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Fig. 3 in Phylogeographic pattern of Jenynsia multidentata (Cyprinodontiformes: Anablepidae) in the southern boundary of the Brazilian Subregion, Argentina
Fig. 3. Phylogenetic consensus tree obtained by Maximum Likelihood based on DNA control region of Jenynsia multidentata. Numbers under the nodes represents the Bootstrap values. The length branches are proportional to mutations per site. H1-H9: Haplotypes. Black vertical lines next to sample localities are proportional to the individual numbers in each locality. Shading patterns indicates localities. Black: Chapadmalal. Black doted: Chocorí. Cross: El Moro. Dark grey: Quequén Grande. Horizontal lines: Cortaderas. Light grey: Claromecó. Grey: Quequén Salado. Diagonal lines: Sauce Grande. Vertical lines: Saladillo. Grey doted: Sauce Chico.
Fig. 2 in Phylogeographic pattern of Jenynsia multidentata (Cyprinodontiformes: Anablepidae) in the southern boundary of the Brazilian Subregion, Argentina
Fig. 2. Phylogenetic strict consensus tree obtained by Maximun Parsimony based on mitochondrial DNA control region of Jenynsia multidentata. Numbers under the nodes represents the Bootstrap values. The length branches are proportional to mutations per site. H1-H9: Haplotypes. Black vertical lines next to sample localities are proportional to the individual numbers in each locality. Shading patterns indicates localities. Black: Chapadmalal. Black doted: Chocorí. Cross: El Moro. Dark grey: Quequén Grande. Horizontal lines: Cortaderas. Light grey: Claromecó. Grey: Quequén Salado. Diagonal lines: Sauce Grande. Vertical lines: Saladillo. Grey doted: Sauce Chico.
Fig. 1 in Phylogeographic pattern of Jenynsia multidentata (Cyprinodontiformes: Anablepidae) in the southern boundary of the Brazilian Subregion, Argentina
Fig. 1. Geographical distribution of Jenynsia multidentata in the Southern Pampean area. Numbers represent sample localities. 1: arroyo Chapadmalal. 2: arroyo Chocorí. 3: arroyo El Moro. 4: río Quequén Grande. 5: arroyo Cortaderas. 6: arroyo Claromecó. 7: río Quequén Salado. 8: río Sauce Grande. 9: arroyo Saladillo. 10: arroyo Sauce Chico.
Fig. 5 in Jenynsia luxata, a new species from Northwestern Argentina, with additional observations of J. maculata Regan and phylogeny of the genus (Cyprinodontiformes: Anablepidae)
Fig. 5. Topologies from most equally parsimonious trees and relative Bremer support/GC values under (a) equal weights (strict consensus of 12 trees), and (b) implied weighting (strict consensus of two trees), with concavities K = 4 to 20 (with supports measured under K = 8). Unsupported nodes are shown as collapsed. The relationships of genera of the family are consistent with those proposed in previous studies, therefore species of Anableps and Oxyzygonectes are not shown.
Fig. 1 in Jenynsia luxata, a new species from Northwestern Argentina, with additional observations of J. maculata Regan and phylogeny of the genus (Cyprinodontiformes: Anablepidae)
Fig. 1. Jenynsia luxata. Above: holotype CI-FML: 5464, male, 24.4 mm SL, Tucumán, Burruyacu city, a small unnamed stream, río Tajamar basin, Argentina; below: paratype CI-FML 5466, female, 34.8 mm SL, Santiago del Estero, Pellegrini, small flooded pools at Ruta Provincial 4, not connected to but near to río Urueña basin, Argentina.
Fig. 4 in Jenynsia luxata, a new species from Northwestern Argentina, with additional observations of J. maculata Regan and phylogeny of the genus (Cyprinodontiformes: Anablepidae)
Fig. 4. Hydrographic map of South America showing the currently known distribution of Jenynsia luxata. The area delimited by the rectangle is enlarged at right, where the type locality is indicated by an open dot and an additional locality is indicated by a black dot. The small black dot indicates the capital of Tucumán.
FIGURA 4 in NUEVOS APORTES AL CONOCIMIENTO DE LA HERPETOFAUNA DE LA FORMACIÓN CERRO AZUL (MIOCENO SUPERIOR), PROVINCIA DE LA PAMPA, ARGENTINA
FIGURA 4: Vértebra troncal media (GHUNL Pam 6494) determinada como cf. Philodryas (A-D) y vértebra troncal de Philodryas trilineatus (E-H) en vistas lateral (A, E), anterior (B, F), dorsal (C, G) y ventral (D, H). Escalas equivalentes a 5 mm.
FIGURA 3 in NUEVOS APORTES AL CONOCIMIENTO DE LA HERPETOFAUNA DE LA FORMACIÓN CERRO AZUL (MIOCENO SUPERIOR), PROVINCIA DE LA PAMPA, ARGENTINA
FIGURA 3: Vértebras atribuidas al género Tupinambis (GHUNL Pam 6493) y vértebra presacra de Tupinambis merianae en vista lateral (A, F), ventral (B, G), dorsal (C, H), anterior (D, I) y posterior (E, J). Escalas equivalentes a 5 mm.
FIGURA 2 in NUEVOS APORTES AL CONOCIMIENTO DE LA HERPETOFAUNA DE LA FORMACIÓN CERRO AZUL (MIOCENO SUPERIOR), PROVINCIA DE LA PAMPA, ARGENTINA
FIGURA 2: A) Maxilar derecho incompleto asignado a Ceratophrys sp. (GHUNL Pam 8633) en vista lateral (A1) y medial (A2); B-D) Vista lateral del maxilar derecho de Lepidobatrachus llanensis (B); Ceratophrys ornata (C); Chacophrys pierottii (D); Placas periféricas derechas (GHUNL Pam 6129; E) y fragmento de xifiplastrón (GHUNL Pam 2943; F) referidos a Testudinidae. Escalas equivalentes a 5 mm.
FIGURA 1 in NUEVOS APORTES AL CONOCIMIENTO DE LA HERPETOFAUNA DE LA FORMACIÓN CERRO AZUL (MIOCENO SUPERIOR), PROVINCIA DE LA PAMPA, ARGENTINA
FIGURA 1: Localización geográfica de las localidades donde fueron hallados los especímenes estudiados, este de la provincia de La Pampa, Argentina.
Fig. 2 in Patterns in fish species composition and assemblage structure in the upper Salado River lakes, Pampa Plain, Argentina
Fig. 2. Relationship between diversity and species richness in fish assemblages and the NO3:NH 4 ratio.
Fig. 3 in Patterns in fish species composition and assemblage structure in the upper Salado River lakes, Pampa Plain, Argentina
Fig. 3. Bar chart showing the distribution of total fish collected of each species within the upper Salado River lakes. Species codes as listed in Table 2. Species are intentionally sorted by means of their spatial distribution to ease the interpretation. From left to right, from clear to dark filled bars: Mch = Mar Chiquita, Go = Gómez, Crp = Carpincho, and Rch = Rocha.
Fig. 1 in Potential geographic distributions of two parthenogenetic weevils (Coleoptera: Curculionidae) associated with citrus in Argentina and Brazil
Fig. 1. Binary maps of the ecological niche models for 2 parthenogenetic weevils. (A) Parapantomorus fluctuosus; (B) Pantomorus cinerosus. Potential distributions are shown in red and occurrence records used in the model are in white circles.
FIGURE 1 in Reproductive biology of Parona signata (Actinopterygii: Carangidae), a valuable economic resource, in the coastal area of Mar del Plata, Buenos Aires, Argentina
FIGURE 1 | Monthly variation of the gonadosomatic index (GSI) of females (black continuous line), standard deviation (dashed lines) and temperature (in Celsius degrees) (gray continuous line) based on an annual cycle.
FIGURE 3 in Reproductive biology of Parona signata (Actinopterygii: Carangidae), a valuable economic resource, in the coastal area of Mar del Plata, Buenos Aires, Argentina
FIGURE 3 | Photomicrographs of Parona signata. A: primary growth oocytes (P); B: cortical alveoli oocytes (CA); C: yolked oocytes (YO) and a post-ovulatory follicle (large arrow); D: details of a yolked oocyte (r: radiate zone; g: granulosa cells; t: theca cells); E: hydrated oocyte (arrow); F: details of a post-ovulatory follicle (arrow); G: primary growth oocytes in an adult ovary (notice the thick wall of the ovary – OW); H: atresic follicle (arrow).
FIGURE 2 in Reproductive biology of Parona signata (Actinopterygii: Carangidae), a valuable economic resource, in the coastal area of Mar del Plata, Buenos Aires, Argentina
FIGURE 2 | Monthly relative frequency of the different gonadal development stages observed in females of Parona signata on the annual cycle.
FIGURE 6 in Feeding habits of the cockfish, Callorhinchus callorynchus (Holocephali: Callorhinchidae) from off northern Argentina
FIGURE 6 | Relationship between valve width (VW) of bivalves and precaudal lenght of Callorhinchus callorynchus. The solid, dashed and dotted lines are 5%, 50% and 95% quantile regressions, respectively.
FIGURE 5 in Feeding habits of the cockfish, Callorhinchus callorynchus (Holocephali: Callorhinchidae) from off northern Argentina
FIGURE 5 | Changes in consumption of bivalves, cumaceans and brachyuran crabs with region, season and maturity stage of Callorhinchus callorynchus females estimated by generalized linear models.
FIGURE 3 in Feeding habits of the cockfish, Callorhinchus callorynchus (Holocephali: Callorhinchidae) from off northern Argentina
FIGURE 3 | Cumulative prey curves as a function of sample size of Callorhinchus callorynchus for total individuals, males and for each group of females considered in the dietary analisis. Mean (continuous lines) ± SD (dashed lines) are plotted.
FIGURE 1 in Feeding habits of the cockfish, Callorhinchus callorynchus (Holocephali: Callorhinchidae) from off northern Argentina
FIGURE 1 | Study area showing where individuals of Callorhinchus callorynchus were captured off northern Argentina. The rectangle in the inset shows the location of the study area in South America.
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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.