Javascript must be enabled to continue!
Prior Sample Size Extensions for Assessing Prior Impact and Prior-Likelihood Discordance
View through CrossRef
AbstractThis paper outlines a framework for quantifying the prior’s contribution to posterior inference in the presence of prior-likelihood discordance, a broader concept than the usual notion of prior-likelihood conflict. We achieve this dual purpose by extending the classic notion of prior sample size, M, in three directions: (I) estimating M beyond conjugate families; (II) formulating M as a relative notion that is as a function of the likelihood sample size k, M(k), which also leads naturally to a graphical diagnosis; and (III) permitting negative M, as a measure of prior-likelihood conflict, that is, harmful discordance. Our asymptotic regime permits the prior sample size to grow with the likelihood data size, hence making asymptotic arguments meaningful for investigating the impact of the prior relative to that of likelihood. It leads to a simple asymptotic formula for quantifying the impact of a proper prior that only involves computing a centrality and a spread measure of the prior and the posterior. We use simulated and real data to illustrate the potential of the proposed framework, including quantifying how weak is a ‘weakly informative’ prior adopted in a study of lupus nephritis. Whereas we take a pragmatic perspective in assessing the impact of a prior on a given inference problem under a specific evaluative metric, we also touch upon conceptual and theoretical issues such as using improper priors and permitting priors with asymptotically non-vanishing influence.
Oxford University Press (OUP)
Title: Prior Sample Size Extensions for Assessing Prior Impact and Prior-Likelihood Discordance
Description:
AbstractThis paper outlines a framework for quantifying the prior’s contribution to posterior inference in the presence of prior-likelihood discordance, a broader concept than the usual notion of prior-likelihood conflict.
We achieve this dual purpose by extending the classic notion of prior sample size, M, in three directions: (I) estimating M beyond conjugate families; (II) formulating M as a relative notion that is as a function of the likelihood sample size k, M(k), which also leads naturally to a graphical diagnosis; and (III) permitting negative M, as a measure of prior-likelihood conflict, that is, harmful discordance.
Our asymptotic regime permits the prior sample size to grow with the likelihood data size, hence making asymptotic arguments meaningful for investigating the impact of the prior relative to that of likelihood.
It leads to a simple asymptotic formula for quantifying the impact of a proper prior that only involves computing a centrality and a spread measure of the prior and the posterior.
We use simulated and real data to illustrate the potential of the proposed framework, including quantifying how weak is a ‘weakly informative’ prior adopted in a study of lupus nephritis.
Whereas we take a pragmatic perspective in assessing the impact of a prior on a given inference problem under a specific evaluative metric, we also touch upon conceptual and theoretical issues such as using improper priors and permitting priors with asymptotically non-vanishing influence.
Related Results
On Flores Island, do "ape-men" still exist? https://www.sapiens.org/biology/flores-island-ape-men/
On Flores Island, do "ape-men" still exist? https://www.sapiens.org/biology/flores-island-ape-men/
<span style="font-size:11pt"><span style="background:#f9f9f4"><span style="line-height:normal"><span style="font-family:Calibri,sans-serif"><b><spa...
Hubungan Perilaku Pola Makan dengan Kejadian Anak Obesitas
Hubungan Perilaku Pola Makan dengan Kejadian Anak Obesitas
<p><em><span style="font-size: 11.0pt; font-family: 'Times New Roman',serif; mso-fareast-font-family: 'Times New Roman'; mso-ansi-language: EN-US; mso-fareast-langua...
Determining the Relative Frequency of Bone Mineral Densitometry (BMD) Discordance and its Related Factors in the Spine-Femur Regions Using the DEXA Method
Determining the Relative Frequency of Bone Mineral Densitometry (BMD) Discordance and its Related Factors in the Spine-Femur Regions Using the DEXA Method
Osteoporosis is the most prevalent bone metabolic disease, which is diagnosed by the DEXA method. T-score discordance is noted by measuring DEXA in two different regions of the spi...
Apolipoprotein B/LDL-C discordance and lipoprotein(a) as predictors of ASCVD risk in genetically confirmed heterozygous familial hypercholesterolemia (HeFH): A Retrospective Cohort Study (2005–2023)
Apolipoprotein B/LDL-C discordance and lipoprotein(a) as predictors of ASCVD risk in genetically confirmed heterozygous familial hypercholesterolemia (HeFH): A Retrospective Cohort Study (2005–2023)
Abstract
Background
Heterozygous familial hypercholesterolemia (HeFH) is characterized by elevated low-density lipoprotei...
Persistent evidential discordance
Persistent evidential discordance
Successful replication is a hallmark of scientific truth. Discordant evidence refers to the situation where findings from different studies of the same phenomenon do not agree. Alt...
Even Star Decomposition of Complete Bipartite Graphs
Even Star Decomposition of Complete Bipartite Graphs
<p><span lang="EN-US"><span style="font-family: 宋体; font-size: medium;">A decomposition (</span><span><span style="font-family: 宋体; font-size: medi...
On the treatment of discordant detrital zircon U–Pb data
On the treatment of discordant detrital zircon U–Pb data
Abstract. Zircon U–Pb geochronology is a staple of crustal evolution studies and sedimentary provenance analysis. Constructing (detrital) U–Pb age spectra is straightforward for co...
On the treatment of discordant detrital zircon U–Pb data
On the treatment of discordant detrital zircon U–Pb data
Abstract. Detrital zircon U–Pb geochronology is a staple of sedimentary provenance analysis and crustal evolution studies. Constructing detrital age spectra is straightforward for ...

