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Figure 1 from: Novo M, Fernández R, Fernández Marchán D, Gutiérrez M, Diaz Cosin D (2012) Compilation of morphological and molecular data, a necessity for taxonomy: The case of Hormogaster abbatissae sp. n. (Annelida, Clitellata, Hormogastridae). ZooKeys 242: 1-17. https://doi.org/10.3897/zookeys.242.3996
Figure 1 - External morphology of Hormogaster abbatissae. An illustration of nephridial bladders in segments 14 and 50 is shown in the upper right corner.
Figure 5 from: Rozylowicz L, Cogălniceanu D, Székely P, Samoilă C, Stănescu F, Tudor M, Székely D, Iosif R (2013) Diversity and distribution of reptiles in Romania. ZooKeys 341: 49-76. https://doi.org/10.3897/zookeys.341.5502
Figure 5 - The box and whisker plot of altitudinal distribution of reptile species in Romania. The boxes represent 25th–75th percentiles, upper and lower whiskers extends minimum and maximum data point within 1.5 box heights from the bottom and from the top of the boxes. Asterisks indicate outliers, lines and dots inside the boxes denote medians and means, respectively.
Figure 1 from: Rozylowicz L, Cogălniceanu D, Székely P, Samoilă C, Stănescu F, Tudor M, Székely D, Iosif R (2013) Diversity and distribution of reptiles in Romania. ZooKeys 341: 49-76. https://doi.org/10.3897/zookeys.341.5502
Figure 1 - Number of publications with distribution data of reptiles in Romania (1823–2013). The reference line indicates the last country wide assessment published in 1961 (Fuhn and Vancea 1961).
Figure 2 from: Rozylowicz L, Cogălniceanu D, Székely P, Samoilă C, Stănescu F, Tudor M, Székely D, Iosif R (2013) Diversity and distribution of reptiles in Romania. ZooKeys 341: 49-76. https://doi.org/10.3897/zookeys.341.5502
Figure 2 - The presence records of reptiles per UTM 5 × 5 km grid cell in Romania. Records reported before 1990 were plotted as old records whereas those reported after 1990 were considered new records.
Figure 3 from: Rozylowicz L, Cogălniceanu D, Székely P, Samoilă C, Stănescu F, Tudor M, Székely D, Iosif R (2013) Diversity and distribution of reptiles in Romania. ZooKeys 341: 49-76. https://doi.org/10.3897/zookeys.341.5502
Figure 3 - The hotspots of sampling efforts within Romania. The p value was < 0.05 when Z scores took values between 1.96 and 61.60, suggesting a highly clustered pattern in the number of reptile occurrences per UTM 5 × 5 km grid cell. The numbered hotspots were: 1 Măcin Mountains 2 Jiului Gorges 3 Iron Gates and Mehedinţi Plateau 4 Sweet chestnut Arboretum of Baia Mare and the surroundings of Baia Mare town 5 Goşman Mountains and the surroundings of Piatra Neamţ town 6 the Danube Delta and Babadag Forest 7 the Danube Delta and Histria Archaeological Complex 8 Canaraua Fetii – Iortmac 9 Hagieni – Cotu Văii Forest 10 Nera river mouth and Baziaş.
Figure 2 from: Galicia D, Pulido-Flores G, Miranda R, Monks S, Amezcua A, Imas M, Chaves A, Arino A (2014) Hidalgo Fishes: Dataset on freshwater fishes of Hidalgo state (Mexico) in the MZNA fish collection of the University of Navarra (Spain). ZooKeys 403: 67-109. https://doi.org/10.3897/zookeys.403.7149
Figure 2 - Relative abundance of families. a Number of species and b percentage of specimens per family recorded in the dataset.
Figure 1 from: Galicia D, Pulido-Flores G, Miranda R, Monks S, Amezcua A, Imas M, Chaves A, Arino A (2014) Hidalgo Fishes: Dataset on freshwater fishes of Hidalgo state (Mexico) in the MZNA fish collection of the University of Navarra (Spain). ZooKeys 403: 67-109. https://doi.org/10.3897/zookeys.403.7149
Figure 1 - Study area. Locations of sampling points (black dots) in a Lake Tecocomulco and b Metztitlán Canyon Biosphere Reserve.
Figure 3 from: Galicia D, Pulido-Flores G, Miranda R, Monks S, Amezcua A, Imas M, Chaves A, Arino A (2014) Hidalgo Fishes: Dataset on freshwater fishes of Hidalgo state (Mexico) in the MZNA fish collection of the University of Navarra (Spain). ZooKeys 403: 67-109. https://doi.org/10.3897/zookeys.403.7149
Figure 3 - Hidalgo freshwater fishes collection flowchart. The diagram shows all the steps followed from the field sampling to the publishing of the data.
Figures 5-7 from: Lohaj R, Čeplík D, Lakota J (2013) A new species of the genus Duvalius sg. Neoduvalius from Montenegro with taxonomical remarks on the genus Duvalius (Coleoptera, Carabidae, Trechini). ZooKeys 278: 91-104. https://doi.org/10.3897/zookeys.278.4650
Figures 5-7 - Duvalius (Neoduvalius) gejzadunayi sp. n., 5 aedeagus, left lateral aspect 6 aedeagus, dorsal aspect 7 female genitalia, ventral aspect
Figures 1-4 from: Lohaj R, Čeplík D, Lakota J (2013) A new species of the genus Duvalius sg. Neoduvalius from Montenegro with taxonomical remarks on the genus Duvalius (Coleoptera, Carabidae, Trechini). ZooKeys 278: 91-104. https://doi.org/10.3897/zookeys.278.4650
Figures 1-4 - 1, 3 Duvalius (Neoduvalius) gejzadunayi sp. n., Holotype male, Duboki potok cave 2, 4 Duvalius (Neoduvalius) starivlahi Guéorguiev et al. 2000, Topotype male, Hadži Prodanova pećina cave 1, 2 habitus, dorsal view 3, 4 detail of head and pronotum.
Figure 9 from: Carrison-Stone D, Van Syoc R, Williams G, Simison B (2013) Two new species of the gorgonian inhabiting barnacle, Conopea (Crustacea, Cirripedia, Thoracica), from the Gulf of Guinea. ZooKeys 270: 1-20. https://doi.org/10.3897/zookeys.270.3736
Figure 9 - Conopea fidelis sp. n. Cirri and penis. A CI (CASIZ178651) B CII (CASIZ178651) C CIII (CASIZ178651) D CIV (CASIZ178651) E CIV spines (CASIZ178651) F CV (CASIZ178651) G VI (CASIZ178651) H penis basidorsal point (CASIZ174803) I penis tip (CASIZ174322). Scale bar = 200μm.
Figure 8 from: Carrison-Stone D, Van Syoc R, Williams G, Simison B (2013) Two new species of the gorgonian inhabiting barnacle, Conopea (Crustacea, Cirripedia, Thoracica), from the Gulf of Guinea. ZooKeys 270: 1-20. https://doi.org/10.3897/zookeys.270.3736
Figure 8 - Conopea fidelis sp. n. Mouth parts. A: labrum (CASIZ174322) B mandibular palp (CASIZ174803) C mandible (CASIZ174322) D maxilla I (CASIZ174322) E maxilla II (CASIZ174322). Scale bar = 200μm.
Figure 7 from: Carrison-Stone D, Van Syoc R, Williams G, Simison B (2013) Two new species of the gorgonian inhabiting barnacle, Conopea (Crustacea, Cirripedia, Thoracica), from the Gulf of Guinea. ZooKeys 270: 1-20. https://doi.org/10.3897/zookeys.270.3736
Figure 7 - Conopea fidelis sp. n.Opercular plates. A scutum exterior (CASIZ174803) B scutum interior (CASIZ174322) C scutum interior (CASIZ178651) D scutum interior (CASIZ174803) E tergum exterior (CASIZ174803) F tergum interior (CASIZ174322) G tergum interior (CASIZ178651). Scale bar = 200μm.
Figure 6 from: Carrison-Stone D, Van Syoc R, Williams G, Simison B (2013) Two new species of the gorgonian inhabiting barnacle, Conopea (Crustacea, Cirripedia, Thoracica), from the Gulf of Guinea. ZooKeys 270: 1-20. https://doi.org/10.3897/zookeys.270.3736
Figure 6 - Conopea fidelis sp. n. A whole shell(CASIZ174322A) B whole shell attached to gorgonian axis (CASIZ174322B). Scale bar = 2 mm.
Figure 5 from: Carrison-Stone D, Van Syoc R, Williams G, Simison B (2013) Two new species of the gorgonian inhabiting barnacle, Conopea (Crustacea, Cirripedia, Thoracica), from the Gulf of Guinea. ZooKeys 270: 1-20. https://doi.org/10.3897/zookeys.270.3736
Figure 5 - Conopea saotomensis sp. n. Cirri and penis. A CI (CASIZ174805) B CII (CASIZ174805) C CIII (CASIZ174805) D CIV (CASIZ174805) E CIV spines (CASIZ175526) F CV (CASIZ174805) G CVI (CASIZ174805) H penis basidorsal point (CASIZ175526) I penis tip (CASIZ175526). Scale bar = 200 μm.
Figure 4 from: Carrison-Stone D, Van Syoc R, Williams G, Simison B (2013) Two new species of the gorgonian inhabiting barnacle, Conopea (Crustacea, Cirripedia, Thoracica), from the Gulf of Guinea. ZooKeys 270: 1-20. https://doi.org/10.3897/zookeys.270.3736
Figure 4 - Conopea saotomensis sp. n. Mouth parts. A labrum (CASIZ174805) B mandibular palp (CASIZ174805) C mandible (CASIZ174805) D maxilla I (CASIZ173190) E maxilla I (CASIZ175526) F maxilla II (CASIZ178655). Scale bar = 200μm.
Figure 3 from: Carrison-Stone D, Van Syoc R, Williams G, Simison B (2013) Two new species of the gorgonian inhabiting barnacle, Conopea (Crustacea, Cirripedia, Thoracica), from the Gulf of Guinea. ZooKeys 270: 1-20. https://doi.org/10.3897/zookeys.270.3736
Figure 3 - Conopea saotomensis sp. n. Opercular plates. A scutum exterior (CASIZ175526) B scutum interior (CASIZ178655) C scutum interior (CASIZ175526) D scutum interior (CASIZ174804) E tergum exterior (CASIZ175526) F tergum interior (CASIZ178655) G tergum interior (CASIZ175526) H tergum interior (CASIZ174804). Scale bar = 200μm.
Figure 1 from: Carrison-Stone D, Van Syoc R, Williams G, Simison B (2013) Two new species of the gorgonian inhabiting barnacle, Conopea (Crustacea, Cirripedia, Thoracica), from the Gulf of Guinea. ZooKeys 270: 1-20. https://doi.org/10.3897/zookeys.270.3736
Figure 1 - Bayesian phylogeny based on concatenated H3 nDNA and COI mtDNA sequences. Posterior probabilities of 0.95 or greater are shown. The relationship among the Gulf of Guinea species and Conopea calceola is unresolved.
Figure 2 from: Carrison-Stone D, Van Syoc R, Williams G, Simison B (2013) Two new species of the gorgonian inhabiting barnacle, Conopea (Crustacea, Cirripedia, Thoracica), from the Gulf of Guinea. ZooKeys 270: 1-20. https://doi.org/10.3897/zookeys.270.3736
Figure 2 - Conopea saotomensis sp. n., A whole shell (CASIZ174804) B whole shell attached to gorgonian axis (CASIZ174806). Scale bar = 2 mm.
Figure 7 from: Diaz Cosin D, Novo M, Fernández R, Fernández Marchán D, Gutiérrez M (2014) A new earthworm species within a controversial genus: Eiseniona gerardoi sp. n. (Annelida, Lumbricidae) - description based on morphological and molecular data. ZooKeys 399: 71-87. https://doi.org/10.3897/zookeys.399.7273
Figure 7 - Bayesian inference tree based on COI sequences of Eiseniona gerardoi and other lumbricids represented in GeneBank. Eiseniona gerardoi (see UCMLT codes in Table 1) clusters with Eiseniona albolineata.
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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.
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.