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Fig. 5 in Small mammals in high fragmented landscape in Cerrado/ Atlantic Forest ecotone, Southeastern Brazil
Fig. 5. Diagram of ordering of species of small mammals and environmental variables in the 24 small forest fragments in southeastern Brazil, produced by canonical correspondence analysis. The Acronyms represent "uc" to understory closure, "co" to canopy openness, "ep" to epiphytism, "lia" to lianas, "ft" to cattle, "cs" to creeks and streams, "we" to wetlands, "se" to soil exposure, "ro" to rocky outcrop, "lit" to litter, "ab" to arthropod biomass, "vr" to vegetal richness, "va" to vegetal abudance, and "ath" to average tree height.
Fig. 2 in Small mammals from the lasting fragments of Araucaria Forest in southern Brazil: a study about richness and diversity
Fig. 2. Rarefaction curves of small mammals sampled at five vegetation types of Piraí do Sul National Forest, ParanÁ state, Brazil, with a 95% confidence interval (A, Pine Plantation; B, Riparian Forest; C, Araucaria Plantation; D, Natural Regeneration forest; E, High Altitude forest).
Fig. 1. Location and vegetation types where small mammals were sampled between November 2012 and September 2013 in Small mammals from the lasting fragments of Araucaria Forest in southern Brazil: a study about richness and diversity
Fig. 1. Location and vegetation types where small mammals were sampled between November 2012 and September 2013, at Piraí do Sul National Forest, ParanÁ state, Brazil (A, Pine Plantation; B, Riparian Forest; C, Araucaria Plantation; D, Natural Regeneration forest; E, High Altitude forest). Original distribution of Atlantic Forest biome (light gray) and Araucaria forest (dark gray).
Fig. 1 in Small mammals in high fragmented landscape in Cerrado/ Atlantic Forest ecotone, Southeastern Brazil
Fig. 1. Location of the forest communities studied in 24 forest fragments located in southeastern Brazil. A description of individual forest fragments can be found in Supplementary Material Tab. A1.
Fig. 4 in Small mammals in high fragmented landscape in Cerrado/ Atlantic Forest ecotone, Southeastern Brazil
Fig. 4. Beta (β) diversity values for small mammals related to nesting (βsne), turnover (βsim) and general dissimilarity (βsor) in the 24 small forest fragments located in southeastern Brazil. The figures on the right represent the final percentage for each index.
Fig. 2 in Small mammals in high fragmented landscape in Cerrado/ Atlantic Forest ecotone, Southeastern Brazil
Fig. 2. Species accumulation curves to 24 fragments together for small mammals located in southeastern Brazil.
Fig. 2 in Roadkilled mammals in the northern Amazon region and comparisons with roadways in other regions of Brazil
Fig. 2. Number of articles evaluated with records of the 13 species identified in this studY and the distribution in each of the six Brazilian eco-regions (Amazonia, Caatinga, Cerrado, Atlantic Forest, Pampa and Pantanal).
Fig. 1 in Roadkilled mammals in the northern Amazon region and comparisons with roadways in other regions of Brazil
Fig. 1. StudY area located on roadwaY BR 364 in central region of state of Rondônia in southwestern portion of Amazon biome. The stretch sampled is in bold in the figure.
Fig. 1 in Checklist of mammals from Mato Grosso do Sul, Brazil
Fig. 1. Species-area relationship for the number of non-flying mammal species from several tropical ecosystems and regions/countries (modified from Tomas et al., 2011). The fitted model is: Number of species = 11.78*AREA0. 41; Mean corrected R2(1-residual/corrected) = 0.88; Regions: AM, Amazon rainforest; AR, Argentina; AT, Atlantic rainforest; BO, Borneo rainforest; BR, Brazil; CA, Caatinga; CE, Cerrado; CH, Chaco; CO, Congo rainforest; GU, Guinean rainforest; LL, Llanos; MS, Mato Grosso do Sul state (this checklist); OK, Okavango delta; PA, Pantanal wetland; PY, Paraguay; SP, São Paulo state.
Fig. 14 in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover
Fig. 14. Ctenodactyloid rodent Yuomys sp. from the Eocene of Wulanhuxiu, Nei Mongol, China. A. Right maxilla with M1 (IVPP V20829.1). B. Right mandible with m2–m3 (IVPP V20829.2). All in occlusal view.
Fig. 13. Ctenodactyloid rodent Gobiomys exiguus Wang, 2001 in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover
Fig. 13. Ctenodactyloid rodent Gobiomys exiguus Wang, 2001 from the Eocene of Wulanhuxiu, Nei Mongol, China. A. Right M2 (IVPP V20827.1). B. Right M3 (IVPP V20827.2). C. Left m1 (IVPP V20827.3). D. Right m2 (IVPP V20827.4). All in occlusal view.
Fig. 9 in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover
Fig. 9. Lagomorph Gobiolagus aliwusuensis Fostowicz-Frelik, Li, Meng, and Wang, 2012 from the Eocene of Wulanhuxiu, Nei Mongol, China. A. Cross section of the right DI2 (IVPP V20265.1). B. Cross section of the right di2 (IVPP V20265.1). C. Left P3 (IVPP V20265.3) in occlusal (C1), posterior C2), anterior (C3), and lingual (C4) views. D. Associated left M1–M2 (IVPP V20263.1) in occlusal view. E. Left M2 (IVPP V20265.9) in posterior (E1), occlusal (E2), buccal (E3), and anterior (E4) views. F. Right juvenile M2 (IVPP V20265.8) in occlusal view. G. Right M3 (IVPP V20265.11) in posterior G1), occlusal (G2), anterior (G3), lingual (G4), and buccal (G5) views.
Fig. 8 in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover
Fig. 8. Lagomorph Gobiolagus aliwusuensis Fostowicz-Frelik, Li, Meng, and Wang, 2012 from the Eocene of Wulanhuxiu, Nei Mongol, China. A. Fragment of the right maxilla with M1–M2 (IVPP V20262) in ventral (A1), medial (A2), and lateral (A3) views. B. Left m2 in mandible fragment (IVPP V20263.2) in buccal (B1, note the knob-like masseteric tubercle un- der the trigonid) and lingual (B2) views.
Fig. 10 in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover
Fig. 10. Lower cheek dentition of the lagomorph Gobiolagus aliwusuensis Fostowicz-Frelik, Li, Meng, and Wang, 2012 from the Eocene of Wulanhuxiu, Nei Mongol, China. A. Right p3 (IVPP V20265.13) in anterior (A1), buccal (A2), lingual (A3), posterior (A4), and occlusal (A5) views. B. Right m1 (IVPP V20265.14) in buccal (B1), anterior (B2), lingual (B3), posterior (B4), occlusal (B5), and apical (B6) views. C. Right m2 (IVPP V20265.16) in anterior (C1), buccal (C2), lingual (C3), posterior (C4), and occlusal (C5) views. D. Right m3 (IVPP V20265.17) in lingual (D1), anterior (D2), posterior (D3), buccal (D4), occlusal (D5), and apical (D6) views.
Fig. 11 in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover
Fig. 11. Limb bones of the lagomorph Gobiolagus aliwusuensis Fostowicz-Frelik, Li, Meng, and Wang, 2012 from the Eocene of Wulanhuxiu, Nei Mongol, China. A. Distal part of left humerus (IVPP V20265.19) in ventral (A2), cranial (A1), and caudal (A3) views. B. Proximal part of right ulna (IVPP V20265.21) in medial (B1) and lateral (B2) views. C. Proximal part of radius (IVPP V20265.20) in cranial view. D. Right calcaneus (IVPP V20265.22) in medial (D1), plantar (D2), lateral (D3), dorsal (D4), and caudal (D5) views.
Fig. 5 in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover
Fig. 5. Lagomorph Erenlagus anielae Fostowicz-Frelik and Li, 2014 from the Eocene of Wulanhuxiu, Nei Mongol, China. Left M1 (IVPP V20260) in occlusal (A) and posterior (B) views.
Fig. 1. A in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover
Fig. 1. A. Location of the Wulanhuxiu mammalian fossil site in the western part of the Erlian Basin (elevations given in meters; modified from Russell and Zhai 1987). B. Map of continental China (Nei Mongol Autonomous Region in gray). C. Typical landscape at the Wulanhuxiu locality showing fossiliferous beds with the Irdinmanhan–Sharamurunian transition. D. Stratigraphic section of the studied sediment series at Wulanhuxiu (after a field sketch by Bin Bai).
Fig. 12 in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover
Fig. 12. Ischyromyid rodent Asiomys dawsoni Qi, 1987 from the Eocene of Wulanhuxiu, Nei Mongol, China. A. Left P4 (IVPP V20828.1). B. Left M1 (IVPP V20828.2). C. Right M1 (IVPP V20828.4). D. Right M2 (IVPP V20828.5). E. Left dp4 (IVPP V20828.6). F. Left m3 (IVPP V20828.7). All in occlusal view.
Fig. 3 in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover
Fig. 3. Mimotonid Gomphos progressus sp. nov. from the Eocene of Wulanhuxiu, Nei Mongol, China. A. Left M3 (IVPP V20824) in occlusal (A1), anterior (A2), posterior (A3), and lingual (A4) views. B. Left m2, holotype (IVPP V20259) in occlusal (B1) and buccal (B2) views. C. Right m3 (IVPP V20259.1) in occlusal (C1) and anterior (C2) views.
Fig. 2 in Small mammal fauna from Wulanhuxiu (Nei Mongol, China) implies the Irdinmanhan-Sharamurunian (Eocene) faunal turnover
Fig. 2. Anagalid and mimotonid from the Eocene of Wulanhuxiu, Nei Mongol, China. A. Anagalidae gen. et sp. indet., left m1 (IVPP V20825) in occlusal (A1), buccal (A2), anterior (A3), and lingual (A4) views. B. Mimolagus aurorae Fostowicz-Frelik, Li, Mao, Meng, and Wang, 2015, right m1 (IVPP V20826) in occlusal (B1), buccal (B2), posterior (B3), anterior (B4), and lingual (B5) views.
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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.