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333 results for “function composition”

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zenodo36/100

Bioenergy cropping systems shape ant community composition and functional roles

<p>R code and partial data for Haan, Helms, &amp; Landis 2023, Bioenergy cropping systems shape ant community composition and functional roles, to be published in Frontiers in Conservation Science. The ant species list we use to generate the species matrix was uploaded previously (10.5281/zenodo.8215581) in association with another manuscript (Haan et al. 2023, Science Advances, Contrasting effects of bioenergy crops on biodiversity). Therefore here we include a small table with trait information for each species along with the R code used specifically for this manuscript.</p>

opencc-by-4.0Nov 2023View details →
dryad36/100

Diversity, species coexistence, and functional composition patterns in subtropical Atlantic Forests invaded by non-native trees

<ol> <li>Biological invasions are a major environmental challenge today. Interactions between invasive and native species can significantly shape community structures, influencing co-existence, diversity, and functional composition of species. The subtropical Atlantic forest in southern Brazil, a recognized biodiversity hotspot, provides a unique setting to study these interactions, given its vulnerability to alien tree invasions. </li> <li>Our study sought to elucidate the impacts of such invasions on this fragile ecosystem by addressing key questions: 1) How are tree community diversity patterns affected by the abundance of invading alien tree species? 2) What are the patterns of coexistence between native and alien invasive trees? 3) Is the functional composition of the forests altered by the abundance of invasive trees?</li> <li>To address these questions, we compiled data on the abundance and functional traits of native and invasive trees. We determined the diversity patterns and functional composition of plots with different degrees of invasion. These data were analyzed using Generalized Linear Mixed Models, Principal Component Analysis, and a coexistence index.</li> <li>In plots with a higher abundance of invasive trees, there was a significant decrease in the taxonomic and functional richness of native species. Furthermore, we observed that invasive alien trees coexisted with native species, and as the abundance of invasive trees increased, the native community weighted mean (CWM) of the leaf area and specific leaf area decreased.</li> <li>In conclusion, within the subtropical Atlantic forest areas of southern Brazil, our findings highlight that the abundance of invasive trees adversely affects the taxonomic and functional richness of native species. Furthermore, while invasive alien trees were found to coexist with native species, increased invasive abundance corresponded to a reduction in the leaf area and the specific leaf area of the native community.</li> </ol>

opencc-zeroNov 2023View details →
dryad36/100

Data from: Gut microbiota composition and functionality are associated with REM sleep duration and continuous glucose levels

<p><span><strong>Context</strong>:</span><span> Sleep disruption is associated with poorer glucose metabolic control and altered gut microbiota in animal models.</span></p> <p><span><strong>Objective</strong>:</span><span> We aimed to evaluate the possible links among REM sleep duration, continuous glucose levels, and gut microbiota composition.</span></p> <p><strong><span>Design</span></strong><span>: This is an observational, prospective, real-life, cross-sectional case-control study. </span></p> <p><span><strong>Setting</strong>: </span><span>Tertiary Hospital recruiting healthy volunteers.</span></p> <p><span><strong>Patients or Other Participants</strong>:</span><span> One-hundred and eighteen (60 with obesity), middle-aged (39.1-54.8) subjects.</span></p> <p><span><strong>Intervention(s)</strong>:</span><span> Glucose variability and REM sleep duration were assessed by 10-day continuous glucose monitoring (CGM) (Dexcom G6®) and wrist-actigraphy (Fitbit Charge 3®), respectively</span></p> <p><span><strong>Main Outcome Measure(s)</strong>:</span><span>. Glucose variability was evaluated through standard deviation (SD), coefficient of variation (CV), and interquartile range (IQR). The percentage of time in range (% TIR), 126-139 mg/dL (TIR2), and 140-199 mg/dL (TIR3) were calculated. Shotgun metagenomics sequencing was applied to study gut microbiota taxonomy and functionality. </span></p> <p><span><strong>Results</strong>:</span><span> Increased glycemic variability (SD, CV, and IQR) was observed among subjects with obesity in parallel to increased % TIR2 and % TIR3. REM sleep duration was independently associated with the % TIR3 (β=-0.339; p&lt;0.001) and glucose variability (SD, β=-0.350; p&lt;0.001). Microbial taxa from Christensenellaceae family (Firmicutes phylum) were positively associated with REM sleep and negatively with glucose continuous monitoring levels, while bacteria from Enterobacteriacea family and bacterial functions involved in iron metabolism showed opposite associations.  </span></p> <p><span><strong>Conclusions</strong>:</span><span> Decreased REM sleep duration was independently associated with a worse glucose profile. The associations of species from Christensenellaceae and Enterobacteriaceae families with REM sleep duration and continuous glucose values suggest an integrated picture of metabolic health.</span></p>

opencc-zeroFeb 2024View details →
dryad36/100

Variation in functional composition of reef fishes along a tropical to temperate gradient

<p><strong>Aims</strong><br>Transformations of species and functional compositions on subtropical reefs are ongoing due to poleward range shifts of some tropical species, with largely unknown consequences to ecosystem functioning. Trait-based approaches are powerful tools to quantify such changes. Here, we evaluated changes in the trait composition of coral-associated fish communities along a tropical to a temperate environmental gradient of ca.1400 km in southern Japan with abundance-weighted trait expression to assess how trait complexity changes with increasing latitude.</p> <p><strong>Location</strong><br>Ryukyu Islands and southern Pacific coast of Japan</p> <p><strong>Taxon</strong><br>Reef fish</p> <p><strong>Methods</strong><br>We tested for shifts in trait space and functional redundancy, based on five morphological, life history, and behavioural traits: maximum length, pelagic larval duration, trophic level, substrate preference, and reproductive mode. Our trait database was coded with two approaches, first, by attributing a single value to each trait per species, and second, by fuzzy coding that allows more than one value per trait and hence considers some intraspecific trait variation.</p> <p><strong>Results</strong><br>We found a reduction in specialist habitat traits (coral substrate preference, nesters, herbivores) and an increase in generalist traits (predators) with increasing latitude, along with a contraction in trait space from tropical to temperate reefs. Functional redundancy declined with increasing latitude. These trends were closely linked with latitudinal gradients in temperature, along with changes in other environmental factors such as turbidity and photosynthetically active radiation.</p> <p><strong>Main Conclusion</strong><br>Functional turnover and contractions are thus likely due to the marginal conditions for coral-associated fishes at higher latitudes, favouring generalist species, whereas increased resources at lower latitudes favour high redundancy and niche partitioning. Accounting for intraspecific trait variation indicated the same trends but highlighted increased functional vulnerability across all sites. We show that trait complexity in coral-associated fish communities decreases from tropical to temperate reefs, highlighting the reduced functional scope that comes with marginal environmental conditions.</p>

opencc-zeroMar 2024View details →
dryad36/100

Data from: Nutrient composition and functional constituents of daylily from different producing areas based on widely targeted metabolomics

<p>Daylily is a functional food with high nutritional value in China. Datong (DT) in Shanxi Province is one of the four main production areas of daylily. Therefore, Linfen (LF), Lvliang (LL), and Yangquan (YQ) in Shanxi Province have also introduced daylily from DT. However, geographical and climatic conditions and producing patterns cause variations in the vegetable quality. In the present study, we determined the quality of daylilies from different producing areas and found that the nutrient composition of daylilies from different producing areas varied. The widely targeted metabolomics was performed, and the results showed that 1642 metabolites were found in daylily. The differential metabolites between DT and YQ, LL and LF were 557, 667, and 359, respectively. Notably, 9 metabolic pathways and 76 metabolite markers could be associated with daylily from different areas. This study provides a theoretical basis for the quality maintenance and health efficacy research of daylily.</p>

opencc-zeroMar 2024View details →
zenodo36/100

Data for Quantifying functional group compositions of household fuel-burning emissions

<p>Data for reproduction of figures in the paper "Quantifying functional group compositions of household fuel-burning emissions"</p>

opencc-by-4.0Apr 2024View details →
dryad36/100

Does fortune follow function? Exploring how consumer preferences drive the functional trait composition of the global songbird trade

<p>Defaunation and extinction undermine the resilience and functioning of ecological communities and ecosystems. Relative to other disturbances, overexploitation for the global wildlife trade presents a unique case of trait-based selection, as demand for specific individuals is often tied to unique morphological or aesthetic traits desired by consumers ("market traits"). Because evolutionary history leads to species that share both market and functional traits, we posit that non-random patterns of exploitation will result in non-random loss of functional diversity. <br>We applied a trait-based framework to the global songbird trade for 4616 species, 148 of which are plausibly threatened by the trade. We quantified select market traits, such as unique coloration and song quality, and ecological traits related to body size, diet, and foraging strategy to assess whether the trade disproportionately threatens particular functional groups. We additionally looked for patterns of association between market traits and functional traits to assess whether selection on certain market traits could drive selection on associated functional traits.<br>We found that overexploited birds are a distinct functional subset of the global songbird pool, with the trade disproportionately threatening large bodied, frugivorous, and seed eating birds. Across all songbirds, there were multiple non-random associations between market traits and functional traits, with the strongest associations observed among trade-threatened birds; this was consistent with our theory that consumer-driven selection on market traits could theoretically result in selection on functional traits. However, there was mixed evidence for this hypothesis at a global scale, suggesting that disproportionate threat to functional diversity may be more likely in regions where there is heavy demand for associated market traits. <br><em>Policy Implications:</em> Our results highlight the need for increased focus on the mechanistic drivers of trait-based selection on the consumer side of wildlife trade, and how patterns of overexploitation can systematically affect ecological communities and ecosystem services.</p>

opencc-zeroApr 2024View details →
zenodo36/100

Challenges in adjusting scoring matrices when comparing functional motifs with non-standard compositions

<p>This research was funded by the National Science Centre in Poland (grant number 2021/41/N/ST6/01919)</p>

opencc-by-4.0Aug 2024View details →
dryad36/100

Data from: Phytoplankton functional composition determines limitation by nutrients and grazers across a lake productivity gradient

<p>Functional tradeoffs among ecologically important traits govern the diversity of communities and changes in species composition along environmental gradients. A tradeoff between predator defense and resource competitive ability has been invoked as a mechanism that may maintain diversity in lake phytoplankton. Tradeoffs may promote diversity in communities where grazing- and resource-limited taxa coexist, which determines the extent to which communities are resource- or consumer-controlled. In addition, changes in temperature may alter nutrient demands and grazing pressure, changing the balance between the two regulating factors. Our study aims to understand whether a tradeoff between grazer vulnerability and nutrient limitation promotes coexistence of phytoplankton functional groups in communities that differ in trophic status, and how this tradeoff may shift with warming. We conducted multifactorial experiments manipulating grazing, nutrients, and temperature in phytoplankton communities from three Dutch lakes varying in trophic status, and used a trait-based approach to classify functional groups based on grazing susceptibility. <span>We found no associations between susceptibility to grazing and response to nutrient additions in any of the communities or temperature regimes, indicating that</span> a competition-defense tradeoff is unlikely to <span>explain diversity within the tested communities. Instead, w</span>e observed a tendency towards both a higher grazing-resistance and weaker nutrient limitation <span>along with a shift in the functional composition of phytoplankton in communities across a gradient from low to high productivity.</span></p>

opencc-zeroFeb 2022View details →
dryad36/100

Trends in functional composition of small mammal communities across millennial time scales

<p>Rich fossil deposits of the late Quaternary help us understand responses of biodiversity to global change and thus predict the future of ecosystems. Studies from the late Quaternary, however, are often limited taxonomically, geographically (often one site), and by their use of largely taxon-based metrics that do not inform about ecosystem-level consequences of biodiversity change. Here, we compare change in functional composition of small mammal communities at El Mirón Cave (Spain) and Samwell Cave (California, USA) across the last 22,000 years, and examine their relationships with climate and vegetation. We find opposing temporal trends between the two locations. European small mammal communities occupied increasingly greater trait space, driven by increases in arboreal granivory and frugivory as ground-dwelling herbivory declined toward the late Holocene. North American communities occupied smaller trait space as ground-level foraging and insectivory increased and arboreal herbivory and mean body mass declined. Our results point to the importance of the interaction between climate change and vegetation shifts for explaining changes in small mammal functional diversity, through their synergistic impacts on individual traits. Specifically, increasing temperature across both continents likely led to increases in nocturnal activity and declines in assemblage mean body mass, while transition to mixed forest (El Mirón) or open woodland (Samwell) resulted in increasing structural complexity of vegetation that potentially supported more diverse community-level dietary characteristics. These results demonstrate the ability of a trait-based approach to identify how environmental variables correlate with changes in community functional composition through time and gain insight into the potential consequences of environmental change for ecosystem functioning.</p>

opencc-zeroApr 2022View details →
dryad36/100

Composition and functional potential of the mammary microbiota prior to and following breast tumor diagnosis

<p>These data were generated to analyze the human breast tissue microbiome composition and functional potential. We analyzed and compared the resident bacterial taxa of histologically normal breast tissue (healthy, H) with those of tissues donated prior to (pre-diagnostic, PD, ) and after (adjacent normal, AN, and tumor, T) breast cancer diagnosis to determine the role of the breast tissue microbiome in breast cancer. DNA was isolated from 165 tissue samples, 9 negative controls, and 1 positive control and submitted for Illumina Miseq paired-end sequencing of the V3 - V4 region of the 16S gene. 16S amplicons were pre-processed into amplicon sequence variants (ASVs) using DADA2. To infer bacterial function in breast cancer, we predicted the functional bacteriome from these ASVs using PICRUSt2 and the Kyoto Encyclopedia of Genes and Genomes (KEGG) database. </p>

opencc-zeroMay 2022View details →
dryad36/100

Nitrogen availability and plant functional composition modify biodiversity-multifunctionality relationships

<p><span>The ability of an ecosystem to deliver multiple functions at high levels (multifunctionality) typically increases with biodiversity but there is substantial variation in the strength and direction of biodiversity effects, suggesting context-dependency. A better understanding of the drivers of this context dependency is essential to predict effects of global change on ecosystems. To determine how different factors modulate the effect of diversity on multifunctionality, we established a large grassland experiment with 216 communities, crossing a manipulation of plant species richness (1, 4, 8, 20 species) with manipulations of resources (nitrogen enrichment), plant functional composition (gradient in mean specific leaf area [SLA] to manipulate abundances of exploitative, fast-growing vs. conservative, slow-growing species), plant functional diversity (variance in SLA) and enemy abundance (foliar fungal pathogen removal). We measured ten above- and belowground functions, related to productivity, nutrient cycling and energy transfer between trophic levels, and calculated ecosystem multifunctionality. Plant species richness and functional diversity both increased multifunctionality, but their effects were context dependent. Species richness increased multifunctionality only when communities were assembled with fast growing (high SLA) species. This was because slow species were more redundant in their functional effects, whereas different fast species tended to promote different functions. Functional diversity also increased multifunctionality but this effect was dampened by nitrogen enrichment. However, unfertilised, functionally diverse communities still delivered more functions than low diversity, fertilised communities. Our study suggests that a shift towards fast-growing exploitative communities will not only alter ecosystem functioning but also the strength of biodiversity-functioning relationships, which highlights the potentially complex effects of global change on multifunctionality.</span></p>

opencc-zeroMay 2022View details →
zenodo36/100

Biomass fine-scale variation is predictive of functional composition and diversity in grazed grassland

<p>Dataset and R codes used in &quot;Biomass fine-scale variation is predictive of functional composition and diversity in grazed grassland&quot;</p>

opencc-by-4.0May 2022View details →
dryad36/100

Functional miscibility and thermomechanical properties enhancement of substituted phthalic acetylated modified chitin filler in biopolymer composite

<p>The miscibility between hydrophobic and hydrophilic biopolymers has been of significant challenge. This study used a novel simplified chitin modification method to produce phthalic - chitin using phthalic anhydride in a substitution reaction. The FT-IR functional group analysis was used to confirm the substitution reaction. The modified chitin was used as compatibiliser in PLA/starch biocomposite to enhance its properties. The biocomposite was prepared using melt extrusion and compression moulding technique. The biocomposite's morphological, thermomechanical, and water absorption properties were characterised using scanning electron microscope, tensile test, dynamic mechanical analysis, thermogravimetry analysis, differential scanning calorimetry, thickness swelling, and water absorption test. The FT-IR study shows a successful substitution reaction of the amine hydrogen ion present in the chitin as opposed to substituting the hydrogen ion in the hydroxide group. The tensile and impact properties of biocomposite incorporated with modified chitin showed better results compared with other samples. The SEM images showed uniform miscibility of the modified biocomposite. The dynamic mechanical analysis showed improved modulus value with the incorporation of modified chitin. The thermal properties showed improved thermal stability of the modified biocomposite. Furthermore, the percentage of water absorbed by biocomposite with modified chitin is reduced compared to the PLA/starch biocomposite. The produced biodegradable ternary blend can be used as a substitute for plastics in industrial applications.</p>

opencc-zeroMay 2022View details →
dryad36/100

Functional composition of plant communities mediates biomass effects on ecosystem service recovery across an experimental dryland restoration network

<p>Land degradation can result in a loss of critical ecosystem services that we often seek to restore through re-establishment of desired plant communities. Trait-based approaches have the potential to target specific ecosystem services based on associations between the functional composition of plant communities and ecosystem properties that serve as indicators of those services. The effect of functional composition on ecosystem recovery may depend on the amount of restored plant biomass, itself a supporting service frequently targeted in restoration efforts. Yet, interactions between functional composition and biomass are not formally integrated into trait-based analytical frameworks. We tested the hypothesis that functional composition of plant communities both drives, and interacts with, biomass production to influence indicators of soil functioning and weed suppression across a network of degraded dryland restoration experiments. This networked approach allowed us to identify generalized effects of functional composition on ecosystem recovery across a range of dryland climate conditions. Climate had a substantial effect on ecosystem indicators, with weed cover and soil surface stability increasing in more arid climates, water infiltration increasing with precipitation, and aggregate structure increasing with less freezing. After accounting for climate effects across study sites, we found significant effects of community-weighted mean (CWM) trait values on biomass, particularly a positive effect of leaf carbon-to-nitrogen ratio, and of CWM-biomass interactions on other ecosystem indicators. Cover of exotic species was reduced in restored communities with a combination of low leaf dry matter content and high biomass, soil water infiltration increased with lower specific root length and high biomass, and soil aggregate stability increased with higher root dry matter content and high biomass, among other effects. Functional diversity had no significant effects on any ecosystem indicators. Synthesis: The influence of community functional composition on ecosystem properties increases with community biomass, particularly in disturbed or low productivity systems. This suggests that active management should not only focus on trait values that optimize individual ecosystem indicators, but also how those functional strategies are complementary or counter to those that increase biomass.</p>

opencc-zeroJun 2022View details →
dryad36/100

Chronic browsing by an introduced mammalian herbivore in a tropical island alters species composition and functional traits of forest understory plant communities

<p>Mammalian herbivores have large-scale impacts on vegetation, altering structure and species composition, especially in tropical grasslands and savannas. However, there is limited understanding of the potential impacts of mammalian herbivores in tropical wet forests, where they are typically less abundant. We investigated the effects of an introduced mammalian herbivore chital (<em>Axis axis</em>) on vegetation structure, composition and leaf functional traits of tropical evergreen forests of the Andaman Islands, India. Across seven islands, representing a gradient of herbivore densities, increasing chital presence was associated with decreased understory richness, understory density and adult tree richness, but was not related to adult tree density or size class distributions. We also found a significant decrease in community-level leaf palatability traits (specific leaf area decreased and leaf thickness increased) with increasing chital habitat use. This community-level shift in leaf trait values was better explained by intra-specific variation in leaf traits across islands rather than changes in species composition. In summary, we show persistent long-term impacts of an introduced mammalian herbivore on understory tropical tree communities although there is little impact on adult tree communities.  Our results also show that functional traits of species can be altered in response to novel herbivory, even at herbivore densities where there are no detectable impacts on adult forest structure or composition. Such altered functional traits may potentially alter ecosystem functioning in these forests even without changes in vegetation structure.</p>

opencc-zeroSep 2022View details →
dryad36/100

Data from: Nitrogen enrichment alters multiple dimensions of grassland functional stability via changing compositional stability

<p>Anthropogenic nutrient enrichment is known to alter the composition and functioning of plant communities. However, how nutrient enrichment influences multiple dimensions of community- and ecosystem-level stability remains poorly understood. Using data from a nitrogen (N) and phosphorus (P) addition experiment in a temperate semi-arid grassland that experienced a natural drought, we show that N enrichment, not P enrichment, decreased grassland functional and compositional temporal stability, resistance, and recovery, but increased functional and compositional resilience. Compositional stability and species asynchrony, rather than species diversity, were identified as key determinants of all dimensions of grassland functional stability, except for recovery. Whereas grassland functional recovery was decoupled from compositional recovery, N enrichment altered other dimensions of functional stability primarily through changing their corresponding compositional stability dimensions. Our findings highlight the need to examine ecological stability at the community level for a more mechanistic understanding of ecosystem dynamics in the face of environmental change.</p>

opencc-zeroSep 2022View details →
zenodo36/100

Taxonomic, functional, and phylogenetic diversity peaks do not coincide along a compositional gradient in forest-grassland mosaics

<p>This is a standard phytocoenological table with trait data for each species. Species are in rows and relev&eacute;s (plots) are in columns. Habitat codes are according to the caption of Fig. 3 in our paper. Numbers in the relev&eacute;s are percentage cover values.</p>

opencc-by-4.0Oct 2022View details →
dryad36/100

Long-term changes in taxonomic and functional composition of European marine fish communities

<p>Evidence of large-scale biodiversity degradation in marine ecosystems has been reported worldwide, yet most research has focused on few species of interest or on limited spatiotemporal scales. Here we assessed the spatial and temporal changes in the taxonomic and functional composition of fish communities in European seas over the last 25 years (1994-2019). We then explored how these community changes were linked to environmental gradients and fishing pressure. We show that the spatial variation in fish species composition is more than two times higher than the temporal variation, with a marked spatial continuum in taxonomic composition and a more homogenous pattern in functional composition. The regions warming the fastest are experiencing an increasing dominance and total abundance of r-strategy fish species (lower age of maturity). Conversely, regions warming more slowly show an increasing dominance and total abundance of K-strategy species (high trophic level and late reproduction). Among the considered environmental variables, sea surface temperature, surface salinity, and chlorophyll-a most consistently influenced communities' spatial patterns, while bottom temperature and oxygen had the most consistent influence on temporal patterns. Changes in communities' functional composition were more closely related to environmental conditions than taxonomic changes. Our study demonstrates the importance of integrating community-level species traits across multi-decadal scales and across a large region to better capture and understand ecosystem-wide responses and provides a different lens on community dynamics that could be used to support sustainable fisheries management.</p>

opencc-zeroMay 2024View details →
zenodo36/100

Figure 1 in Impact of dike age on biodiversity and functional composition of soil macrofaunal communities in poplar forests in a reclaimed coastal area

Figure 1. Distribution of sample sites on the reclaimed coast.

opencc-by-4.0Nov 2015View details →

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Allen Brain Atlas

Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

Annotated Behaviour and Observability Dataset (ABODe)

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abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

DANDI Archive for NWB datasets

DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

International Brain Laboratory public data

The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

OpenNeuro

OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record