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FIGURE 5 in Two new species of Echeveria (Crassulaceae, Saxifragales) from the Sierra de Manantlán, Jalisco, Mexico
FIGURE 5. (A) Ramón Cuevas-Guzmán and J. Antonio Vázquez-García at the entrance of the Scientific Station Las Joyas, Autlán, Jalisco. (B & D) R. Cuevas at El Muñeco in habitat of Echeveria cuevasii; (C & E). A. Vázquez takes a picture of Echeveria cuevasii (C) at El Muñeco and E. sp. nov. ined. (E) at Picachos del Pozanco; F. Expedition team (botanists and park rangers: From left to right: Germán Guzmán-Sánchez, Ramón Cuevas-Guzmán, J. Cresencio de Los Santos-Flores, J. Antonio Vázquez-García, Oscar Elías-Trinidad, Manuel Anguiano-Preciado, Israel Elías-Trinidad y Jesús Padilla-Lepe) of the Sierra de Manantlán Biosphere Reserve. Fotografías: A–D & F by J.G. Morales-Arias, 2022; and E by J.G. Morales-Padilla, 2014.
FIGURE 1 in Two new species of Echeveria (Crassulaceae, Saxifragales) from the Sierra de Manantlán, Jalisco, Mexico
FIGURE 1. Echeveria cuevasii in situ, in the highland crest of the Sierra de Manantlán central at Cerro El Muñeco, Cuautitlán de García Barragán, Jalisco. Photograph by A. Vázquez.
FIGURE 4 in Echinoagave nievesiorum (Agavaceae, Asparagales): A new species from the Sierra Madre Occidental, Jalisco, Mexico
FIGURE 4. Map of Echinoagave nievesiorum and morphologically similar species. Different colors represent the biogeographic provinces sensu Morrone et al. (2017).
FIGURE 2 in Echinoagave nievesiorum (Agavaceae, Asparagales): A new species from the Sierra Madre Occidental, Jalisco, Mexico
FIGURE 2. Differences in leaves, spines, margins (upper row), flowers (mid row), and fruits (bottom row) among Echinoagave sp. from Concordia, Sinaloa (A); E. rzedowskiana from San Cristóbal de La Barranca, Jalisco (B); and E. nievesiorum from Bolaños, Jalisco (C). Photographs: Leaves, spines, margins, flowers (A), and fruits (A–B) by L.J. García-Morales; flowers (B) by S. Rosales; flowers (C) by A.T. Nuño-R.; and fruits (C) by J.A. Vázquez-G.
FIGURE 1. Echinoagave nievesiorum. A in Echinoagave nievesiorum (Agavaceae, Asparagales): A new species from the Sierra Madre Occidental, Jalisco, Mexico
FIGURE 1. Echinoagave nievesiorum. A. Fruiting rosette on top of Sierra Wixárika, Cerro El Gallo, Bolaños, Jalisco. B. Stages of flower and inflorescence development, from a specimen cultivated at Huentitán El Alto, Jalisco, México. C. Miguel Cházaro on Cerro El Gallo, Bolaños, Sierra Wixárika. D. At moist vertical cliffs with Dasylirion acrotrichum and Brahea sarukhanii at El Nalgazo, Bolaños, Photographs: A by M. Chazaro, B by A.T. Nuño-R. (April 2021); C & D by J.A. Vázquez-García (April 2004 and October 2022, respectively).
FIG. 10 in A Lentic Breeder in Lotic Waters: Sierra Nevada Yellow-Legged Frog (Rana sierrae) Habitat Suitability in Northern Sierra Nevada Streams
FIG. 10. Distribution of depth and velocity values over time within cascade (CAS), riffle (LGR), and pool (POO) geomorphic unit types at (A) Lone Rock Creek and (B) South Fork Tributary. Dashed and shaded box in lower left corner of each panel represents high suitability microhabitat for adults (includes subadults) of velocity,0.1 m s–1 and depth,0.3 m.
FIG. 8 in A Lentic Breeder in Lotic Waters: Sierra Nevada Yellow-Legged Frog (Rana sierrae) Habitat Suitability in Northern Sierra Nevada Streams
FIG. 8. Mean predicted probability of microhabitat use by tadpoles of R. sierrae for all study sites combined for all possible values from a given predictor variable from 1,000 bootstrapped logistic regression models. Shading and bars represent 95% credible intervals. Substrate categories are silt (Slt), sand (Snd), fine gravel (FGrav), coarse gravel (CGrav), cobble (Cob), boulder (Bld), and bedrock (Bed).
FIG. 6 in A Lentic Breeder in Lotic Waters: Sierra Nevada Yellow-Legged Frog (Rana sierrae) Habitat Suitability in Northern Sierra Nevada Streams
FIG. 6. Mean predicted probability of microhabitat use by adult R. sierrae (includes subadults) for all study sites combined for all possible values from a given predictor variable from the 1,000 bootstrapped logistic regression models. Shading and bars represent 95% credible intervals. Substrate categories are silt (Slt), sand (Snd), fine gravel (FGrav), coarse gravel (CGrav), cobble (Cob), boulder (Bld), and bedrock (Bed).
FIG. 4 in A Lentic Breeder in Lotic Waters: Sierra Nevada Yellow-Legged Frog (Rana sierrae) Habitat Suitability in Northern Sierra Nevada Streams
FIG. 4. Distribution of use and available microhabitat points within each substrate category for locations of (A) adult (includes subadults) and (B) tadpoles of R. sierrae at each study site. To better visualize the number of points within each substrate category, violin boxplots were overlaid onto jittered points for each substrate category. The overlay shows a mirrored kernel density estimation for all substrate size categories to illustrate the distribution of the data. IND ¼ Independence Creek, LRC ¼ Lone Rock Creek, SFRC ¼ South Fork Rock Creek, SFT ¼ South Fork Tributary, SFTT ¼ South Fork Tadpole Tributary.
FIG. 3 in A Lentic Breeder in Lotic Waters: Sierra Nevada Yellow-Legged Frog (Rana sierrae) Habitat Suitability in Northern Sierra Nevada Streams
FIG. 3. Hydraulic variables measured for locations and available microhabitat points of (A) adult and (B) tadpoles of R. sierrae in five study sites in the Sierra Nevada. Figures show the relationship between total depth and mid-column velocity at both use and available locations for (A) adults (includes subadults) and (B) tadpoles at each study site. IND ¼ Independence Creek, LRC ¼ Lone Rock Creek, SFRC ¼ South Fork Rock Creek, SFT ¼ South Fork Tributary, SFTT ¼ South Fork Tadpole Tributary.
FIG. 2 in A Lentic Breeder in Lotic Waters: Sierra Nevada Yellow-Legged Frog (Rana sierrae) Habitat Suitability in Northern Sierra Nevada Streams
FIG. 2. Hydrographs of stream stage (depth) at three of five study sites in the northern Sierra Nevada over the course of the study. (A) South Fork Rock Creek (SFRC) and (B) Lone Rock Creek (LRC) hydrographs show a strong seasonal signal of winter storm events and spring snowmelt recession into low flow in summer, while (C) Independence Creek (IND) shows modified flow releases in spring and augmented flow releases in late summer from the upstream reservoir. Data were collected with pressure transducers placed in pools that remained wet over the summer.
FIG. 5 in A Lentic Breeder in Lotic Waters: Sierra Nevada Yellow-Legged Frog (Rana sierrae) Habitat Suitability in Northern Sierra Nevada Streams
FIG. 5. Distribution of use and available points within each total cover decile for locations and available microhabitat points of (A) adult (includes subadults) and (B) tadpoles of R. sierrae at each study site. To better visualize the number of points within each decile, points are jittered. Overlay shows a mirrored kernel density estimate for total cover deciles to illustrate the distribution of the data. IND ¼ Independence Creek, LRC ¼ Lone Rock Creek, SFRC ¼ South Fork Rock Creek, SFT ¼ South Fork Tributary, SFTT ¼ South Fork Tadpole Tributary.
FIG. 6 in Demography, Habitat, and Movements of the Sierra Nevada Yellow-Legged Frog (Rana sierrae) in Streams
FIG. 6. Egg mass attachment substrates used by Rana sierrae by habitat type in five streams in the northern and central Sierra Nevada, surveyed in 2003. Numbers are percents of each habitat type.
FIG. 7 in Demography, Habitat, and Movements of the Sierra Nevada Yellow-Legged Frog (Rana sierrae) in Streams
FIG. 7. Microhabitat at egg masses and habitat at egg mass locations in five streams with Rana sierrae in the northern and central Sierra Nevada, surveyed in 2003. Diamonds are averages and horizontal lines in middle of boxplot are medians. Supplemental Table 1 provides these data in tabular format (see Data Accessibility).
FIG. 3 in Demography, Habitat, and Movements of the Sierra Nevada Yellow-Legged Frog (Rana sierrae) in Streams
FIG. 3. Comparison of habitat types used relative to available by marked adults of Rana sierrae, 2009–2011. Available is the average of percentages of stream length measured in 2009 and 2011. Frog usage is the percent of all captures. Differences in habitat usage were significant at Independence Creek, South Fork Rock Creek, and Lone Rock Creek (chi-squared test, alpha, 0.05).
FIG. 8 in Demography, Habitat, and Movements of the Sierra Nevada Yellow-Legged Frog (Rana sierrae) in Streams
FIG. 8. Frequency and distances radio-tracked Rana sierrae moved between subsequent recaptures in 2003. Total distance moved at Deadwood Creek was 1248 m. Diamonds are averages and horizontal lines in middle of boxplot are medians. Supplemental Table 4 provides these data in tabular format (see Data Accessibility).
FIG. 2 in Demography, Habitat, and Movements of the Sierra Nevada Yellow-Legged Frog (Rana sierrae) in Streams
FIG. 2. Summary of reach-wide available habitat based on inventories for each survey stream of Rana sierrae, 2009–2011. Diamonds are averages and horizontal lines in center of boxplots are medians. Dessication ¼ 1-wetted width/bankfull width. On South Fork Rock Creek, because channel conditions were primarily dry during the time that the habitat inventory was completed, assessment of pool tail crest depths and percent pool tail fines was not possible. Supplemental Table 2 provides these data in tabular format (see Data Accessibility).
FIG. 5 in Demography, Habitat, and Movements of the Sierra Nevada Yellow-Legged Frog (Rana sierrae) in Streams
FIG. 5. Location, stream, cover, and shade habitat attributes for locations where marked adult Rana sierrae were found for each stream reach, 2009–2011. Diamonds are averages and horizontal lines in center of boxplots are medians. Supplemental Table 3 provides these data in tabular format (see Data Accessibility).
FIG. 4 in Demography, Habitat, and Movements of the Sierra Nevada Yellow-Legged Frog (Rana sierrae) in Streams
FIG. 4. Number of pools and percent of all habitat types that were pools available to Rana sierrae for each survey stream, 2009–2011.
FIG. 1 in Demography, Habitat, and Movements of the Sierra Nevada Yellow-Legged Frog (Rana sierrae) in Streams
FIG. 1. Locations of sites of Rana sierrae surveyed in 2003 and 2009– 2011. The shaded area shows the range of Rana sierrae. Squares are 2003 survey streams and circles are 2009–2011 survey streams. County lines are shown for reference.
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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
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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
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