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5,312 results for “New Zealand”
New Zealand coastal station sea temperature time series
<p>The following two tables are the daily observations and model output of coastal water temperature analyzed in Souza et al., 2022 (displayed in Figure 13). The first column in both tables are the time in MATLAB datenum format. The subsequent 10 columns are daily temperature values from the following stations with lat/lon information:</p> <p> {'Ahipara' -35.1667 173.1000}<br> {'Leigh' -36.2693 174.7984}<br> {'Moturiki' -37.6330 176.1830}<br> {'Tauranga' -37.6980 176.6160}<br> {'Newplymouth' -39.0500 174.0330}<br> {'Napier' -39.4830 176.9167}<br> {'Evans' -41.3000 174.8000 }<br> {'Lytleton' -43.6330 172.9000 }<br> {'Portobello' -45.8160 170.6500}<br> {'Bluff' -46.6000 168.3000 }</p> <p>Missing data are marked with the value -999. Further observation and station details and quality control procedures are described in the technical data report, Chiswell, S. M. and Grant, B.: New Zealand Coastal Sea Surface Temperature, Tech. rep., National Institute of Water & Atmospheric Research, 2019 </p> <p> </p> <p>We acknowledge the contribution of professional, technical and academic staff from NIWA, University of Otago and University of Auckland who have maintained the coastal SST records and made these available for model validation purposes</p>
Whole-mantle P-wave isotropic tomography beneath Australia and New Zealand
<p>Dear readers,</p> <p>A file named "AN_ISO.dat" contains whole-mantle P-wave isotropic tompgraphy beneath Australia and New Zealand.</p> <p>The data format is as follows:<br>1st column: depth (km) (F7.2)<br>2nd column: latitude (deg) (F7.2)<br>3rd column: longitude (deg) (F7.2)<br>4th column: dVp (%) (F7.2)<br>5th column: Ray hit count (I8)</p> <p>These are values on grid points used for tomographic inversion.</p> <p>We hope it is useful to you.</p> <p>Kind wishes,</p> <p>Genti Toyokuni & Dapeng Zhao<br>Tohoku University, Japan<br>E-mail: toyokuni@tohoku.ac.jp</p> <p>Reference:<br>Toyokuni, G. & Zhao, D. (2024).<br>Slab-plume interactions beneath Australia and New Zealand: New insight from whole-mantle tomography.<br>Geochemistry, Geophysics, Geosystems, under review.</p>
Still-air olfactometer responses of Argentine Stem Weevil to odours from ryegrass, frass, and conspecifics in New Zealand
<p>This dataset contains data from two still-air olfactometer trials, one on diapausing Argentine stem weevils (Listronotus bonariensis) and one on reproductive, gravid, weevils. It also contains dissection data on the weevils that made a choice in the olfactometer. This data set is associated with the manuscript:</p> <p><span>Vereijssen J, Rosta´ s M, van Tol R, van Koten C and Goldson S (2024) Olfactometer-measured responses of Listronotus bonariensis (Kuschel) (Coleoptera: Curculionidae) to feeding-induced grass volatiles and conspecific frass as influenced by the weevil’s seasonality. Front. Ecol. Evol. 12:1470023. doi: 10.3389/fevo.2024.1470023</span></p>
Figures 165–166. Species distribution maps. 165 in Synopsis of the tribe Platynini in New Zealand (Coleoptera: Carabidae)
Figures 165–166. Species distribution maps. 165) Tuiplatynus libitus. 166) T. sophronitis.
Figure 123 in Synopsis of the tribe Platynini in New Zealand (Coleoptera: Carabidae)
Figure 123. Map of New Zealand, outlying islands, areas and area codes.
Figure 1 in Taxonomic Supplement (2001 to 2015) to the Catalogue of New Zealand Carabidae (Insecta: Coleoptera)
Figure 1. Authors and number of taxa described between 2001 and 2015.
Figure 111 in Synopsis of the tribe Zolini in New Zealand (Coleoptera: Carabidae)
Figure 111. Map of New Zealand, outlying islands, areas and area codes.
Figure 70 in Synopsis of the genus Bembidion Latreille in New Zealand (Coleoptera: Carabidae: Bembidiini)
Figure 70. Map of New Zealand, outlying islands, areas and associated codes.
Figs. 1–2 in Review of the New Zealand endemic family Cyclaxyridae, new family (Coleoptera: Polyphaga)
Figs. 1–2. Habitus of Cyclaxyra politula (Broun, 1881). 1 – adult (scale bar = 1.0 mm); 2 – larva.
FIGURE 3 in Checklist of ptyctimous mites (Acari, Oribatida) of New Zealand with descriptions of three new species
FIGURE 3: Notophthiracarus otagoensis Niedbała n. sp. (holotype): A – prodorsum, dorsal view; B – prodorsum, lateral view; C – sensillus, lateral view; D – mentum of subcapitulum; E – opisthosoma, lateral view; F – left genitoaggenital plate; G – left anoadanal plate; H – trochanter and femur of leg I. Scale bars (A, B, D-H) 100 µm, scale bars (C) 25 µm.
FIGURE 2 in Checklist of ptyctimous mites (Acari, Oribatida) of New Zealand with descriptions of three new species
FIGURE 2: Notophthiracarus minorae Niedbała n. sp. (holotype.): A – prodorsum, dorsal view; B – prodorsum, lateral view; C – opisthosoma, lateral view; D – mentum of subcapitulum; E – right genitoaggenital plate; F – right anoadanal plate; G – left anoadanal plate; H – trochanter and femur of leg I. Scale bar 100 µm.
FIGURE 1 in Checklist of ptyctimous mites (Acari, Oribatida) of New Zealand with descriptions of three new species
FIGURE 1: Austrophthiracarus parapulchellus Niedbała n. sp. (holotype): A – prodorsum, dorsal view; B – prodorsum, lateral view; C – opisthosoma, lateral view; D – mentum of subcapitulum; E – left genitoaggenital and anoadanal plates; F – trochanter and femur of leg I. Scale bars (A-C, E) 100 µm, scale bars (D, F) 50 µm.
Figure 12 in New records of water mites from New Zealand, with the description of three new genera and ten new species (Acari: Hydrachnidia)
Figure 12 Moanabates moanaensisn. sp., male holotype, venter. Scale bar = 100 µm.
FIG. 4. — Northern New Zealand localities for Homophymia stipitata n in Description of a new lithistid sponge from northeastern New Zealand, and consideration of the phylogenetic affinities of families Corallistidae and Neopeltidae
FIG. 4. — Northern New Zealand localities for Homophymia stipitata n. sp.
Heliconius erato cyrbia, Cook Islands (New Zealand) 2016, 2019, 2021
<p>EN:</p> <p>This upload contains photographs taken by Amin Ghane and Gabriela Montejo-Kovacevich in the Butterfly Genetics Group at the University of Cambridge from the June/July/August (CAM045001-CAM045330) in three batches, indicated in the csv table. These two batches might have slightly different zoom/light settings.</p> <p>This batch contains Quentin Paynter and Gabriela Montejo-Kovacevich specimen collection from the Cook Islands, wild Heliconius erato cyrbia.<br> <br> They have a colour standard for calibration. Information on the individual IDs can additionally be found in the csv.</p> <p>Nomenclature</p> <p>CAMXXXXXX : unit ID corresponding to individual samples<br> _v _d: ventral or dorsal<br> </p> <p>Information on individual samples from the Butterfly Genetics Group Collection can be found on the public database Earthcape (click <a href="https://heliconius.ecdb.io/#ViewID=ContentPage_DetailView&ObjectKey=843e8ec1-41a6-4706-9622-f643132da859&ObjectClassName=EarthCape.Module.Core.ContentPage&mode=View">here</a> for the database, and <a href="http://heliconius.zoo.cam.ac.uk/databases/earthcape-specimen-database/">here</a> for FAQ)</p> <p>Please contact Chris Jiggins (c.jiggins[at]zoo.cam.ac.uk) for requests.</p> <p> </p> <p>------------------------------------------------------</p> <p>ES:</p> <p>Este repositorio contiene fotografías tomadas en el Butterfly Genetics Group de la Universidad de Cambridge</p> <p>Este lote contiene la colección de especímenes silvestres de las Islas Cook (Nueva Zelanda) colectadas por Quentin Paynter. Las fotografías se tomaron en tres grupos, con zoom y condiciones lumínicas algo distintas.</p> <p>Nomenclatura</p> <p>CAMXXXXXX: ID de unidad correspondiente a muestras individuales<br> _v _d: ventral o dorsal<br> </p> <p>Puede encontrar información sobre muestras individuales de Butterfly Genetics Group Collection en la base de datos pública Earthcape (haga clic <a href="https://heliconius.ecdb.io/#ViewID=ContentPage_DetailView&ObjectKey=843e8ec1-41a6-4706-9622-f643132da859&ObjectClassName=EarthCape.Module.Core.ContentPage&mode=View">aquí</a> para la base de datos, y <a href="http://heliconius.zoo.cam.ac.uk/databases/earthcape-specimen-database/">aquí</a> para preguntas frecuentes)</p> <p>Por favor, póngase en contacto con Chris Jiggins (c.jiggins [arroba] zoo.cam.ac.uk) con sus preguntas o peticiones.</p>
New Zealand Bellbird (Anthornis melanura) syllable database from Tiritiri Matangi Island, New Zealand
<p>Database of syllables for New Zealand Bellbirds (<em>Anthornis melanura</em>) recorded on Tiritiri Matangi Island, Auckland, New Zealand. Recordings were taken from 2012 to 2015. Database extracted from bioacoustics software Koe (www.koe.io.ac.nz) on 09 October 2018. Each syllable from song selections have syllable types and syllable family types labelled. Recording season refers to the southern hemisphere breeding season and post-breeding season months of August to May for each consecutive season. Data used by the following study published on bioRxiv <a href="https://doi.org/10.1101/2021.09.29.462458">https://doi.org/10.1101/2021.09.29.462458</a></p> <p><strong>Column key:</strong></p> <p>id = unique identifier for every syllable</p> <p>duration = syllable duration (seconds)</p> <p>song_individual = Unique identifier for each individual bird recorded</p> <p>sex = sex of the individual</p> <p>start_time = start time of the syllable within song selection (seconds)</p> <p>label_family = syllable family</p> <p>end_time = end time of the syllable within song selection (seconds)</p> <p>label = syllable type</p> <p>song_track = name of song selection</p> <p>song_date = Date song recorded (day-month-year)</p> <p>Year = Year song recorded</p> <p>Month = Month song recorded</p> <p>Day = Day song recorded</p> <p>rec-season = Recording season</p>
Trait-habitat associations explain novel bird assemblages mixing native and alien species across New-Zealand landscapes
<p><strong>Aim</strong>: Species introductions have reshaped island faunas for the last 200 years, often threatening native biodiversity. Approximately equal numbers of native and alien species currently co-occur in the New Zealand avifauna, but they show distinct habitat use. Antagonistic interactions, habitat affinities and legacies of introduction history may concur to explain their segregation along habitat gradients. To investigate these processes, we explored how habitat, ecological traits and introduction history relate with the current composition of bird assemblages.</p> <p><strong>Location</strong>: New Zealand</p> <p><strong>Taxon</strong>: Birds</p> <p><strong>Methods</strong>: We analysed 917 bird point counts spread along habitat and elevation gradients in the Canterbury region, South Island, and related 10 ecological traits to landscape composition using a three-table ordination method known as 'RLQ analysis', accounting for spatial autocorrelation and phylogeny. We tested whether alien species' positions in the RLQ were related to proxies of introduction history.</p> <p><strong>Results</strong>: Eighteen endemic, 11 native and 19 alien species were distributed along a gradient from forest to open-habitat assemblages, in relation to foraging mode, nesting site and body size. A second gradient segregated species between native and exotic forests according to territoriality, sedentarity and diet. Traits accounted for the separation of native and alien bird species in forests, but not in open habitats. Phylogenetic signals emerged from the separation of native and alien species by forest type, and spatial structures suggested a landscape-level, rather than regional or local determinism. These correlations were independent of introduction history, although open-habitat assemblages tended to host alien species introduced later in time. </p> <p><strong>Main conclusions: </strong>Habitat type and resource availability explain the spatial partitioning of New Zealand bird assemblages between native and alien species more consistently than competitive exclusion. We conclude that trait-mediated ecological differences among species have likely played a predominant role in species' segregation among landscapes, while maintaining endemic bird assemblages in native forests. </p>
Dataset of automated earthquake detections in the Hikurangi Margin (New Zealand) during the 2014 Slow Slip Event
<p>The dataset provided in this repository contains:</p> <p>- Yarce_REST_events.dat: Contains information of 854 events, with event id, origin time (epoch time), latitude, longitude, depth, number of P arrivals, number of S arrivals, total number of arrivals, local magnitude.</p> <p>- Yarce_REST_arrivals.data: Contains the arrival data information of the 854 events in Yarce_REST_events_v2.csv: event id, station, phase (P or S), arrival time.</p>
Figure 35 in Synopsis of the tribe Amarotypini in New Zealand (Coleoptera: Carabidae)
Figure 35. Map of New Zealand, outlying islands, areas and area codes.
Figure 72 in Synopsis of the subfamily Carventinae in New Zealand (Heteroptera: Aradidae)
Figure 72. Map of New Zealand, outlying islands, areas and area codes.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.
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.
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.