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Figure 1 from: Sulistyo B, Boos R, Cootes J, Gravendeel B (2015) Dendrochilum hampelii (Coelogyninae, Epidendroideae, Orchidaceae) traded as 'Big Pink' is a new species, not a hybrid: evidence from nrITS, matK and ycf1 sequence data. PhytoKeys 56: 83-97. https://doi.org/10.3897/phytokeys.56.5432
Figure 1 - Phylogenetic relationships amongst the sampled species of Dendrochilum, created using BEAST and PAUP*. The values on the nodes represent posterior probabilities, whereas branch lengths indicate to the relative number of changes: A comparison between topologies based on nrITS and matK + ycf1 matrices B topology resulting from the combined nrITS + matK + ycf1 data matrices.
Figure 4 from: Sulistyo B, Boos R, Cootes J, Gravendeel B (2015) Dendrochilum hampelii (Coelogyninae, Epidendroideae, Orchidaceae) traded as 'Big Pink' is a new species, not a hybrid: evidence from nrITS, matK and ycf1 sequence data. PhytoKeys 56: 83-97. https://doi.org/10.3897/phytokeys.56.5432
Figure 4 - Dendrochilum hampelii: A portion of inflorescence of cultivated pinkish salmon-coloured form B habit. Photographs by Lubbert Westra of Hort. bot. Leiden 20130654 (L! [spirit no. WAG0116920]) C portion of inflorescence of pale yellow-coloured form of a plant growing in the wild in the Philippines in the Misamis Oriental province of the island of Mindanao. Photograph by James Cootes.
Figure 8 from: Tanaka H, Dung LD, Higashi R, Tsukagoshi A (2016) A new interstitial ostracod species of the genus Paracobanocythere from Vietnam, with mitochondrial CO1 sequence data of three Asian species. ZooKeys 559: 17-33. https://doi.org/10.3897/zookeys.559.6751
Figure 8 - Posterior body and genitalia of Paracobanocythere vietnamensis sp. n. Female, paratype (NSMT-Cr 24326). Scale bar indicates 50 µm.
Figure 6 from: Tanaka H, Dung LD, Higashi R, Tsukagoshi A (2016) A new interstitial ostracod species of the genus Paracobanocythere from Vietnam, with mitochondrial CO1 sequence data of three Asian species. ZooKeys 559: 17-33. https://doi.org/10.3897/zookeys.559.6751
Figure 6 - Appendages of Paracobanocythere vietnamensis sp. n. A and C male paratype (NSMT-Cr 24320) B male holotype (NSMT-Cr 24314) D female paratype (NSMT-Cr 24326) A fifth limb B sixth limb C seventh limb D sixth limb. Scale bar indicates 50 µm.
Figure 3 from: Tanaka H, Dung LD, Higashi R, Tsukagoshi A (2016) A new interstitial ostracod species of the genus Paracobanocythere from Vietnam, with mitochondrial CO1 sequence data of three Asian species. ZooKeys 559: 17-33. https://doi.org/10.3897/zookeys.559.6751
Figure 3 - Valves of Paracobanocythere vietnamensis sp. n. Male, holotype (NSMT-Cr 24314). A left internal lateral view B right internal lateral view. Scale bar indicates 100 µm.
Figure 2 from: Tanaka H, Dung LD, Higashi R, Tsukagoshi A (2016) A new interstitial ostracod species of the genus Paracobanocythere from Vietnam, with mitochondrial CO1 sequence data of three Asian species. ZooKeys 559: 17-33. https://doi.org/10.3897/zookeys.559.6751
Figure 2 - SEM images of valves and carapace of Paracobanocythere vietnamensis sp. n. A and B male paratype (NSMT-Cr 24315) C, D, M–O male, paratype (NSMT-Cr 24316) E and F female, paratype (NSMT-Cr 24327) G male, paratype (NSMT-Cr 24317) H male paratype (NSMT-Cr 24318) I female, paratype (NSMT-Cr 24328) J female, paratype (NSMT-Cr 24329) K male, paratype (NSMT-Cr 24319) L female, paratype (NSMT-Cr 24330). A right external lateral view B left external lateral view C right internal lateral view, anteroventral margin is slightly damaged D left internal lateral view E right external lateral view F left external lateral view G dorsal view H ventral view I dorsal view J ventral view K anterior view L anterior view M hingement part of left valve N hingement part of right valve O adductor muscle scars of left valve. Scale bar indicates 100 µm (A–N) and 40 µm (O). Arrows indicate anterior direction.
Figure 1 from: Tanaka H, Dung LD, Higashi R, Tsukagoshi A (2016) A new interstitial ostracod species of the genus Paracobanocythere from Vietnam, with mitochondrial CO1 sequence data of three Asian species. ZooKeys 559: 17-33. https://doi.org/10.3897/zookeys.559.6751
Figure 1 - Map showing sampling locality of Paracobanocythere vietnamensis sp. n. A western part of Southeast Asia B Phu Quoc Island, Vietnam C The Dăm Ngoài Island. Arrowhead indicates the type locality.
Figure 4 from: Tanaka H, Dung LD, Higashi R, Tsukagoshi A (2016) A new interstitial ostracod species of the genus Paracobanocythere from Vietnam, with mitochondrial CO1 sequence data of three Asian species. ZooKeys 559: 17-33. https://doi.org/10.3897/zookeys.559.6751
Figure 4 - SEM images of the detailed structure of Paracobanocythere vietnamensis sp. n. A and B male paratype (NSMT-Cr 24315) C male paratype (NSMT-Cr 24316) A three pore systems and small granular texture in external lateral view B sieve type normal pore with recessed sieve plate and thick rim C internal view of sieve plate of sieve type normal pore. Scale bars indicate 5 µm.
Figure 7 from: Tanaka H, Dung LD, Higashi R, Tsukagoshi A (2016) A new interstitial ostracod species of the genus Paracobanocythere from Vietnam, with mitochondrial CO1 sequence data of three Asian species. ZooKeys 559: 17-33. https://doi.org/10.3897/zookeys.559.6751
Figure 7 - Copulatory organ of Paracobanocythere vietnamensis sp. n. Male, paratype (NSMT-Cr 24320) A internal view of right organ B internal view of left organ. Abbreviations: Dl distal lobe Hp hooked process Ps pincer-like structure Tc tip of capsule. Scale bar indicates 50 µm.
Figure 5 from: Tanaka H, Dung LD, Higashi R, Tsukagoshi A (2016) A new interstitial ostracod species of the genus Paracobanocythere from Vietnam, with mitochondrial CO1 sequence data of three Asian species. ZooKeys 559: 17-33. https://doi.org/10.3897/zookeys.559.6751
Figure 5 - Appendages of Paracobanocythere vietnamensis sp. n. Male, holotype (NSMT-Cr 24314). A antennula B antenna C mandibula D maxillula E brush-shaped organ. Scale bar indicates 50 µm (A–D) and 25 µm (E).
Figure 2 from: Stienen EWM, Desmet P, Aelterman B, Courtens W, Feys S, Vanermen N, Verstraete H, Van de walle M, Deneudt K, Hernandez F, Houthoofdt R, Vanhoorne B, Bouten W, Buijs RJ, Kavelaars MM, Müller W, Herman D, Matheve H, Sotillo A, Lens L (2016) GPS tracking data of Lesser Black-backed Gulls and Herring Gulls breeding at the southern North Sea coast. ZooKeys 555: 115-124. https://doi.org/10.3897/zookeys.555.6173
Figure 2 - Left: map of western Europe and northwest Africa, showing the full extent of the gull tracking data, including two migration/wintering seasons. Right: map of the southern North Sea coast, showing mainly breeding season data. Each point represents a recorded occurrence, LBBG are indicated in orange, HG in blue. Overlapping points are brighter in colour. Maps created with CartoDB, basemap based on OpenStreetMap data. https://inbo.cartodb.com/u/lifewatch/viz/da04f120-ea70-11e4-a3f2-0e853d047bba/public_map
Figure 1 from: Stienen EWM, Desmet P, Aelterman B, Courtens W, Feys S, Vanermen N, Verstraete H, Van de walle M, Deneudt K, Hernandez F, Houthoofdt R, Vanhoorne B, Bouten W, Buijs RJ, Kavelaars MM, Müller W, Herman D, Matheve H, Sotillo A, Lens L (2016) GPS tracking data of Lesser Black-backed Gulls and Herring Gulls breeding at the southern North Sea coast. ZooKeys 555: 115-124. https://doi.org/10.3897/zookeys.555.6173
Figure 1 - One of the tracked Lesser Black-backed Gulls ("Hans", ring code: L906682), photographed near its nest in Zeebrugge on May 29, 2013 shortly after he was equipped with a tracker (device info serial: 861). Photo by Misjel Decleer, VLIZ photo gallery.
Figure 3 from: Stienen EWM, Desmet P, Aelterman B, Courtens W, Feys S, Vanermen N, Verstraete H, Van de walle M, Deneudt K, Hernandez F, Houthoofdt R, Vanhoorne B, Bouten W, Buijs RJ, Kavelaars MM, Müller W, Herman D, Matheve H, Sotillo A, Lens L (2016) GPS tracking data of Lesser Black-backed Gulls and Herring Gulls breeding at the southern North Sea coast. ZooKeys 555: 115-124. https://doi.org/10.3897/zookeys.555.6173
Figure 3 - Researchers equipping a Herring Gull with a UvA-BiTS GPS tracker on the roof of the Vismijn in Ostend on May 24, 2013. Photo by Misjel Decleer, VLIZ photo gallery.
Figure 1 from: Queiroz-Santos L, Dias FMS, Dell'Erba R, Casagrande MM, Mielke OHH (2016) Assessment of the current state of biodiversity data for butterflies and skippers in the state of Mato Grosso, Brazil (Lepidoptera, Papilionoidea and Hesperioidea). ZooKeys 595: 147-161. https://doi.org/10.3897/zookeys.595.7856
Figure 1 - Occurrence localities of butterflies and number of species per locality in the state of Mato Grosso, Brazil.
Data and R Code from "PAT-GEOM: A Software Package for the Analysis of Animal Patterns" (published in Methods in Ecology and Evolution)
<p>Datasets for Figures 2 and 4 in the article "PAT-GEOM: A Software Package for the Analysis of Animal Patterns" (published in Methods in Ecology and Evolution) and the R code used to perform the analysis described in the article.</p>
Supporting data for "onlineFDR: an R package to control the false discovery rate for growing data repositories"
<p>Supporting data for the manuscript "onlineFDR: an R package to control the false discovery rate for growing data repositories"</p>
Figure 9 from: Karpiński L, Szczepański WT, Plewa R, Walczak M, Hilszczański J, Kruszelnicki L, Łoś K, Jaworski T, Bidas M, Tarwacki G (2018) New data on the distribution, biology and ecology of the longhorn beetles from the area of South and East Kazakhstan (Coleoptera, Cerambycidae). ZooKeys 805: 59-126. https://doi.org/10.3897/zookeys.805.29660
Figure 9 Field photos of imagines in nature and habitats of typical Kazakh cerambycid species: A male of PsilotarsusbrachypterusbrachypterusB female of P.brachypterusbrachypterusC female of P.brachypterusbrachypterus while spraying pheromones with raised ovipositor D massive occurrence of the males of P.brachypterusbrachypterus attracted to an artificial light source E male of P.brachypterusbrachypterus hunted by LatrodectustredecimguttatusFArtemisia-desert in Kurshim environs, the habitat of P.brachypterusbrachypterusG male of PsilotarsusbrachypteruspubiventrisH female of P.brachypteruspubiventris.
Map 1 from: Karpiński L, Szczepański WT, Plewa R, Walczak M, Hilszczański J, Kruszelnicki L, Łoś K, Jaworski T, Bidas M, Tarwacki G (2018) New data on the distribution, biology and ecology of the longhorn beetles from the area of South and East Kazakhstan (Coleoptera, Cerambycidae). ZooKeys 805: 59-126. https://doi.org/10.3897/zookeys.805.29660
Map 1 Research plots in Kazakhstan: 1 Tartogay env. (44°25'N, 66°13'E) 2 10 km NW of Akkol (43°27'N, 70°35'E) 3 5 km W of Kenen (43°25'N, 74°58'E) 4 10 km S of Kaskeleng (43°05'N, 76°35'E) 5 Kaskeleng (43°12'N, 76°38'E) 6 two neighbouring localities: Kapchagay (43°52'N, 77°03'E), 8 km N of Kapchagay (43°56'N, 77°02'E) 7 two neighbouring localities: 22 km N of Kapchagay (44°05'N, 77°02'E), 26 km N of Kapchagay (44°06'N, 77°03'E) 8 50 km N of Kapchagay (44°18'N, 76°56'E) 9 2 km E of Arkhaly (44°10'N, 77°56'E) 10 2 km E of Saryozek (44°22'N, 78°01'E) 11 5 km N of Karashota (43°41'N, 78°09'E) 12 25 km SW of Kalinino 13 Karlygash env. (44°16'N, 78°28'E) 14 38 km SW of Szonży (43°21'N, 79°03'E) 15 four neighbouring localities: 2 km N of Kegen (43°02'N, 79°13'E), 10 km N of Kegen (43°09'N, 79°12'E and 43°07'N, 79°11'E), 15 km N of Kegen (43°09'N, 79°12'E) 16 13 km W of Szonży (43°32'N, 79°17'E) 17 17 km SE of Kegen (42°55'N, 79°25'E) 18 5 km E of Saryzhaz (42°55'N, 79°40'E) 19 7 km N of Sarymbel (44°29'N, 80°04'E) 20 two neighbouring localities: 1 km E of Tambala (45°14'N, 78°38'E), 34 km W of Kapal (45°14'N, 78°39'E) 21 three neighbouring localities: 15 km E of Kapal (45°11'N, 79°12'E), 16 km NE of Kapal (45°12'N, 79°14'E), 22 km E of Kapal (45°13'N, 79°16'E) 22 10 km SW of Sarkan (45°21'N, 79°48'E) 23 6 km E of Koylik (45°38'N, 80°19'E) 24 two neighbouring localities: Kabanbay (45°50'N, 80°37'E), 7 km W of Kabanbay (45°48'N, 80°31'E) 25 10 km E of Gerasimovka (45°48'N, 80°59'E) 26 3 km N of Taskesken (47°14'N, 80°47'E) 27 15 km NW of Taskesken (47°18'N, 80°36'E) 28 50 km S of Ajagöz (47°37'N, 80°38'E) 29 48 km N of Ajagöz (48°22'N, 80°29'E) 30 two neighbouring localities: 120 km NE of Ajagöz (48°57'N, 80°55'E), 125 km NE of Ajagöz (48°57'N 80°54'E) 31 Tarbagatay env. (47°47'N, 81°17'E) 32 five neighbouring localities: 25 km E of Tarbagatay (47°46'N, 81°36'E), 27 km E of Tarbabatay (47°46'N, 81°36'E), 15 km W of Tarbagatay (47°46'N, 81°37'E), 20 km W of Tarbagatay (47°47'N, 81°42'E), 25 km W of Tarbagatay (47°50'N, 81°49'E) 33 10 km E of Kyzyl Kesik (47°53'N, 82°06'E) 34 Zhantikei env. (48°04'N, 82°42'E) 35 20 km NW of Tauke (47°57'N, 83°16'E) 36 5 km SE of Kabanbay (47°49'N, 83°37'E) 37 20 km NW of Zaysan (47°34'N, 84°39'E) 38 12 km S of Zaysan (47°21'N, 84°51'E) 39 two neighbouring localities: 5 km NE of Zaysan (47°30'N, 84°57'E), Aynabulak (47°33'N, 85°03'E) 40 three neighbouring localities: 5 km SE of Kuygan (48°38'N 83°32'E), 8 km NW of Kurshim (48°34'N, 83°36'E), Kurshim env. (48°34'N, 83°36'E) 41 7 km N of Samarskoje (49°05'N, 83°20'E) 42 Verkhnie Tainty env. (49°24'N, 83°03'E) 43 10 km S of Bayash Utepov (49°35'N, 82°28'E) 44 Ust-Kamienogorsk (50°00'N, 82°33'E) 45 Putintsevo env. (49°52'N, 84°21'E) 46 Bykovo env. (49°42'N, 84°34'E and 49°39'N, 84°33'E) (OpenStreetMap contributors).
Figure 6 from: Karpiński L, Szczepański WT, Plewa R, Walczak M, Hilszczański J, Kruszelnicki L, Łoś K, Jaworski T, Bidas M, Tarwacki G (2018) New data on the distribution, biology and ecology of the longhorn beetles from the area of South and East Kazakhstan (Coleoptera, Cerambycidae). ZooKeys 805: 59-126. https://doi.org/10.3897/zookeys.805.29660
Figure 6 Photos of longhorn beetles specimens collected during the expedition to Kazakhstan in 2017: ADorcadionabakumovisarkandicum (male) BD.abakumovisarkandicum (female) CDorcadiontenuelineatum (male) DD.tenuelineatum (female) EDorcadioncrassipescrassipes (male) FD.crassipescrassipes (female) GDorcadionacutispinum (male) HD.acutispinum (female) IDorcadiongeblerigebleri (male, Zaysan environs) JD.geblerigebleri (male, Kabanbay environs) KD.geblerigebleri (female) LDorcadionarietinumarietinum (male).
Figure 7 from: Karpiński L, Szczepański WT, Plewa R, Walczak M, Hilszczański J, Kruszelnicki L, Łoś K, Jaworski T, Bidas M, Tarwacki G (2018) New data on the distribution, biology and ecology of the longhorn beetles from the area of South and East Kazakhstan (Coleoptera, Cerambycidae). ZooKeys 805: 59-126. https://doi.org/10.3897/zookeys.805.29660
Figure 7 Photos of longhorn beetles specimens collected during the expedition to Kazakhstan in 2017: ADorcadionabsinthiumishkovi (male) BD.absinthiumishkovi (female) CDorcadionkapchagaicum (male) DD.kapchagaicum (female) EDorcadionnikolaevi (male) FD.nikolaevi (female) GDorcadionsuvorovikonyrolenum (male) HD.suvorovikonyrolenum (female) IDorcadiontianshanskiiradkevitshi (male) JD.tianshanskiiradkevitshi (female) KDorcadionunidiscale (male) LD.unidiscale (female).
ScienceDex guides
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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.