed to establish a new propofol target-controlled infusion(TCI) model in animals so as to study the general anesthetic mechanism at multi-levels in vivo. Twenty Japanese white rabbits were enrolled and ... This study aimed to establish a new propofol target-controlled infusion(TCI) model in animals so as to study the general anesthetic mechanism at multi-levels in vivo. Twenty Japanese white rabbits were enrolled and propofol(10 mg/kg) was administrated intravenously. Artery blood samples were collected at various time points after injection, and plasma concentrations of propofol were measured. Pharmacokinetic modeling was performed using Win Nonlin software. Propofol TCI within the acquired parameters integrated was conducted to achieve different anesthetic depths in rabbits, monitored by narcotrend. The pharmacodynamics was analyzed using a sigmoidal inhibitory maximal effect model for narcotrend index(NI) versus effect-site concentration. The results showed the pharmacokinetics of propofol in Japanese white rabbits was best described by a two-compartment model. The target plasma concentrations of propofol required at light anesthetic depth was 9.77±0.23 μg/m L, while 12.52±0.69 μg/m L at deep anesthetic depth. NI was 76.17±4.25 at light anesthetic depth, while 27.41±5.77 at deep anesthetic depth. The effect-site elimination rate constant(ke0) was 0.263/min, and the propofol dose required to achieve a 50% decrease in the NI value from baseline was 11.19 μg/m L(95% CI, 10.25–13.67). Our results established a new propofol TCI animal model and proved the model controlled the anesthetic depth accurately and stably in rabbits. The study provides a powerful method for exploring general anesthetic mechanisms at different anesthetic depths in vivo. 展开更多
关键词 propofol target-controlled infusion modeling rabbit pharmacokinetics pharmacodynamics anesthetic depth
下载PDF
异丙酚静脉麻醉下瑞芬太尼临床药效学研究 被引量:6
2
作者 肖彬 张兴安 +5 位作者 赵高峰 吴群林 徐波 陈宇珂 施冲 王捷 《实用医学杂志》 CAS 2007年第8期1140-1142,共3页
目的:以HR、MAP为药效学指标研究异丙酚静脉麻醉下瑞芬太尼的量-效关系。方法:24例异丙酚静脉麻醉下行择期手术的病人随机分为3组,麻醉平稳后分别以0.50μg/(kg·min)(Ⅰ组)、0.75μg/(kg·min)(Ⅱ组)、1.00μg/(kg·min)(... 目的:以HR、MAP为药效学指标研究异丙酚静脉麻醉下瑞芬太尼的量-效关系。方法:24例异丙酚静脉麻醉下行择期手术的病人随机分为3组,麻醉平稳后分别以0.50μg/(kg·min)(Ⅰ组)、0.75μg/(kg·min)(Ⅱ组)、1.00μg/(kg·min)(Ⅲ组)(n=8)持续输注瑞芬太尼。瑞芬太尼输注期间以及停药后30min内,间断抽取桡动脉血,应用HPLC-UV测定血浆瑞芬太尼浓度。记录HR、MAP变化,用药代-药效结合(PK-PD)模型计算瑞芬太尼药效学参数。结果:应用Sigmoid-Emax模型,以HR为效应指标,推算出Ke0为(0.439±0.203)/min,γ值为1.975±1.067,EC50为(4.883±2.051)μg/L,Emax为(36.4±18.5)次。以MAP为药效指标,得出Ke0为(0.463±0.241)/min,γ值为2.632±1.889,EC50为(4.372±1.850)μg/L,Emax为(0.359±0.198)%。不同输注速度组间药效学参数无统计学差异。HR、MAP拟合浓度效应的相关指数r2值分别为0.930、0.763(P<0.05)。结论:不同的输注速度不影响药效学参数,HR比MAP能更好地量化瑞芬太尼的药物效应。 展开更多
关键词 二异丙酚 瑞芬太尼 药效学 药代-药效结合模型 靶控输注
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部