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Change-Point Analysis of Survival Data with Application in Clinical Trials
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作者 Xuan Chen michael baron 《Open Journal of Statistics》 2014年第9期663-677,共15页
Effects of many medical procedures appear after a time lag, when a significant change occurs in subjects’ failure rate. This paper focuses on the detection and estimation of such changes which is important for the ev... Effects of many medical procedures appear after a time lag, when a significant change occurs in subjects’ failure rate. This paper focuses on the detection and estimation of such changes which is important for the evaluation and comparison of treatments and prediction of their effects. Unlike the classical change-point model, measurements may still be identically distributed, and the change point is a parameter of their common survival function. Some of the classical change-point detection techniques can still be used but the results are different. Contrary to the classical model, the maximum likelihood estimator of a change point appears consistent, even in presence of nuisance parameters. However, a more efficient procedure can be derived from Kaplan-Meier estimation of the survival function followed by the least-squares estimation of the change point. Strong consistency of these estimation schemes is proved. The finite-sample properties are examined by a Monte Carlo study. Proposed methods are applied to a recent clinical trial of the treatment program for strong drug dependence. 展开更多
关键词 CHANGE-POINT Problem Failure Rate Kaplan-Meier ESTIMATION Least SQUARES ESTIMATION Maximum LIKELIHOOD ESTIMATION Strong CONSISTENCY Survival Function
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Disruption of Drug Effects (Dopamine, Nicotine, Pilocarpine, κ-Opioid) in Planarians by UV Light
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作者 Robert B. Raffa Christopher S. Tallarida +6 位作者 Aruj Choudhry Nadia Sanni-Adam Sean McGonigle michael baron Zhuo L. Chen Scott M. Rawls Ronald J. Tallarida 《Pharmacology & Pharmacy》 2012年第3期358-363,共6页
Based on previous work, it has been hypothesized that the energetics of ultraviolet (UV) light disrupts effects induced by receptor-binding ligands. If this hypothesis is true, then UV light should (i) disrupt a broad... Based on previous work, it has been hypothesized that the energetics of ultraviolet (UV) light disrupts effects induced by receptor-binding ligands. If this hypothesis is true, then UV light should (i) disrupt a broad variety of endpoints and (ii) disrupt effects produced by ligands that bind to diverse receptor types. This was tested directly in the present study by using ligands selective for four different receptors (one ionotropic, three metabotropic) and three different behavioral endpoints. The selective dopamine D2 receptor antagonist (–)sulpiride (0.1 uM) dose-relatedly decreased spontaneous locomotor velocity, the selective nicotinic acetylcholine receptor agonist nicotine (1, 3, 5 mM) and the selective muscarinic acetylcholine receptor agonist pilocarpine (20, 30, 50 mM) induced seizure-like activity, and the selective-opioid receptor agonist U-50,488H (10 uM) produced physical dependence (manifested as abstinence-induced withdrawal) in planarian models. Each of these diverse ligand and receptor-mediated effects were attenuated by UV light (254 nm = 7.83 × 10–19 J = 4.89 eV). These findings provide further evidence that UV light disrupts ligand-receptor mediated interactions and that UV light might provide a useful tool for examining drug-receptor interactions. 展开更多
关键词 UV Light Drug-Receptor Interaction LOCOMOTOR Activity Seizure Physical Dependence PLANARIAN
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Get the Message Right
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作者 michael baron 《Beijing Review》 2008年第41期32-32,共1页
In recent months, China has been subjected to a lot of unfair and completely groundless criticism. Western newsmakers appear to be deriving some kind of sadistic pleasure out of the horrifying negative reports that po... In recent months, China has been subjected to a lot of unfair and completely groundless criticism. Western newsmakers appear to be deriving some kind of sadistic pleasure out of the horrifying negative reports that portray Chinese 展开更多
关键词 Get the Message Right
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