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Dose-Time-Response Cumulative Multinomial Generalized Linear Model

机译:剂量-时间响应累积多项式广义线性模型

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摘要

In toxicological and pharmaceutical experiments, a type of quantal bioassay experiment is designed in which a response, such as mortality, in a group of animals is recorded over time points under different dose levels in the course of the experiment. The application of the typical logit and probit analyses is no longer valid in this situation because it neglects the dependency on time and also the possible interaction of time and dose concentration on the response in the experiment. In this paper, a dose-time-response model is proposed for this type of experiment and a cumulative multinomial generalized linear model that incorporates time and the other experimental conditions as covariates is developed by the theory of maximum likelihood estimation. Both the point estimator and confidence bands for ED_(50)(t), the concentration of a toxicant that will kill 50% of the animals by a specific time, t; as well as LT_(50)(d), the time to 50% mortalities for a specific concentration, d, is then formulated in closed form from the newly proposed dose-time-response model. Finally, the newly proposed model is considered for a real data set to demonstrate the application.
机译:在毒理学和药物学实验中,设计了一种定量生物测定实验,其中在实验过程中,记录了一组动物在不同剂量水平下随时间点的响应,例如死亡率。在这种情况下,典型的对数和概率分析的应用不再有效,因为它忽略了对时间的依赖以及时间和剂量浓度对实验响应的可能相互作用。在本文中,针对这种类型的实验提出了剂量-时间-响应模型,并通过最大似然估计理论建立了将时间和其他实验条件作为协变量的累积多项式广义线性模型。 ED_(50)(t)的点估计量和置信度带都是在特定时间t会杀死50%的动物的有毒物质的浓度;与LT_(50)(d)一样,然后从新提出的剂量时间响应模型以封闭形式制定特定浓度d达到50%死亡率的时间。最后,新提出的模型被考虑用于真实数据集以证明其应用。

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