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FIGURE 8. A in Eocene (Duchesnean and earliest Chadronian) brontotheres (Brontotheriidae), Protitanops curryi and cf. Parvicornus occidentalis, from West Texas and Mexico
FIGURE 8. A skull (TMM 40932-1) from the Lower Chisos Formation previously referred to Menodus bakeri by Wilson (1977a), now referred to Protitanops curryi: (A) dorsal view, (B) left view, (C) anterior view, (D) left P2–P4.
FIGURE 6. A in Eocene (Duchesnean and earliest Chadronian) brontotheres (Brontotheriidae), Protitanops curryi and cf. Parvicornus occidentalis, from West Texas and Mexico
FIGURE 6. A juvenile skull (TMM 41916-8) from the "titanothere quarry" of the Lower Chisos Formation referred to Protitanops curryi: (A) left view, (B) dorsal view, (C) ventral view, (D) mandible.
FIGURE 3 in Eocene (Duchesnean and earliest Chadronian) brontotheres (Brontotheriidae), Protitanops curryi and cf. Parvicornus occidentalis, from West Texas and Mexico
FIGURE 3. (A) The holotype of Protitanops curryi Stock 1936 (LACM/CIT 1854) and (B) a stratigraphically associated but larger specimen previously referred to as Menodontine (?) by Stock (1936) that is possibly P. curryi (LACM/CIT 2007).
FIGURE 1 in Eocene (Duchesnean and earliest Chadronian) brontotheres (Brontotheriidae), Protitanops curryi and cf. Parvicornus occidentalis, from West Texas and Mexico
FIGURE 1. Index map of collection areas (left) and correlation and dating (right) of the major mammal fossil localities of the Eocene of Trans-Pecos Texas. Magnetic stratigraphy of Testarmata and Gose (1979), Walton (1992), and Prothero (1996) and its correlation with the global magnetic polarity time scale. Location of the important mammalian local faunas (l.f.) and volcanic ash dates are shown. Diagonal cross-hachured pattern denotes sections of indeterminate polarity. Normal polarity is in black, reversed polarity is in white. Abbreviations: BRID. = Bridgerian; BR = Bracks Rhyolite; BU = Buckshot Ignimbrite; GB = Gill Breccia; MMR = Mitchell Mesa Rhyolite; MPTS = magnetic polarity; NALMA = North American land mammal age. (map after Wilson, 1978; correlation after Prothero, 1996).
FIGURE A1 in Eocene (Duchesnean and earliest Chadronian) brontotheres (Brontotheriidae), Protitanops curryi and cf. Parvicornus occidentalis, from West Texas and Mexico
FIGURE A1. Strict consensus tree for Brontotheriidae based on a parsimony search with equally weighted characters.
FIGURE 5. A in Eocene (Duchesnean and earliest Chadronian) brontotheres (Brontotheriidae), Protitanops curryi and cf. Parvicornus occidentalis, from West Texas and Mexico
FIGURE 5. A juvenile skull (TMM 41916-14) from the "titanothere quarry" of the Lower Chisos Formation referred to Protitanops curryi.
FIGURE 2 in Eocene (Duchesnean and earliest Chadronian) brontotheres (Brontotheriidae), Protitanops curryi and cf. Parvicornus occidentalis, from West Texas and Mexico
FIGURE 2. Strict consensus tree for infratribe Brontotheriita based on a parsimony search with implied weighting (k=7). Ovals represent stratigraphic distribution in North American Land Mammal Ages. The ages of Asian species with question marks are approximations based on Asian Land Mammal Age equivalence.
FIGURE 9. A in Eocene (Duchesnean and earliest Chadronian) brontotheres (Brontotheriidae), Protitanops curryi and cf. Parvicornus occidentalis, from West Texas and Mexico
FIGURE 9. A partial skull (IGM 65-29) from the Prietos Formation previously referred to?Brontops cf. brachycephalus by Ferrusquia-Villifranca (1967), now referred to Protitanops curryi: (A) right view, (B) ventral view, (C) dorsal view. (The number 41017-1 written on the figured specimen is the catalog number of the cast in the TMM collection.)
FIGURE 12 in Eocene (Duchesnean and earliest Chadronian) brontotheres (Brontotheriidae), Protitanops curryi and cf. Parvicornus occidentalis, from West Texas and Mexico
FIGURE 12. Size distributions for ventral skull length, upper molar row length, and lower molar row length for Protitanops curryi and closely related brontotheriids.
FIGURE 4. A in Eocene (Duchesnean and earliest Chadronian) brontotheres (Brontotheriidae), Protitanops curryi and cf. Parvicornus occidentalis, from West Texas and Mexico
FIGURE 4. A skull (FMNH PM 157) from the Blue Cliff Horizon of the Chambers Tuff Formation referred to Protitanops curryi: (A) right view, (B) dorsal view, (C) ventral view, (D) anterior view, (E) posterior view.
FIGURE 7. A in Eocene (Duchesnean and earliest Chadronian) brontotheres (Brontotheriidae), Protitanops curryi and cf. Parvicornus occidentalis, from West Texas and Mexico
FIGURE 7. A skull (TMM 41916-6) from the "titanothere quarry" of the Lower Chisos Formation referred to Protitanops curryi: (A) left view, (B) dorsal view, (C) ventral view, (D) posterior view, (E) left P1–P4, (F) anterior dentition, (G) left M1–M3.
FIGURE 11 in Eocene (Duchesnean and earliest Chadronian) brontotheres (Brontotheriidae), Protitanops curryi and cf. Parvicornus occidentalis, from West Texas and Mexico
FIGURE 11. Specimens of Brontotheriita of uncertain generic and specific identify from the Skyline Channels, Devil's Graveyard Formation, Aqua Fria-Green Valley Area of Trans Pecos Texas: (A, B, C) TMM 41853-17, (D, E, F) TMM 41580-30, (G) TMM 41715-6, (H) TMM 42254-2.
FIGURE 10. A in Eocene (Duchesnean and earliest Chadronian) brontotheres (Brontotheriidae), Protitanops curryi and cf. Parvicornus occidentalis, from West Texas and Mexico
FIGURE 10. A mandible (TMM 45805-1) from the Big Red Horizon of the Chambers Tuff referred to Protitanops curryi: (A) left view, (B) dorsal view, (C) occlusal view of anterior dentition (D) labial view of anterior dentition.
FIGURE 1. 1.1 in Geochronology of the middle Eocene Purple Bench locality (Devil's Graveyard Formation), Trans-Pecos Texas, USA
FIGURE 1. 1.1 Map of the Tornillo Basin (modified from Atchley et al., 2004 after Lehman, 1986). Star indicates location of the Devil's Graveyard Formation exposures examined in this study. 1.2. Stratigraphy of the Tornillo Basin and the related North American Land Mammal Ages. A.C.B. = Alamo Creek Basalt (Modified from Lehman, 1991).
FIGURE 2 in Geochronology of the middle Eocene Purple Bench locality (Devil's Graveyard Formation), Trans-Pecos Texas, USA
FIGURE 2. Generalized stratigraphic column of the lower and middle members of the Devil's Graveyard Formation. Symbols denote detrital zircon sample locations and known fossil localities. X-axis represents erosional profile. Colors represent visual expression of outcrop correlating to paleosol type (Emery-Wetherell et al., 2016). Note that the detrital zircon U-Pb sample identifications listed at the far right do not stratigraphically coincide with the associated fossil localities, which are identified by the bone symbols.
Fig. 1 in High Trypanosoma cruzi infection prevalence associated with minimal cardiac pathology among wild carnivores in central Texas
Fig. 1. Spatial occurrence and distribution of T. cruzi infected, hunter-harvested wildlife, 2014. Number of infected over total number of that species tested are shown by county.
Fig. 3 in Seroprevalence of Borrelia burgdorferi antibodies in white-tailed deer from Texas
Fig. 3. Assays used to demonstrate reactivity to Borrelia burgdorferi antigens in white-tailed deer serum samples. (A.) The molecular weight marker (Mk) showing estimated molecular weights of Borrelia antigens (Bb). (B.) From left to right, negative control samples (1—5) and samples highly sero-reactive (6—12). The three immunoassays used were ELISA, standardized western immunoblot (WB) and Marblot (MB) assays.
Fig. 2 in Seroprevalence of Borrelia burgdorferi antibodies in white-tailed deer from Texas
Fig. 2. Optical density values of the white-tailed deer (WTD) serum samples analyzed with indirect ELISA for Borrelia burgdorferi. (A.) ELISA data from 109 WTD serum samples used as negative controls, collected from 2003 to 2015. (B.) ELISA data from 1384 WTD serum samples collected from 2001 to 2013. The dashed line denotes the cut off value used in this study. The samples above this line were analyzed with standardized western immunoblot assay.
Fig. 4 in Seroprevalence of Borrelia burgdorferi antibodies in white-tailed deer from Texas
Fig. 4. Confirmed human Lyme Disease cases in Texas from 2000 to 2013 reported to the CDC (www.cdc.com).
Fig. 5 in Seroprevalence of Borrelia burgdorferi antibodies in white-tailed deer from Texas
Fig. 5. White-tailed deer (WTD) population density in Texas eco-regions from 2005 to 2013. This graph is a representation of WTD population density statewide in Texas; in two counties (Travis and Williamson) where sero-reactive samples, and negative control samples for Borrelia burgdorferi antibodies were found.
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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
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.