A Challenge To The Assumption That Short- versus Long-Access Groups of Opioid Users Represent Distinct Phenotypes
This study used CENTERED clustering on oxycodone self-administration data to reveal that experimenter-assigned short-access and long-access groups comprise mixtures of distinct, naturally occurring opioid user types.
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The paper reanalyzed a prior rat study in which male Sprague Dawley rats self-administered oxycodone under experimentally imposed short-access (3h/day) versus long-access (9h/day) conditions, to test whether these groups reflect distinct opioid user phenotypes. Using a centered cumulative-experience, normalized time-effect model and principal component analysis–gaussian mixture clustering, the authors assessed all animals regardless of assigned group to see whether experimenter-defined categories contained mixtures of naturally occurring opioid user types. They found that the short- and long-access groups each comprised mixtures of different opioid user types, challenging the assumption that differential access cleanly maps to distinct phenotypes. The study’s main limitation is that it relies on reanalysis of a specific oxycodone self-administration dataset in rats, and no endometriosis/adenomyosis mechanisms or patient data are discussed. The paper does not explicitly discuss endometriosis or adenomyosis; it was included in the corpus via a keyword match in the upstream search index.
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- last seen: 2026-05-20T01:45:00.602351+00:00