- Research Article
- 10.1016/j.jaa.2026.101748
Costly signaling with ceramic tablewares in Spanish colonial America
- Jun 01, 2026
- Journal of Anthropological Archaeology
- Krista L Eschbach + 1 more +1
Publications from 2021 to 2026
Showing 10 of 15,655 papers
Costly signaling with ceramic tablewares in Spanish colonial America
SynMicrodata: An R package for generating synthetic microdata via a nonparametric Bayesian approach
The effect of political connections on COVID-19 stimulus
Optimization of Subsecond Estradiol Detection through Analysis of Surface-Analyte Interactions.
Subsecond neurochemical signaling is the fastest and one of the most diverse forms of intercellular communication employed along the neuro-immune-endocrine axis; consequently, spatiotemporally resolved approaches with high sensitivity and selectivity tailored to specific analytes are required for adequate monitoring. However, many existing electrochemical approaches are optimized solely towards catecholamine and indolamine detection, leaving a wide array of structurally diverse neuroregulators at a disadvantage with limited detection capability. Here, we use estradiola fast-signaling neurosteroid vital for neuroprotection that has proven difficult to detect with existing methodsas a model target analyte for optimizing direct electrochemical detection at carbon surfaces. We take a two-pronged approach to optimizing estradiol detection by examining the electrode-analyte interface from the perspective of both the carbon surface and the target molecule. We first establish the surface characteristics of diverse carbon fibers, then examine estradiol's electrochemical behavior at each surface. Finally, we determine the contributions of estradiol's structure to specific adsorption, elucidating subtle structural considerations to analyte-specific tailoring of carbon electrodes. By taking this multi-perspective approach, we develop a thorough understanding of the interactions between carbon sensing surfaces and estradiol for improved sensitivity and selectivity. Moreover, our approach is applicable to other neglected neurochemicals that have proven challenging to detect. This work creates a potentially broadly applicable roadmap for customizing direct monitoring at carbon surfaces through a tailored approach to optimizing the electrode-analyte interface.
Read moreRecurrent Stroke in Patients With Cryptogenic Stroke and Left Ventricular Injury: The Cardiac Abnormalities in Stroke Prevention and Recurrence (CASPR) Study.
Left ventricular (LV) dysfunction is a potential cardioembolic source of ischemic stroke, but its role in recurrent stroke risk and treatment response remains unclear. We explore whether LV injury associates with the risk of recurrent stroke and modifies the association between anticoagulation and stroke recurrence using real-world data. We performed a multicenter, retrospective study of Cardiac Abnormalities in Stroke Prevention and Recurrence cohort across 27 US sites. Patients with LV ejection fraction ≥20% were included. LV injury, defined as LV ejection fraction 20% to 40% and wall motion abnormality, was the primary exposure and treatment effect modifier. The treatment of interest was anticoagulant versus antiplatelet therapy. The composite outcome included recurrent stroke, major bleeding, or death. Outcomes were evaluated using unadjusted and inverse probability weighting adjusted Cox proportional hazards models, with treatment effect modification tested by LV injury status. Among 2685 patients enrolled, 2328 with complete data were analyzed (median age, 65 years; 49.8% female; median follow-up, 1.6 years). LV injury was present in 310 patients (13.3%). Overall, 535 events occurred: 258 recurrent ischemic strokes, 28 hemorrhagic strokes, 67 major hemorrhages, and 256 deaths. LV injury was associated with a higher unadjusted risk of the primary outcome (hazard ratio [HR], 1.51 [95% CI, 1.21-1.87]), though nonsignificant after inverse probability weighting adjustment (adjusted HR, 1.29 [95% CI, 0.97-1.70]). In the LV injury subgroup, anticoagulation versus antiplatelet therapy was associated with a lower risk of the primary outcome (adjusted HR, 0.24 [95% CI, 0.10-0.59]), relative to the non-LV injury subgroup (adjusted HR, 1.28 [95% CI, 0.83-1.95]; p[LV-interaction], 0.001). Similar interactions were seen for EF 20% to 40% (versus >40%; adjusted HR, 0.19 [95% CI, 0.04-0.86]; p[LV-interaction], 0.001) and wall motion abnormality (versus no wall motion abnormality; adjusted HR, 0.33 [95% CI, 0.15-0.73]). After cryptogenic stroke, anticoagulation in those with LV injury was associated with lower rates of recurrent stroke, major bleeding, and death. These findings warrant confirmation in a dedicated randomized controlled trial. URL: https://www.clinicaltrials.gov; Unique identifier: NCT06398366.
Read moreTerrestrial dominance of sedimentary organic carbon sink in the Antarctic Weddell Sea since MIS 5
The association of gestational phthalate exposure with social skills and problem behaviors in adolescents.
Tracing paleoenvironmental change across the Permian-Triassic transition in Colorado
Infection stress and mate assessment in wolf spiders: female mate choice varies with sensory mode of male courtship
Detection of the Heterozygous Recurrent MAX p.(Arg60Gln) Variant in Two Females Confirms and Expands the Phenotypic Spectrum of Polydactyly-Macrocephaly Syndrome.
A recurrent de novo germline variant in the MAX gene, p.(Arg60Gln), has recently been associated with polydactyly-macrocephaly syndrome in six unrelated individuals. Affected individuals presented with progressive macrocephaly, post-axial polydactyly, developmental delay, autistic features and a series of craniofacial, brain, cardiac, ocular, and renal anomalies. Here, we describe two unrelated female probands with the known recurrent MAX variant, c.179G>A p.(Arg60Gln), who presented with the emerging phenotypes of the MAX-associated syndrome. We also propose that genitourinary abnormalities, including Mayer-Rokitanski-Kuster-Hauser syndrome in one individual, may constitute an expansion of the known phenotype. These findings contribute to the current knowledge regarding the phenotypic spectrum of MAX-associated polydactyly-macrocephaly syndrome.
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