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158 results for “historical records”
FIGURE 4 in A review of records of the Trimeresurus albolabris Gray, 1842 group from the Indian subcontinent: expanded description and range extension of Trimeresurus salazar, redescription of Trimeresurus septentrionalis and rediscovery of historical specimens of Trimeresurus davidi (Reptilia: Viperidae)
FIGURE 4. Trimeresurus salazar live uncollected adult females from Jashpur and Bilaspur (Kanan Pendari Zoo) India. Photos: Vivek Sharma
A Brief History of Menominee Agriculture: Historic Perceptions, Late Prehistoric Realities, and Ancestral Practices for a Sustainable Future (recording)
<p>William G. Gartner, a geoarchaeologist at the University of Wisconsin-Madison, delivered this talk on July 31st, 2024, at the Ethical Open Science for Past Global Change Data 2024 Symposium, in Keshena, Wisconsin, on the lands of the Menominee Nation. </p>
FIGURE 1 in Parasites of animals in Papua New Guinea recorded at the National Veterinary Laboratory: a catalogue, historical review and zoogeographical affiliations 3143
FIGURE 1. Map of Papua New Guinea showing the 19 provinces and location of places mentioned in the text.
Data from: Islands in the ice: detecting past vegetation on Greenlandic nunataks using historical records and sedimentary ancient DNA meta-barcoding
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Data from: Genetics, morphology, advertisement calls, and historical records distinguish six new polyploid species of African clawed frog (Xenopus, Pipidae) from West and Central Africa
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Data from: Historical invasion records can be misleading: genetic evidence for multiple introductions of invasive raccoons (Procyon lotor) in Germany
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Historical and contemporary records of the invasive mussel Mytilus galloprovincialis in southern Africa
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Figure 7 from: Turcios-Casco MA, Ávila-Palma HD, LaVal RК, Stevens RD, Ordoñez-Trejo EJ, Soler-Orellana JA, Ordoñez-Mazier DI (2020) A systematic revision of the bats (Chiroptera) of Honduras: an updated checklist with corroboration of historical specimens and new records. Zoosystematics and Evolution 96(2): 411-429. https://doi.org/10.3897/zse.96.51059
Figure 7 Map with new records of D. youngii and N. lanatus for Honduras. None of the previous records (except D. youngii) have exact coordinates, however, we shaded the municipality on each department in which they were recorded. The blue shaded area indicates the localities of N. lanatus captured in the municipality of Zamorano (municipality of San Antonio de Oriente) in the department of Francisco Morazán in central Honduras, and in La Cueva del Viejo in the department of La Paz in western Honduras. The big yellow-shaded area refers to two localities in which L. yerbabuenae was recorded in the municipality of Nacaome in the department of Valle in southern Honduras by Lee and Bradley (1992) and R. D. Bradley in 1991 (GBIF.org 2019). The small brown-shaded areas in southern Honduras refer to the localities in which M. Sandiford reported one L. yerbabuenae from the municipality of Santa Ana de Yusguare in the department of Choluteca (GBIF.org 2019). Finally, the purple point refers to the exact location of D. youngii recorded in the department of Colón in northeastern Honduras. Abbreviations as follows: La Paz (LP), Nacaome (NC), San Antonio de Oriente (SAO), and Santa Ana de Yusguare (SAY). There is no specific area highlighted in La Paz because there are several caves known as Cueva del Viejo.
Figure 6 from: Turcios-Casco MA, Ávila-Palma HD, LaVal RК, Stevens RD, Ordoñez-Trejo EJ, Soler-Orellana JA, Ordoñez-Mazier DI (2020) A systematic revision of the bats (Chiroptera) of Honduras: an updated checklist with corroboration of historical specimens and new records. Zoosystematics and Evolution 96(2): 411-429. https://doi.org/10.3897/zse.96.51059
Figure 6 A – Roost of Thyroptera discifera in a (Musaceae) from the Caribbean lowlands of Costa Rica. B – View of the colony T. discifera inside the leaves of Musa × acuminata. Photos by Bernal Rodríguez.
Figure 3 from: Turcios-Casco MA, Ávila-Palma HD, LaVal RК, Stevens RD, Ordoñez-Trejo EJ, Soler-Orellana JA, Ordoñez-Mazier DI (2020) A systematic revision of the bats (Chiroptera) of Honduras: an updated checklist with corroboration of historical specimens and new records. Zoosystematics and Evolution 96(2): 411-429. https://doi.org/10.3897/zse.96.51059
Figure 3 Diaemus youngii. A – Frosted brownish venter; B – Whitish tip of the wings; C – One pad on the base of the thumb.
Figure 2 from: Turcios-Casco MA, Ávila-Palma HD, LaVal RК, Stevens RD, Ordoñez-Trejo EJ, Soler-Orellana JA, Ordoñez-Mazier DI (2020) A systematic revision of the bats (Chiroptera) of Honduras: an updated checklist with corroboration of historical specimens and new records. Zoosystematics and Evolution 96(2): 411-429. https://doi.org/10.3897/zse.96.51059
Figure 2 A ventral, B lateral and C dorsal views of the skull of C. mexicanus (TTU 104070) captured in the SAG, La Ceiba in the deparment of Atlántida in northern Honduras.
Figure 5 from: Turcios-Casco MA, Ávila-Palma HD, LaVal RК, Stevens RD, Ordoñez-Trejo EJ, Soler-Orellana JA, Ordoñez-Mazier DI (2020) A systematic revision of the bats (Chiroptera) of Honduras: an updated checklist with corroboration of historical specimens and new records. Zoosystematics and Evolution 96(2): 411-429. https://doi.org/10.3897/zse.96.51059
Figure 5 A – Ungual tufts of N. lanatus (TCWC 10992) and B – Naked feet of N. mexicanus (TCWC 19698).
Figure 1 from: Turcios-Casco MA, Ávila-Palma HD, LaVal RК, Stevens RD, Ordoñez-Trejo EJ, Soler-Orellana JA, Ordoñez-Mazier DI (2020) A systematic revision of the bats (Chiroptera) of Honduras: an updated checklist with corroboration of historical specimens and new records. Zoosystematics and Evolution 96(2): 411-429. https://doi.org/10.3897/zse.96.51059
Figure 1 Artibeus inopinatus. A – Adult male captured in Carboneras, Sabanagrande in the department of Francisco Morazán (center of Honduras). B – Adult female captured in Nagarejo, Nacaome in the department of Valle (southern Honduras).
Figure 4 from: Turcios-Casco MA, Ávila-Palma HD, LaVal RК, Stevens RD, Ordoñez-Trejo EJ, Soler-Orellana JA, Ordoñez-Mazier DI (2020) A systematic revision of the bats (Chiroptera) of Honduras: an updated checklist with corroboration of historical specimens and new records. Zoosystematics and Evolution 96(2): 411-429. https://doi.org/10.3897/zse.96.51059
Figure 4 A Lateral and B ventral views of the skull of Natalus lanatus (TCWC 10992) captured in Zamorano in department of Francisco Morazán, August 1963. C Bicolor ventral pelage of N. lanatus of the same specimen.
Figure 3 in The death adder Acanthophis antarcticus (Shaw & Nodder, 1802) in Victoria: historical records and contemporary uncertainty
Figure 3. The truncated tail tip of death adder specimen D4349 (left) compared with the full tail tip of specimen D3579 (right).
Raw allelic matrix and supplementary materials: Origin and dispersion pathways of guava in the Galapagos Islands inferred through genetics and historical records
<p>Guava (<i>Psidium guajava</i>) is an aggressive invasive plant in the Galapagos Islands. Determining its provenance and genetic diversity could explain its adaptability and spread, and how this relates to past human activities. With this purpose, we analyzed 11 SSR markers in guava individuals from Isabela, Santa Cruz, San Cristobal and Floreana islands in the Galapagos, as well as from mainland Ecuador. The mainland guava population appeared genetically differentiated from the Galapagos populations, with higher genetic diversity levels found in the former. We consistently found that the Central Highlands region of mainland Ecuador is one of the most likely origins of the Galapagos populations. Moreover, the guavas from Isabela and Floreana show a potential genetic input from southern mainland Ecuador, while the population from San Cristobal would be linked to the coastal mainland regions. Interestingly, the proposed origins for the Galapagos guava coincide with the first human settlings of the archipelago. Through Approximate Bayesian Computation, we propose a model where San Cristobal was the first island to be colonized by guava from the mainland, then it would have spread to Floreana and finally to Santa Cruz; Isabela would have been seeded from Floreana. An independent trajectory could also have contributed in the invasion of Floreana and Isabela. The pathway shown in our model agrees with the human colonization history of the different islands in the Galapagos. Our model, in conjunction with the clustering patterns of the individuals (based on genetic distances), suggests that guava introduction history in the Galapagos archipelago was driven by either a single event or a series of introduction events in rapid succession. We thus show that genetic analyses supported by historical sources can be used to track the arrival and spread of invasive species in novel habitats and the potential role of human activities in such processes.</p>
Supplementary material 2 from: Yang L, Huang M, Zhang R, Lv J, Ren Y, Jiang Z, Zhang W, Luan X (2016) Reconstructing the historical distribution of the Amur Leopard (Panthera pardus orientalis) in Northeast China based on historical records. ZooKeys 592: 143-153. https://doi.org/10.3897/zookeys.592.6912
Records in different periods from new gazetteers records :
Supplementary material 1 from: Yang L, Huang M, Zhang R, Lv J, Ren Y, Jiang Z, Zhang W, Luan X (2016) Reconstructing the historical distribution of the Amur Leopard (Panthera pardus orientalis) in Northeast China based on historical records. ZooKeys 592: 143-153. https://doi.org/10.3897/zookeys.592.6912
Distribution information from new gazetteers records and from other resources :
The effect of intensive oyster aquaculture on the regional organic carbon burial: insights from a half-century historical record
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Coffee price sales marketing historical record
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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.