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zenodo28/100

Supplementary material 4 from: Lima-Cordón RA, Monroy MC, Stevens L, Rodas A, Rodas GA, Dorn PL, Justi SA (2019) Description of Triatoma huehuetenanguensis sp. n., a potential Chagas disease vector (Hemiptera, Reduviidae, Triatominae). ZooKeys 820: 51-70. https://doi.org/10.3897/zookeys.820.27258

: Data type: phylogeny data

opencc-zeroFeb 2019View details →
zenodo28/100

Supplementary material 3 from: Lima-Cordón RA, Monroy MC, Stevens L, Rodas A, Rodas GA, Dorn PL, Justi SA (2019) Description of Triatoma huehuetenanguensis sp. n., a potential Chagas disease vector (Hemiptera, Reduviidae, Triatominae). ZooKeys 820: 51-70. https://doi.org/10.3897/zookeys.820.27258

: Data type: phylogeny data

opencc-zeroFeb 2019View details →
zenodo28/100

Supplementary material 2 from: Lima-Cordón RA, Monroy MC, Stevens L, Rodas A, Rodas GA, Dorn PL, Justi SA (2019) Description of Triatoma huehuetenanguensis sp. n., a potential Chagas disease vector (Hemiptera, Reduviidae, Triatominae). ZooKeys 820: 51-70. https://doi.org/10.3897/zookeys.820.27258

: Data type: occurrence

opencc-zeroFeb 2019View details →
zenodo28/100

Figure 5 from: Lima-Cordón RA, Monroy MC, Stevens L, Rodas A, Rodas GA, Dorn PL, Justi SA (2019) Description of Triatoma huehuetenanguensis sp. n., a potential Chagas disease vector (Hemiptera, Reduviidae, Triatominae). ZooKeys 820: 51-70. https://doi.org/10.3897/zookeys.820.27258

Figure 5 Ventral connexival plate and part of 4th urosternite of T.dimidiata s. str. (left), and T.huehuetenanguensis sp. n. (right). Abbreviations: cs connexival suture and s spiracles. Photograph credits RL and SJ.

opencc-by-4.0Feb 2019View details →
zenodo28/100

Figure 4 from: Lima-Cordón RA, Monroy MC, Stevens L, Rodas A, Rodas GA, Dorn PL, Justi SA (2019) Description of Triatoma huehuetenanguensis sp. n., a potential Chagas disease vector (Hemiptera, Reduviidae, Triatominae). ZooKeys 820: 51-70. https://doi.org/10.3897/zookeys.820.27258

Figure 4 Pronotum of T.dimidiata s. str. (left), and T.huehuetenanguensis sp. n. (right). Abbreviations: c collar, a anterolateral angles, h humerus and s scutellum. Photograph credits RL and SJ.

opencc-by-4.0Feb 2019View details →
zenodo28/100

Figure 3 from: Lima-Cordón RA, Monroy MC, Stevens L, Rodas A, Rodas GA, Dorn PL, Justi SA (2019) Description of Triatoma huehuetenanguensis sp. n., a potential Chagas disease vector (Hemiptera, Reduviidae, Triatominae). ZooKeys 820: 51-70. https://doi.org/10.3897/zookeys.820.27258

Figure 3 Heads of T.dimidiata s. str. and T.huehuetenanguensis sp. n. Top panel, dorsal view of the head. Bottom panel, ventral view of the head. Abbreviations: o ocelli, ac apex of clypeus, ss stridulatory sulcus, r connections between rostral segments. Photograph credits RL and SJ.

opencc-by-4.0Feb 2019View details →
zenodo28/100

Figure 7 from: Lima-Cordón RA, Monroy MC, Stevens L, Rodas A, Rodas GA, Dorn PL, Justi SA (2019) Description of Triatoma huehuetenanguensis sp. n., a potential Chagas disease vector (Hemiptera, Reduviidae, Triatominae). ZooKeys 820: 51-70. https://doi.org/10.3897/zookeys.820.27258

Figure 7 Maximum likelihood cytB and ITS-2 phylogenies. Bootstrap support values of the relevant clades are shown. Habitus of T.huehuetenanguensis and related species are shown to scale (10 mm).

opencc-by-4.0Feb 2019View details →
zenodo28/100

Figure 2 from: Lima-Cordón RA, Monroy MC, Stevens L, Rodas A, Rodas GA, Dorn PL, Justi SA (2019) Description of Triatoma huehuetenanguensis sp. n., a potential Chagas disease vector (Hemiptera, Reduviidae, Triatominae). ZooKeys 820: 51-70. https://doi.org/10.3897/zookeys.820.27258

Figure 2 Comparison between T.dimidiata s. str. and T.huehuetenanguensis sp. n. AT.dimidiata female (left) and male (right) from Jutiapa (dorsal and ventral view) BT.dimidiata female (left) and male (right) from Huehuetenango (dorsal and ventral view) and CT.huehuetenanguensis sp. n. female (left) and male (right) from Huehuetenango (dorsal and ventral view). Photograph credits: RL and SJ.

opencc-by-4.0Feb 2019View details →
zenodo28/100

Figure 6 from: Lima-Cordón RA, Monroy MC, Stevens L, Rodas A, Rodas GA, Dorn PL, Justi SA (2019) Description of Triatoma huehuetenanguensis sp. n., a potential Chagas disease vector (Hemiptera, Reduviidae, Triatominae). ZooKeys 820: 51-70. https://doi.org/10.3897/zookeys.820.27258

Figure 6 Comparison between the external terminalia of T.dimidiata s. str. and T.huehuetenanguensis sp. n. Abbreviations: Gc 8 gonocoxite VIII; Gc 9 gonocoxite IX; Gp8 gonapophysis VIII; VII sternite; IX and X segments. Drawings RL. Photograph credits RL and SJ.

opencc-by-4.0Feb 2019View details →
zenodo28/100

Figure 1 from: Lima-Cordón RA, Monroy MC, Stevens L, Rodas A, Rodas GA, Dorn PL, Justi SA (2019) Description of Triatoma huehuetenanguensis sp. n., a potential Chagas disease vector (Hemiptera, Reduviidae, Triatominae). ZooKeys 820: 51-70. https://doi.org/10.3897/zookeys.820.27258

Figure 1 Triatomahuehuetenanguensis distribution map based on Bargues et al. (2008), Dorn et al. (2016), Justi et al. (2018) and this study. The red spots designate the places where the holotype and paratypes were collected, the green points refer to the locations where T.sp. aff.dimidiata was previously reported. Map insert highlights the department of Huehuetenango, where T.huehuetenanguensis holotype and paratypes were collected.

opencc-by-4.0Feb 2019View details →
zenodo28/100

Supplementary material 1 from: Lima-Cordón RA, Monroy MC, Stevens L, Rodas A, Rodas GA, Dorn PL, Justi SA (2019) Description of Triatoma huehuetenanguensis sp. n., a potential Chagas disease vector (Hemiptera, Reduviidae, Triatominae). ZooKeys 820: 51-70. https://doi.org/10.3897/zookeys.820.27258

: Data type: species data

opencc-zeroFeb 2019View details →
zenodo28/100

Twitter pre-trained word vectors

<p>Clean up of <strong>glove.twitter.27B.zip </strong>&lt;ODC Public Domain Dedication and Licence (PDDL) 1.0&gt;.</p> <p>&quot;2B tweets, 27B tokens, 1.2M vocab, uncased&quot;</p> <p><strong>Changes from original</strong></p> <ul> <li>Headers added to allow loading by gensim. [Added via scripts.glove2word2vec]</li> <li>Recompressed as individual gzip files [Instead of a combined zip].</li> </ul> <p>These changes make the files easier to work with and increase compatibility.</p> <p><strong>Headers</strong></p> <p>Example of added header line</p> <blockquote> <p>1193513 200</p> </blockquote> <p>Header gives number of tokens and&nbsp;dimensions.</p> <p><strong>Statistics</strong></p> <ul> <li>Entries: 1,193,513</li> <li>Token length (characters). Min:1, Max:140, Avg:6.73</li> <li>Number of words per token. Min:0, Max:17, Avg:1.00669200921984</li> <li>Tokens with more than one word: 4874 (0.41%)</li> <li>Twitter data collection date: <em>Unknown.</em><strong><em> </em></strong></li> </ul> <p>History:</p> <ul> <li><strong>?? Aug 2014 </strong>&mdash; GloVe v.1.0 released</li> <li><strong>16 Aug 2014&nbsp;</strong>&mdash; Files first appear as headerless .txt.gz files, some files have mislabeled linked (via <a href="https://web.archive.org/web/20140816165523/http://www-nlp.stanford.edu/projects/glove/">wayback machine)</a></li> <li><strong>?? Oct 2015</strong> &mdash; GloVe v.1.2 released</li> <li><strong>?? ??? ????</strong> &mdash; Files replaced with a .zip file</li> <li><strong>03 June 2019 </strong>&mdash; (These files) Repackaged like original as .txt.gz, plus added headers for increased compatibility</li> </ul> <p>Example of 17-word token:</p> <blockquote> <p>&nbsp;سكس_طيز_قحبه_عنيف_اغتصاب_سكسيه_فحل_زب_نيك_بنات_مكوه_شهوه_لحس_عنف_تومبوي_ليدي_سبورت</p> </blockquote> <p><strong>200d file:</strong></p> <ul> <li>Normalized: no</li> <li>Values: &nbsp;Min:-6.7986, Max:4.609, Avg:0.009065093</li> <li>Zero values (exactly zero): none</li> <li>Zero values (approx zero) per entry: Min:0 (0.00%), Max:2 of 200 (1.0%), Avg:0.00375865197949247 (0.00%)</li> </ul>

openodc-pddlJun 2019View details →
zenodo28/100

Figure 1 in Spatial distribution and effects of land use and cover on cutaneous leishmaniasis vectors in the municipality of Paracambi, Rio de Janeiro, Brazil

Figure 1 Phlebotomine sand fly capture sites, land use, and land cover in the municipality of Paracambi, Rio de Janeiro State, Brazil. Detail below: example of the extraction of the annual percentages of land use and land cover in a 200-meter buffer in one of the capture sites (1992-1994 and 2001-2003). Spatial resolution of the land cover data is 30 meters (Source: mapbiomas.org).

opencc-by-4.0Apr 2022View details →
zenodo28/100

Figure 3 in Spatial distribution and effects of land use and cover on cutaneous leishmaniasis vectors in the municipality of Paracambi, Rio de Janeiro, Brazil

Figure 3 Kernel density map of the total number of sand flies captured in Paracambi, RJ, Brazil, 1992-1994 and 2001-2003.

opencc-by-4.0Apr 2022View details →
zenodo28/100

Fig. 4 in Differences in infection patterns of vector-borne blood-stage parasites of sympatric Malagasy primate species (Microcebus murinus, M. ravelobensis)

Fig. 4. Microfilaremia of individual mouse lemurs over time (points: M. murinus, triangles: M. ravelobensis).

opencc-by-4.0Dec 2019View details →
zenodo28/100

Fig. 2 in Differences in infection patterns of vector-borne blood-stage parasites of sympatric Malagasy primate species (Microcebus murinus, M. ravelobensis)

Fig. 2. Microfilaria length across the different sampling months. Different small letters above the box plots indicate statistical differences (P &lt;0.05) in microfilaria length between sampling months.

opencc-by-4.0Dec 2019View details →
zenodo28/100

Fig. 1. Filarial nematodes from a M in Differences in infection patterns of vector-borne blood-stage parasites of sympatric Malagasy primate species (Microcebus murinus, M. ravelobensis)

Fig. 1. Filarial nematodes from a M. murinus host: (A) Adult male filarial nematode specimen in situ, (B) anterior end of the adult specimen, (C) anterior region with nerve ring, (D) intermediate section and posterior end of the adult specimen and (E) microfilaria in a blood smear.

opencc-by-4.0Dec 2019View details →
zenodo28/100

Text-fig. 9. Alternating field demagnetization - sample No. 230, Section No. 2 (reversed polarity). Top left - DRM vector directions during demagnetization process, white circles - projection of vector directions to the upper hemisphere; top right - Zijderveld diagram, black circles - projection of vector directions into xy plane, white circles - projection of vector directions into xz plane; bottom left - normalised magnetization intensity values during the alternation field demagnetization. in New Updated Results Of Paleomagnetic Dating Of Cave Deposits Exposed In Za Hájovnou Cave, Javoříčko Karst

Text-fig. 9. Alternating field demagnetization - sample No. 230, Section No. 2 (reversed polarity). Top left - DRM vector directions during demagnetization process, white circles - projection of vector directions to the upper hemisphere; top right - Zijderveld diagram, black circles - projection of vector directions into xy plane, white circles - projection of vector directions into xz plane; bottom left - normalised magnetization intensity values during the alternation field demagnetization.

opencc-by-4.0Oct 2014View details →
zenodo28/100

Figures 1–6. Culicoides peregrinus Kieffer, egg. 1 in Description of immature stages of Culicoides peregrinus (Diptera: Ceratopogonidae), a potent vector of bluetongue virus

Figures 1–6. Culicoides peregrinus Kieffer, egg. 1: Dorsolateral view, 2: dorsal view, 3: micropylar end, 4: posterior end, 5: dorsal papillae of chorion, 6: lateral papillae (left side) and dorsal papillae (right side).

opencc-by-4.0Feb 2017View details →
zenodo28/100

Figure 5 in Indiscriminate ingestion of entomopathogenic nematodes and their symbiotic bacteria by Aedes aegypti larvae: a novel strategy to control the vector of Chikungunya, dengue and yellow fever

Figure 5. Aedes aegypti larval mortality when exposed to 1000 infective juveniles (IJs) of Heterorhabditis bacteriophora in different volumes of water.

opencc-by-4.0Aug 2021View details →

ScienceDex guides

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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.

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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)

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.

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