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Reconnecting p-Value and Posterior Probability Under One- and Two-Sided Tests

机译:在一个双面测试下重新连接p值和后验概率

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As a convention, p-value is often computed in frequentist hypothesis testing and compared with the nominal significance level of 0.05 to determine whether or not to reject the null hypothesis. The smaller the p-value, the more significant the statistical test. Under noninformative prior distributions, we establish the equivalence relationship between the p-value and Bayesian posterior probability of the null hypothesis for one-sided tests and, more importantly, the equivalence between the p-value and a transformation of posterior probabilities of the hypotheses for two-sided tests. For two-sided hypothesis tests with a point null, we recast the problem as a combination of two one-sided hypotheses along the opposite directions and establish the notion of a "two-sided posterior probability," which reconnects with the (two-sided) p-value. In contrast to the common belief, such an equivalence relationship renders p-value an explicit interpretation of how strong the data support the null. Extensive simulation studies are conducted to demonstrate the equivalence relationship between the p-value and Bayesian posterior probability. Contrary to broad criticisms on the use of p-value in evidence-based studies, we justify its utility and reclaim its importance from the Bayesian perspective.
机译:作为惯例,P值通常在频率假设检测中计算,并与0.05的标称意义水平相比,确定是否拒绝零假设。 p值越小,统计测试越大。在非信息现有的分布下,我们在零假设的P值和贝叶斯后概率之间建立了等效关系,以进行单面测试,更重要的是,P值与假设的后验概率之间的等效相等双面测试。对于具有点NULL的双面假设测试,我们将问题重新定位为沿相反方向的两个单侧假设的组合,并建立“双面后验概率”的概念,该概念与(双面)重新连接)p值。与常见的信念相比,这样的等价关系呈现p值的明确解释数据支持空缺的强度。进行广泛的模拟研究以证明p值与贝叶斯后概率之间的等效关系。与对基于证据的研究在基于证据的研究中使用的广泛批判相反,我们为其效用证明了它的效用,并从贝叶斯视角撤回其重要性。

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