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3,015 results for “occurrences”
Figure 1 in First occurrence of Panthera atrox (Felidae, Pantherinae) in the Mexican state of Hidalgo and a review of the record of felids from the Pleistocene of Mexico
Figure 1. (a) Index map showing the study area in southeastern Hidalgo, central Mexico; the capital of the state (Pachuca) and the late Pleistocene locality El Barrio (HGO-47) are depicted. (b) Stratigraphic section of the El Barrio locality (HGO-47); the arrow indicates the fossil-bearing level.
Figure 3 in First occurrence of Panthera atrox (Felidae, Pantherinae) in the Mexican state of Hidalgo and a review of the record of felids from the Pleistocene of Mexico
Figure 3. Left fifth metacarpal (UAHMP-4222) of Panthera atrox from the late Pleistocene of southeastern Hidalgo, central Mexico. (a) Ventral, (b) dorsal, (c) medial, (d) lateral, (e) proximal, and (f) distal views. Scale bar equals 2 cm.
Figure 5 in First occurrence of Panthera atrox (Felidae, Pantherinae) in the Mexican state of Hidalgo and a review of the record of felids from the Pleistocene of Mexico
Figure 5. Geographic distribution of Panthera atrox in North America during the late Pleistocene (main source: KurtØn and Anderson, 1980). The gray silhouette indicates the record from southeastern Hidalgo, central Mexico.
Figure 7 in First occurrence of Panthera atrox (Felidae, Pantherinae) in the Mexican state of Hidalgo and a review of the record of felids from the Pleistocene of Mexico
Figure 7. Mexican Pleistocene localities with records of felids. The map is regionalized in the morphotectonic provinces of Ferrusquía-Villafranca (1993). Abbreviations of the morphotectonic provinces as in Table 3. Squares indicate the early Pleistocene localities and circles the late Pleistocene localities. The felid record includes the following species: A: Panthera atrox; B: Panthera onca; C: Puma concolor; D: Puma yagouaroundi; E: Lynx rufus; F: Leopardus pardalis; G: Leopardus wiedii; H: Smilodon fatalis; I: Smilodon cf. S. gracilis; J: Felis rexroadensis; K: Miracinonyx inexpectatus.
Figure 6 in First occurrence of Panthera atrox (Felidae, Pantherinae) in the Mexican state of Hidalgo and a review of the record of felids from the Pleistocene of Mexico
Figure 6. Mexican Pleistocene localities with records of Panthera atrox, considering (a) a hypsometric base and (b) the Mexican biogeographic corridors (sensu Ceballos et al., 2010). Diamond indicates the record from southeastern Hidalgo, central Mexico. Biogeographic corridors: 1, eastern US–Sierra Madre Oriental; 2, western US–Baja California; 3, Rocky Mountains–Sierra Madre Occidental; 4, central US–northern Mexico; 5, Transvolcanic Belt– Sierra Madre del Sur; 6, Tamaulipas–Central America Gulf Lowlands; and 7, Sonora–Central America Pacific Lowlands.
Fig. 2 in A unique occurrence of large-sized diamondback squid Thysanoteuthis rhombus (Troschel, 1857) in the Gulf of Mannar
Fig. 2 ― Diamondback squid Thysanoteuthis rhombus caught in hook and line operated in the Gulf of Mannar
Figure 5 in The occurrence and status of black-and-white Puffinus shearwaters on the Kenyan and Tanzanian coasts, with the first specimen records of Persian Shearwater P. persicus persicus
Figure 5. Persian Shearwater Puffinus persicus persicus, off Watamu, coastal Kenya, 1 March 2022, showing the characteristic brown-toned upperparts, much-reduced white in the underwing-coverts, dusky axillaries and brown flanks streaking of this taxon (Jaap Gijsbertsen)
Figure 4 in The occurrence and status of black-and-white Puffinus shearwaters on the Kenyan and Tanzanian coasts, with the first specimen records of Persian Shearwater P. persicus persicus
Figure 4. Persian Shearwater Puffinus persicus, ashore near Pangani, north-east Tanzania, 14 March 2009, showing the characteristic dusky underwing, axillaries, and faint white spot in front of the eye (© B. Simonsen)
Figure 1 in The occurrence and status of black-and-white Puffinus shearwaters on the Kenyan and Tanzanian coasts, with the first specimen records of Persian Shearwater P. persicus persicus
Figure 1. Specimens of Persian Shearwater Puffinus persicus persicus (A) NMK 1442019 (Sidney Shema), (B) NMK B9189 (Sidney Shema), (C) NMK B8032 (Sidney Shema) and Tropical Shearwater Puffinus bailloni nicolae (D) AMNH 788928 (© Augie Kramer) collected in Kenya between 1963 and 2019, alongside a paratype of P. b. nicolae (E) MNHN-ZO-MO-1878-1051 (www.science.mnhn.fr/institution/mnhn/collection/zo/item/ search?lang=en_US) from the Seychelles. Birds not to scale.
Figure 3 in The occurrence and status of black-and-white Puffinus shearwaters on the Kenyan and Tanzanian coasts, with the first specimen records of Persian Shearwater P. persicus persicus
Figure 3. Persian Shearwater Puffinus persicus persicus, Diani, coastal Kenya, 26 February 2019, before it died (© S. Kapila)
Figure 2 in The occurrence and status of black-and-white Puffinus shearwaters on the Kenyan and Tanzanian coasts, with the first specimen records of Persian Shearwater P. persicus persicus
Figure 2. Persian Shearwater Puffinus persicus persicus off Oman (left ML 155569281; © Marcel Gil Velasco) and United Arab Emirates (right ML 93690941; © Tommy Pedersen) alongside the December 1981 specimen from Mtwapa Creek, Kenya (centre NMK B9189; Sidney Shema), showing typical pattern of wear and fading on head producing white grizzling / streaking, and a poorly demarcated border between cheeks and throat.
Data on the occurrence of Vibrio spp. of public health importance (i.e. Vibrio parahaemolyticus, Vibrio vulnificus, and Vibrio cholerae non-O1/non-O139) in seafood in European countries (Jan 2010-Sept 2023)
<p><span>This file contains data on the occurrence of <em><span>Vibrio</span></em><span> spp. of public health importance (<em>i.e</em>. <em>Vibrio parahaemolyticus</em>, <em>Vibrio vulnificus,</em> and <em>Vibrio cholerae </em>non-O1/non-O139) in seafood produced and/or commercialized in Europe, </span>covering studies published between January 2010 and September 2023. </span><span>The systematic review protocol used to identify and extract the information is available at <a href="../doi/10.5281/zenodo.10282513"><span>https://zenodo.org/doi/10.5281/zenodo.10282513</span></a> .</span></p>
Mammal occurrence records (2020-23) in the Valparai Plateau and Anamalai Tiger Reserve, Western Ghats, India
<p>This dataset contains Mammal occurrence records (January 2020 - June 2023) in the Valparai Plateau and Anamalai Tiger Reserve, Western Ghats, India. It includes a few occurrence records of reptiles. Occurrence records were gathered in the field by researchers of the Nature Conservation Foundation, India, using a mobile data collection application. Suggested citation is:<br>Nature Conservation Foundation (2024). Mammal occurrence records (2020-23) in the Valparai Plateau and Anamalai Tiger Reserve, Western Ghats, India. Nature Conservation Foundation, India. Dataset, Zenodo. DOI: 10.5281/zenodo.11903722<br> <br><strong>CONTACT #1</strong><br>1. Name: T. R. Shankar Raman <br>2. Work Address: Nature Conservation Foundation, 1311, 12th A Main, Vijayanagar 1st Stage, Mysuru 570017, Karnataka, India<br>3. Work Phone: +91 821 2515601<br>4. Email address: trsr@ncf-india.org <br>5. ORCID: https://orcid.org/0000-0002-1347-3953</p> <p><strong>CONTACT #2</strong><br>1. Name: Divya Mudappa <br>2. Work Address: Nature Conservation Foundation, 1311, 12th A Main, Vijayanagar 1st Stage, Mysuru 570017, Karnataka, India<br>3. Work Phone: +91 821 2515601<br>4. Email address: divya@ncf-india.org <br>5. ORCID: https://orcid.org/0000-0001-9708-4826</p> <p><strong>Keywords:</strong> tropical rainforest, plantations, Anamalai Hills, Western Ghats, animal distribution, mammals </p> <p><strong>Geographic Coverage:</strong><br>1. Location/Study Area: Valparai Plateau, Tamil Nadu, India; Anamalai Tiger Reserve, Tamil Nadu, India<br>2. GPS coordinates: Valparai Plateau (10°15'- 10°22'N, 76°52' - 76°59'E); Anamalai Tiger Reserve (10°12' - 10°35'N, 76°49' - 77°24'E)</p> <p><strong>Temporal Coverage:</strong><br>1. Begins: 2020-01-11 (Year, Month, Day)<br>2. Ends: 2023-06-02 (Year, Month, Day)</p> <p>Besides the 000_readMe.txt file containing this information, the dataset includes 60 images (photographs), three comma-delimited text (csv) files, and one R markdown text file with R code as explained below:<br>1) 001_mammalData.csv -- This file has the main mammal occurrence data with relevant and renamed columns derived from the original downloaded Excel worksheet file</p> <p>2) 002_placeLocs.csv -- This file lists names places for which the GPS location was unavailable from the mobile phone application, and was manually assigned to coordinates with 500 m accuracy</p> <p>3) 003_nameMatch.csv -- This file matches the name as originally recorded with the correct common name and scientific name</p> <p>4) 004_mammup.Rmd -- R code for processing the files to create a file for upload as an occurrence dataset on the Global Biodiversity Information Facility (GBIF.org)</p> <p>+60 image files (with ".jpg" file extension)</p> <p><strong>FILES INCLUDED IN DATASET</strong></p> <p><strong>001_mammdata.csv</strong><br>This file has the main mammal occurrence data with relevant and renamed columns derived from the original downloaded Excel worksheet file <br>recordedBy: Observer who recorded/made the observation<br>username: Username of person on whose mobile phone the data were noted<br>timestamp: Automatic time stamp of date and time when app was used<br>date: Date of observation<br>time: Time of observation<br>decimalLatitude: Latitude in decimal degrees N<br>decimalLongitude: Longitude in decimal degrees E<br>GPSaltitude: Altitude in metres<br>GPSaccuracy: Horizontal accuracy of GPS location in metres<br>place: Name of locality<br>habitat: Habitat type<br>species: Species common name<br>count: Number of individuals observed<br>countType: Total (solitary or fully counted groups) or Partial (incompletely counted groups)<br>obsType: Type of observation: sighting, sign (droppings or vocalisation), death, roadkill, electrocution, other<br>notes: Notes or remarks on observation<br>imageID: Image filename if available (NA, if not available)<br>instanceID: Automatically generated unique identifier of observation</p> <p><strong>002_placeLocs.csv</strong><br>This file lists names places for which the GPS location was unavailable from the mobile phone application, and was manually assigned to coordinates with 500 m accuracy<br>place: Name of locality as recorded<br>lat: Assigned latitude in decimal degrees N<br>long: Assigned longitude in decimal degrees E<br>GPSaccuracy: Assigned as 500 m – Horizontal accuracy of GPS location in metres</p> <p><strong>003_nameMatch.csv</strong><br>This file matches the name as originally recorded with the correct common name and scientific name.<br>verbatimIdentification: Identification as originally recorded in the ‘species’ column of the mammdata.csv file<br>vernacularName: Common or engish name<br>scientificName: Scientific name</p> <p><strong>004_mammup.Rmd</strong><br>R code for processing the files to create a file for upload as an occurrence dataset on the Global Biodiversity Information Facility (GBIF.org)</p>
Figure 2 in Occurrence of the Ambrosia Beetle Xyleborinus exiguus (Walker) (Curculionidae: Scolytinae: Xyleborini) on the Island of Oʻahu, Hawaiʻi, USA
Figure 2. One of five most parsimonious trees found in an exhaustive search. The clade comprising individuals from Hawaiʻi and Papua New Guinea was unresolved in the strict consensus of the five most parsimonious trees. Numbers at nodes are bootstrap values (>90%) determined with 500 pseudo-replicates using branch and bound searches.
Figure 1 in Occurrence of the Ambrosia Beetle Xyleborinus exiguus (Walker) (Curculionidae: Scolytinae: Xyleborini) on the Island of Oʻahu, Hawaiʻi, USA
Figure 1. Habitus of Xyleborinus exiguus female, from Hawaiʻi, A. lateral, B. declivity, D. dorsal; and X. saxesenii female, C. declivity, E. dorsal.
Figure 3 in Early to middle Pleistocene occurrences of Litoria, Neobatrachus and Pseudophryne (Anura) from the Nullarbor Plain, Australia: first frogs from the "frog-free zone"
Figure 3. Pleistocene frog ilia from Leaena's Breath Cave (prefix WAM) compared with modern specimens (prefix SAMA). a) WAM 09.3.264. Right ilium of holotype of Litoria lundeliusi sp. nov. from Leaena's Breath Cave (unit 3). b) WAM 09.3.264. Enlargement of acetabular region of holotype of Litoria lundeliusi sp. nov. c) SAMA R68398. Representative left ilium of Litoria adelaidensis. d) SAMA R68399. Representative right ilium of Litoria rubella sensu stricto. e–h) Representative ilia of Neobatrachus sudelli highlighting extreme divergence in the form of the dorsal prominence. e) WAM 09.3.265. f) WAM 09.3.261. g) WAM 09.3.269. h) WAM 09.3.273. i) Right ilium of Pseudophryne sp. indet.
Figure 1 in Early to middle Pleistocene occurrences of Litoria, Neobatrachus and Pseudophryne (Anura) from the Nullarbor Plain, Australia: first frogs from the "frog-free zone"
Figure 1. Map of Australia showing modern occurrence records extracted from the Atlas of Living Australia (www.ala.org.au) and location of Leaena's Breath Cave (black triangle). a) Anura. b) Neobatrachus sudelli. Note that the two most northwestern records may represent N. aquilonius (J. D. Roberts, pers. comm., 27 June 2015). c) Pseudophryne guentheri (light green) and P. occidentalis (dark green). d) Litoria adelaidensis (red), L. cyclorhyncha (purple) and L. moorei (light brown).
Figure 2 in A review of the occurrence and ecology of dense populations of Ditrupa arietina (Polychaeta: Serpulidae)
Figure 2. Photo of East Shetland Basin survey station 28 sample with numerous Ditrupa tubes; also visible are the solitary coral Caryophyllia smithii (red arrow) and the foraminiferan Astrorhiza arenaria (yellow arrow).
Figure 1 in A review of the occurrence and ecology of dense populations of Ditrupa arietina (Polychaeta: Serpulidae)
Figure 1. Records of high densities of Ditrupa from the North-east Atlantic and Mediterranean Sea. 1, Stephen (1923). 2, Glémarec (1969). 3, Hartley and Dicks (1977). 4, Dyer et al. (1982). 5, Gambi and Giangrande (1986). 6, Grémare et al. (1998). 7, Cosentino and Giacobbe (2006). 8, Hartley Anderson Ltd (2008). 9, Labrune et al. (2007a). 10, Gardline (2009). 11, Morton and Salvador (2009). 12, Wilson et al. (1983).
Figure 2. Marginaster paucispinus NMV F240386 in New occurrence of Poraniidae (Valvatacea, Asteroidea) in Australia with a new genus and species from deep-sea settings
Figure 2. Marginaster paucispinus NMV F240386: a, abactinal view; b, actinal view; USNM holotype 032641: c, abactinal view; d, actinal view. MNHN-2013-1518: e, abactinal view; f, actinal view. Scale bars a, b=1.0 mm, c, d, e, f=1.5 mm. Photos by Melanie Mackenzie NMV.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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