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Figure 2 from: Lemos-Espinal JA, Smith GR, Rorabaugh JC (2019) A conservation checklist of the amphibians and reptiles of Sonora, Mexico, with updated species lists. ZooKeys 829: 131-160. https://doi.org/10.3897/zookeys.829.32146
Figure 2 Climate map of the state of Sonora, Mexico (modified from García – CONABIO 1998).
Figure 4 in A new species of the genus Anthonomus Germar, 1817 (Coleoptera, Curculionidae) from Altai with a list of the Russian species
Figure 4. Host plant of Anthonomus dudkoi sp. n.
Long term butterfly trip species presence data with list lengths
<p>These data were used as part of a study analyzing the patterns of changing phenology and abundance. Species day of year observations were analyzed using quantile regression (of the 0.1 and 0.9 quantiles) of over years. Species abundance trends were measured using list length analysis, the result being the annual change in the proportion of trips on which a species was observed. Both phenology and abundance metrics were correlated and analyzed to understand thier potential relationship. Please refer to the manuscript, appendix, and metadata for more information.</p>
Figure 2 from: Yoosefi Lafooraki E, Shayan Mehr M, Yahyapour E, Kahrarian M (2013) An introduction to Iranian Collembola (Hexapoda): an update to the species list. ZooKeys 335: 69-83. https://doi.org/10.3897/zookeys.335.5491
Figure 2 - Map of Iran showing the provinces (*) from which Collembola have been collected.
Figure 1 from: Yoosefi Lafooraki E, Shayan Mehr M, Yahyapour E, Kahrarian M (2013) An introduction to Iranian Collembola (Hexapoda): an update to the species list. ZooKeys 335: 69-83. https://doi.org/10.3897/zookeys.335.5491
Figure 1 - Extractor system for soil animals.
Figure 3 from: Yoosefi Lafooraki E, Shayan Mehr M, Yahyapour E, Kahrarian M (2013) An introduction to Iranian Collembola (Hexapoda): an update to the species list. ZooKeys 335: 69-83. https://doi.org/10.3897/zookeys.335.5491
Figure 3 - Percentage of Iranian Collembola species from different families.
Figure 2 from: Janion-Scheepers C, Deharveng L, Bedos A, Chown SL (2015) Updated list of Collembola species currently recorded from South Africa. ZooKeys 503: 55-88. https://doi.org/10.3897/zookeys.503.8966
Figure 2 - Number of Collembola species recorded for each degree square grid in South Africa.
Figure 1 from: De Meyer M, Delatte H, Mwatawala M, Quilici S, Vayssières J-F, Virgilio M (2015) A review of the current knowledge on Zeugodacus cucurbitae (Coquillett) (Diptera, Tephritidae) in Africa, with a list of species included in Zeugodacus. In: De Meyer M, Clarke AR, Vera MT, Hendrichs J (Eds) Resolution of Cryptic Species Complexes of Tephritid Pests to Enhance SIT Application and Facilitate International Trade. ZooKeys 540: 539-557. https://doi.org/10.3897/zookeys.540.9672
Figure 1 - Habitus image of Zeugodacus cucurbitae (photo R.S. Copeland).
Long term butterfly trip species presence data with list lengths
Open the record for dataset details and reuse information.
FIGURE 3 in Annotated species list of Ophiuroidea (Echinodermata) from the Persian Gulf and Gulf of Oman, with new records
FIGURE 3. Live photos of Ophiocoma scolopendrina (spm not kept), Persian Gulf, Bustaneh, Iran. A, dorsal aspect, B, ventral aspect.
FIGURE 9 in Annotated species list of Ophiuroidea (Echinodermata) from the Persian Gulf and Gulf of Oman, with new records
FIGURE 9. Live photos of Ophiothela venusta [SMNH-178937], Persian Gulf, Iran, Bustaneh. A, dorsal view, dark red star pattern on disc center, grey radii and arms, dark red arm spines, bright red bands with dark borders on distal arms, B, same as A, ventral view, mostly dark red on disc and arms, C, dark red patch on dorsal disc center, pink-orange granules on disc and arms, bright red bands on middle and distal arms, D, white star-like pattern with dark brown borders on dorsal disc center, bright red arms, dark spines, faint darker bands on distal arms (small inset photo shows same in ethanol, all red has faded to light brownbeige), E, uniformly dark red individual, F, dark and light purple pattern on disc with some cream and arms banded along full length, G, Dark red dorsal disc with thin white line and white patches, arm bases light pink on top, dark red laterally, H, same as G, in alcohol, colors have faded to purple, higher granules on disc center and in interradii, I, arm base and disc edge, showing clusters of high granules, J, same animal as in Fig. 7F, in ethanol, showing variable granule size and color change.
FIGURE 2 in Annotated species list of Ophiuroidea (Echinodermata) from the Persian Gulf and Gulf of Oman, with new records
FIGURE 2. Habitats at the sites where brittle stars were collected by the present study (see Table 1). A, Bandar Lengeh, B, Bustaneh, C, Chabahar Bay (Hotel Lipar), D, Chabahar Bay (University coast), E, Chabahar Bay (Tis), F, Qeshm Island.
FIGURE 8 in Annotated species list of Ophiuroidea (Echinodermata) from the Persian Gulf and Gulf of Oman, with new records
FIGURE 8. Live photos of hexamerous fissiparous Ophiothela sp. [SMNH-178936] (A–E), Persian Gulf, Iran, Bustaneh, A, specimen with half disc and three small regenerating arms, three larger arms of different sizes may indicate several previous splits, dorsal view, B, another recently split individual with three new arms, and three older ones, dorsal view, C, same as B, ventral view, D, hexamerous individual with three smaller and three larger arms, disc almost fully regenerated, dorsal view, E, same as E, ventral view, Ophiothela venusta, same locality, with regenerating arms (F–K), F, individual with arms of different sizes, dorsal view, G, specimen with two narrower and three wider arms, separated by one and two wider arms, dorsal view, H, same as G, ventral view, I, individual with two regenerating arms adjacent to each other, dorsal view, J, same as I, ventral view, K, individual with one large arm, one intermediate and three small arms, dorsal view, Ophiothela danae, New Caledonia, Lifou Island, dorsal view.
FIGURE 3. Nothotylenchus siddiqii n in New and known species of Nothotylenchus Thorne, 1941 (Nematoda: Anguinidae) from Iran with an updated list of species
FIGURE 3. Nothotylenchus siddiqii n. sp. A, C, E-H, J & K: Female. B, D, I: Male. A & D: General morphology; B & C: Head & stylet; E: Pharynx; F: PUS; G: Basal pharyngeal bulb; H-J: Tail; K: Lateral fields.
FIGURE 5. Nothotylenchus hexaglyphus. A, C-F, K-I & M in New and known species of Nothotylenchus Thorne, 1941 (Nematoda: Anguinidae) from Iran with an updated list of species
FIGURE 5. Nothotylenchus hexaglyphus. A, C-F, K-I & M: Female. B, G, H & L: Male. A: Lateral fields; B-D: Head & stylet; E: Pharynx; F-I: Basal pharyngeal bulb; J: PUS; K-M: Tail.
FIGURE 4. Nothotylenchus siddiqii n in New and known species of Nothotylenchus Thorne, 1941 (Nematoda: Anguinidae) from Iran with an updated list of species
FIGURE 4. Nothotylenchus siddiqii n. sp. A-L: Female. M: Male. A: Head & stylet; B-D: Lateral fields; E: Median bulb; F & G: Basal pharyngeal bulb; H: PUS; I: Post-vulval body length; J-L: Tail; M: Spicules, gubernaculum & bursa (All scale bars = 10 µm, except I = 20 µm).
FIGURE 1. Mohammad A.-R in An annotated list of the species of lice (Insecta: Phthiraptera) described by Mohammad A.-R. Ansari
FIGURE 1. Mohammad A.-R. Ansari and Theresa Clay at the back entrance of the British Museum (Natural History) London, 1950's. Phthiraptera.info—http://phthiraptera.info/file/1531
APPENDIX List of specimens used in the traditional morphometric (TM) and geometric morphometric (GM) analyses. Specimens in bold are type specimens in Systematics of West African Miniopterus with the description of a new species
APPENDIX List of specimens used in the traditional morphometric (TM) and geometric morphometric (GM) analyses. Specimens in bold are type specimens
APPENDIX Individuals included in the genetic and/or skull morphology analyses are presented with source and locality information (reference to sites in Fig. 1 are given in parentheses when available). Voucher numbers are provided for individuals that were collected: AMNH — American Museum of Natural History, New York, NY, USA, BMNH — Natural History Museum, London, UK, FMNH — Field Museum, Chicago, IL, USA, HZM — Harrison Zoological Museum, Kent, UK, MCZ — Museum of Comparative Zoology, Harvard, MA, USA, MZB — Muzeum Zoologicum Bogoriense, Bogor, Indonesia, RMNH — National Museum of Natural History Naturalis, Leiden, Netherlands, SEN — Senckenberg Museum, Frankfurt, Germany, TK — tissue collection and TTU — specimen numbers; Texas Tech. University, Lubbock, TX, USA, and USNM — Smithsonian Institute, Washington D.C., USA. All specimens from peninsular Malaysia with THK or MBCRU field numbers were collected by A. Zubaid, and the specimens or duplicate wing punches were deposited at UKM (Universiti Kebangsaan Malaysia, Bangi, Selangor, Malaysia). The original taxonomy of type specimens (type) are listed. Haplotypes (Hap) are given for individuals of H. bicolor (=H. bicolor-131) and H. kunzi (=H. bicolor-142). GenBank accession numbers are given for one representative of each unique haplotype in A new species in the Hipposideros bicolor group (Chiroptera: Hipposideridae) from Peninsular Malaysia
APPENDIX Individuals included in the genetic and/or skull morphology analyses are presented with source and locality information (reference to sites in Fig. 1 are given in parentheses when available). Voucher numbers are provided for individuals that were collected: AMNH — American Museum of Natural History, New York, NY, USA, BMNH — Natural History Museum, London, UK, FMNH — Field Museum, Chicago, IL, USA, HZM — Harrison Zoological Museum, Kent, UK, MCZ — Museum of Comparative Zoology, Harvard, MA, USA, MZB — Muzeum Zoologicum Bogoriense, Bogor, Indonesia, RMNH — National Museum of Natural History Naturalis, Leiden, Netherlands, SEN — Senckenberg Museum, Frankfurt, Germany, TK — tissue collection and TTU — specimen numbers; Texas Tech. University, Lubbock, TX, USA, and USNM — Smithsonian Institute, Washington D.C., USA. All specimens from peninsular Malaysia with THK or MBCRU field numbers were collected by A. Zubaid, and the specimens or duplicate wing punches were deposited at UKM (Universiti Kebangsaan Malaysia, Bangi, Selangor, Malaysia). The original taxonomy of type specimens (type) are listed. Haplotypes (Hap) are given for individuals of H. bicolor (=H. bicolor-131) and H. kunzi (=H. bicolor-142). GenBank accession numbers are given for one representative of each unique haplotype
List of specimens, species codes, localities (NI, Northern Iberia; CI, Central Iberia; SI, Southern Iberia; AU, Austria; BL, Bulgaria; CR, Croatia; CZ, Czech Republic; DK, Denmark; FR, France; GE, Germany; GR, Greece; HN, Hungary; SD, Sweden; SW, Switzerland; TK, Turkey), haplotypes codes for species and GenBank accession numbers of the samples used for an overall molecular screening of bat cryptic diversity in Iberia using a mtDNA cytb fragment in The Iberian contribution to cryptic diversity in European bats
List of specimens, species codes, localities (NI, Northern Iberia; CI, Central Iberia; SI, Southern Iberia; AU, Austria; BL, Bulgaria; CR, Croatia; CZ, Czech Republic; DK, Denmark; FR, France; GE, Germany; GR, Greece; HN, Hungary; SD, Sweden; SW, Switzerland; TK, Turkey), haplotypes codes for species and GenBank accession numbers of the samples used for an overall molecular screening of bat cryptic diversity in Iberia using a mtDNA cytb fragment
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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)
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DANDI Archive for NWB datasets
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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.