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769 results for “range extension”
Fig. 1 in New records, range extension and call description for the stream-breeding frog Hyloscirtus lascinius (Rivero, 1970) in Venezuela
Fig. 1. Hyloscirtus lascinius from Venezuela. (A) Campamento Guacharaca, Sierra de Perijá, Zulia state; (B) Near La Macana, Mérida state; (C) Quebrada La Rana, Mérida state. Photos: F.J.M. Rojas-Runjaic (A) and C.L. Barrio-Amorós (B and C).
Figure 6. Response curve showing how each environmental variable affected the Maxent prediction. Variables A, B in PhylOgeOgraphy and pOtential distributiOn OF Sturnira lilium and S. giannae (ChirOptera: PhyllOstOmidae) With range eXtensiOn FOr S. giannae in the CerradO and Pantanal biOmes
Figure 6. Response curve showing how each environmental variable affected the Maxent prediction. Variables A, B, and C were the ones that most affected the potential distribution of S. giannae, and D, E, and F most affected the potential distribution of S. lilium. The curves show the average response of the 10 replicate Maxent runs (red) and the standard deviation (blue).
Figure 2 in PhylOgeOgraphy and pOtential distributiOn OF Sturnira lilium and S. giannae (ChirOptera: PhyllOstOmidae) With range eXtensiOn FOr S. giannae in the CerradO and Pantanal biOmes
Figure 2. Detail of the teeth in S. lilium (A and D – MN 82228) and S. giannae (B and E – MN 84766, C and F – MN 82217). The shape of the upper internal incisor unicuspid in S. lilium (A) and unicuspid or bicuspid in S. giannae (respectively B, C). Metaconid of first inferior molar (m1) wide mesodistally and short cervico-occlusal (D, E, and F). Metaconid of second inferior molar (m2) large mesodistally in S. lilium (D) and in S. giannae (F), or short mesodistally and long cervico-occlusally (E) in S. giannae. Scale bars: 1 mm.
Figure 4 in PhylOgeOgraphy and pOtential distributiOn OF Sturnira lilium and S. giannae (ChirOptera: PhyllOstOmidae) With range eXtensiOn FOr S. giannae in the CerradO and Pantanal biOmes
Figure 4. Map showing the distribution and location of analyzed samples of S. giannae in gray circles and blue boundaries, and of S. lilium in black circles and green boundaries. The blue star is the type locality of S. giannae, and the green star is the type locality of S. lilium. The dotted black line marks the extent of S. giannae 's territory in Brazil: Mato Grosso State (1) Barão de Melgaço, and Maranhão State (2) Alto Parnaíba. Other localities are in the Appendix 1.
Fig. 1 in Short Communication Range extension and some morphological characteristics of Ptychoglossus brevifrontalis, Boulenger, 1912 (Squamata: Alopoglossidae) in Suriname
Fig. 1. Map showing the occurrence of P. brevifrontalis in Suriname. The blue dot represents the first recorded specimen from Suriname while the red triangle depicts the specimen collected at the BNP. Fig. 2. Lateral view of head of P. brevifrontalis showing the labials. Fig. 3. Anal scales of P. brevifrontalis.
Fig. 4 in Short Communication Range extension and some morphological characteristics of Ptychoglossus brevifrontalis, Boulenger, 1912 (Squamata: Alopoglossidae) in Suriname
Fig. 4. Habitat where Ptychoglossus brevifrontalis was collected at the BNP. Picture by A. Gangadin.
Figure 2. A in Range extension and morphology of the Italian wall lizard, Podarcis siculus (Rafinesque-Schmaltz, 1810) (Squamata: Lacertidae), from Turkey
Figure 2. A general view of the habitats from (a) Atakum (Samsun) and (b) Gelibolu (Çanakkale), where the specimens of Podarcis siculus were found.
Figure 2 in A new combination of a tussock moth species under Genus Himala Moore (Lepidoptera: Erebidae: Lymantriinae) and its range extension
Figure 2. AdultHimala ochripes (Moore) comb. n.: 1. Forewing, 2. Hindwing, 3. Male Genitalia – ventral view, 4. Dorsal view of male genitalia, 5. Lateral view of male genitalia, 6. Valva, 7. Aedeagus.
Figure 1 in Short Communication Range extension and first record of Meretrix lusoria (Röding, 1798) (Mollusca: Bivalvia: Veneridae) from Indian coastal waters
Figure 1. Meretrix lusoria (Röding, 1798), (A) exterior, (B) interior, (C) hinge region; scale bar: 10 mm.
Fig. 2 in Range extension of Cyrtopodion himalayanus Duda and Sahi, 1978 (Reptilia: Sauria) in Jammu Province of State Jammu and Kashmir from District Doda, Northern India
Fig. 2. Cyrtopodion himalayanus (A) Enlarged lateral view of head. (B) Full lateral view of the body.
Fig. 3 in Geographic range extension of Speke's Hinge-back Tortoise Kinixys spekii Gray, 1863
Fig. 3. Top: Lateral views of the putative hybrids from the Afungi Peninsula, Cabo Delgado Province, Mozambique, which have mtDNA sequences of Kinixys spekii but morphologically resemble K. zombensis. Bottom: Lateral views of genetically verified K. zombensis from KwaZulu-Natal Province, South Africa. Photos: Luke Verburgt and Flora Ihlow.
Fig. 1 in Geographic range extension of Speke's Hinge-back Tortoise Kinixys spekii Gray, 1863
Fig. 1. Known distribution of Kinixys spekii. Range according to TTWG (2017) is displayed as green shaded area. Open circles refer to iNaturalist observations, while solid green circles represent literature records and specimens deposited in scientific collections. Solid red circles correspond to genetically verified records, and triangles to name-bearing type specimens of Kinixys spekii and its synonyms.
Fig. 2 in Geographic range extension of Speke's Hinge-back Tortoise Kinixys spekii Gray, 1863
Fig. 2. Top: Lateral views of adult Kinixys lobatsiana (left) and K. spekii (right). Center: Ventral views of young (SCL 106 mm) and adult (SCL 161 mm) K. lobatsiana (left) and young (SCL 131 mm) and adult (SCL 151 mm) K. spekii (right). Note the strongly serrated posterior marginal scutes in K. lobatsiana compared to the smooth carapace rim in K. spekii. Bottom: Lateral views of adult K. natalensis (left) and young K. spekii (right). Photos: James Harvey and Flora Ihlow.
Fig. 3 in Range extension and highest elevational populations of Natrix tessellata in Slovakia
Fig. 3. Individuals of Natrix tessellata from the location in Lisková. (A) Adult female dorsal view. (B) Same individual in ventral view. (C) Overall view on juvenile individual. (D) Detail of the head on the same individual.
Fig. 1 in Range extension and highest elevational populations of Natrix tessellata in Slovakia
Fig. 1. Distribution and range extension of Natrix tessellata in Slovakia. (A) Locations surveyed in the vicinity of Ružomberok and Liptovská Basin. (B) Records of the species in the country. Black line shows cut out area of new locations while (A) is the same area but enlarged. 1 – Ružomberok, 2 – Lisková, 3 – Ružomberok – Rybárpole, 4 – Liptovská Teplá, 5 – Liptovská Mara, 6 – Ružomberok, 7 – Hrboltová, 8 – Hubová, 9 – Stankovany, 10 – Kraľovany, 11 – Vyšné Matejkovo.
Fig. 2 in Range extension and highest elevational populations of Natrix tessellata in Slovakia
Fig. 2. Locations and habitat of Natrix tessellata near Ružomberok. (A) Location in Ružomberok where the first individuals were observed. (B) (C) (D) View on the habitat near Lisková village.
Fig. 4 in Geographic range extension for the Lobatse Hinge-back Tortoise, Kinixys lobatsiana (Power, 1927), with first records from the Soutpansberg region
Fig. 4. Top: Juvenile Lobatse Hinge-back Tortoise (Kinixys lobatsiana, SCL = 81 mm) from Sigurwana, western Soutpansberg, Limpopo. Bottom: Young Speke's Hinge-back Tortoise (K. spekii, SCL = 106 mm) from Leshiba Wilderness, western Soutpansberg. Scale bar: 1 cm. Species identification of both tortoises was genetically confirmed. Photos by Flora Ihlow.
Fig. 5 in Geographic range extension for the Lobatse Hinge-back Tortoise, Kinixys lobatsiana (Power, 1927), with first records from the Soutpansberg region
Fig. 5. Speke's Hinge-back Tortoise (Kinixys spekii) from the vicinity of Vaalwater (left) and Lobatse Hinge-back Tortoise (K. lobatsiana) from the Lapalala Wilderness Reserve (right) with very similar color patterns. Species identification of both tortoises was genetically confirmed. Photos by Flora Ihlow.
Fig. 2 in Geographic range extension for the Lobatse Hinge-back Tortoise, Kinixys lobatsiana (Power, 1927), with first records from the Soutpansberg region
Fig. 2. Distribution range of the Lobatse Hinge-back Tortoise (Kinixys lobatsiana) according to TTWG (2017), with genetically confirmed range extensions (dots), not yet processed samples (dots with bold black outline), and recent observations (triangles). Observations marked with an asterisk refer to collection material in the Ditsong National Museum of Natural History (TM 36366, TM 67909, TM 79431). Right: Characteristic habitats from different parts of the distribution range. Photos by Flora Ihlow.
Fig. 1 in Geographic range extension for the Lobatse Hinge-back Tortoise, Kinixys lobatsiana (Power, 1927), with first records from the Soutpansberg region
Fig. 1. Putative range of the Lobatse Hinge-back Tortoise (Kinixys lobatsiana) according to TTWG (2017), with historic records compiled from scientific collections. Inset: K. lobatsiana from the Lapalala Wilderness Reserve. Photo by Flora Ihlow.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.