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Fig. 6 in Fish passage post-construction issues: analysis of distribution, attraction and passage efficiency metrics at the Baguari Dam fish ladder to approach the problem
Fig. 6. Abundance of fish groups (a) and species (b) along different stretches of the Baguari Dam fish ladder. Each stretch included 27 pools. Lower = first stretch after the fish ladder entrance. Upper = last stretch connected to the reservoir. Number in parenthesis indicates richness for each group.
Fig. 3 in Fish passage post-construction issues: analysis of distribution, attraction and passage efficiency metrics at the Baguari Dam fish ladder to approach the problem
Fig. 3. Temporal variation of fish groups abundance inside the fish ladder (a) and downstream (b; CPUEn) of Baguari Dam, and total dam discharge (c) during the reproductive (RS / gray rectangle) and non-reproductive (NRS) season.
Fig. 5 in Fish passage post-construction issues: analysis of distribution, attraction and passage efficiency metrics at the Baguari Dam fish ladder to approach the problem
Fig. 5. Abundance variation of fish groups (right column) and species (left column) in the tailrace and spill bay area of the Baguari Dam for the reproductive and non-reproductive season compared to the turbine and spillway discharge (bottom). Gray rectangle indicates the reproductive season.
Fig. 4 in Fish passage post-construction issues: analysis of distribution, attraction and passage efficiency metrics at the Baguari Dam fish ladder to approach the problem
Fig. 4. Temporal variation of fish groups (a and d - non-migratory; b and e - migratory; c and f,- migratory allochthonous) richness (S) downstream and inside the fish ladder of Baguari Dam along the reproductive (RS - left column) and nonreproductive (NRS - right column) season.
Fig. 5 in Sampling mammalian carnivores in western Thailand: Issues of rarity and detectability
Fig. 5. Model averaged estimates of detection probability for 15 carnivore species by camera trapping plotted as a function of log10(weight in kg). Error bars represent 95% confidence intervals. Fitted line is derived from a second-order polynomial which described the best fit of the data. R2 is the coefficient of determination of the fitted line. The six species with lg(weight) greater than 1.0 are Asiatic golden cat, Asiatic jackal, dhole, sun bear, Asiatic black bear, and tiger, from left to right.
Fig. 4 in Sampling mammalian carnivores in western Thailand: Issues of rarity and detectability
Fig. 4. Model averaged estimates of detection probability across the models shown in Tables 2B and 2C for species functional groups (TRAIT; large vs small and terrestrial vs semi-arboreal behavior). Estimated detection probabilities of each species are also shown for TERRESTRIAL and SEMI-ARBOREAL species. Error bars represent 95% confidence intervals.
Fig. 3 in Sampling mammalian carnivores in western Thailand: Issues of rarity and detectability
Fig. 3. Model averaged estimates of detection probability of four functional groups of carnivores (top row) and for each of 15 species separately. Detection probabilities are estimated as functions of camera placement categories (road [no. cameras = 1], streams [5], trails [14], & trails by streams [tbs; 33]). Error bars represent 95% confidence intervals. Estimates were presented without error bars when standard errors could not be estimated. Estimates with 95% confidence intervals less than zero and/or greater than one indicate a lack of model convergence. n refers to the number of independent photographs used to estimate detection probabilities.
Fig. 2 in Sampling mammalian carnivores in western Thailand: Issues of rarity and detectability
Fig. 2. Species discovery curves generated from rarefaction for mammalian carnivores based on camera trap surveys at four study sites within mosaic forest types of Thung Yai between November 2007 and August 2008. Bars represent 95% confidence intervals of the estimates scaled by survey effort (camera trap nights) combined across all active camera locations (n = 53). Curves were estimated using package BiodiversityR in program R.
Fig. 1 in Sampling mammalian carnivores in western Thailand: Issues of rarity and detectability
Fig. 1. Map of Thung Yai Naresuan Wildlife Sanctuary showing camera trap polygons in four study sites, from south to north, Headquarters (HQ), Tikong (TK), Sesawo (SSW), and Mae Gatha (MGT) between November 2007 and August 2008.
FIG. 45 in L'anatomie cranio-mandibulaire de Gomphotherium angustidens (Cuvier, 1817) (Proboscidea, Mammalia): données issues du gisement d'En Péjouan (Miocène moyen du Gers, France)
FIG. 45. — Essais de reconstitution de la trompe chez Gomphotherium angustidens adulte: A, mâle muni de défenses supérieures; B, femelle dépourvue de défense supérieure. Dessins: D. Visset (UPMC).
FIG. 44 in L'anatomie cranio-mandibulaire de Gomphotherium angustidens (Cuvier, 1817) (Proboscidea, Mammalia): données issues du gisement d'En Péjouan (Miocène moyen du Gers, France)
FIG. 44. — Reconstitution de la trompe chez Gomphotherium angustidens (Cuvier, 1817): la musculature superficielle. Abréviations: bl, buccinator (portion longitudinale = depressor labii inferioris); br, buccinator (pars rimana); bs, buccinator (pars supralabialis); m, masseter (la partie la plus superficielle du platysma qui recouvre le masseter n'est pas figurée); me, mentalis; ml, maxillolabialis; n, nasalis; nl, naso labialis; of, occipito frontalis; oo, orbicularis oris; po, post orbicularis; pro, preorbicularis; s, sternomastoideus; so, supraorbicularis; t, temporalis; z, zygomaticus (fibres transverses du m. buccinator + faisceaux mandibulaires du platysma); za, zygomatico auricularis. Dessin: D. Visset (UPMC). Échelle: 20 cm.
FIG. 41 in L'anatomie cranio-mandibulaire de Gomphotherium angustidens (Cuvier, 1817) (Proboscidea, Mammalia): données issues du gisement d'En Péjouan (Miocène moyen du Gers, France)
FIG. 41. — Croissance de la mandibule chez Gomphotherium angustidens (Cuvier, 1817). En abscisses, âges dentaires. En ordonnées, mensurations mandibulaires: M8, épaisseur de la branche horizontale prise à l'avant de la série dentaire (voir Tableaux 1 et 4). En Péjouan sauf 1, Simorre-Tournan.
FIG. 42 in L'anatomie cranio-mandibulaire de Gomphotherium angustidens (Cuvier, 1817) (Proboscidea, Mammalia): données issues du gisement d'En Péjouan (Miocène moyen du Gers, France)
FIG. 42. — Croissance de la mandibule chez Gomphotherium angustidens (Cuvier, 1817). En abscisses, âges dentaires. En ordonnées: mensurations mandibulaires: M7, épaisseur de la branche horizontale prise au départ de la branche montante (voir Tableaux 1 et 4). En Péjouan sauf 1, Simorre-Tournan. Modifié d'après Tassy 1996b: fig. 11.6.
FIG. 40 in L'anatomie cranio-mandibulaire de Gomphotherium angustidens (Cuvier, 1817) (Proboscidea, Mammalia): données issues du gisement d'En Péjouan (Miocène moyen du Gers, France)
FIG. 40. — Croissance de la mandibule chez Gomphotherium angustidens (Cuvier, 1817). En abscisses, âges dentaires. En ordonnées, mensurations mandibulaires: M16, hauteur maximale de la branche horizontale; M17, hauteur de la branche horizontale prise au départ de la branche montante (voir Tableaux 1 et 4). En Péjouan sauf 1, Simorre-Tournan; 2, Ceramica Mirasierra (d'après Mazo 1976); 3, Gers, localité indéterminée; 4, Villefranche d'Astarac. Modifié d'après Tassy 1996b: fig. 11.5.
FIG. 43 in L'anatomie cranio-mandibulaire de Gomphotherium angustidens (Cuvier, 1817) (Proboscidea, Mammalia): données issues du gisement d'En Péjouan (Miocène moyen du Gers, France)
FIG. 43. — La tête osseuse de Gomphotherium angustidens (Cuvier,1817), adulte (âge dentaire XVIII-XXI).A, mâle d'après MNHN.F.SEP25, SEP186, SEP216, SEP301; B, femelle d'après SEP38/187, SEP185, SEP251. Dessins: D. Visset (UPMC). Échelle: 20 cm.
FIG. 37 in L'anatomie cranio-mandibulaire de Gomphotherium angustidens (Cuvier, 1817) (Proboscidea, Mammalia): données issues du gisement d'En Péjouan (Miocène moyen du Gers, France)
FIG. 37. — Croissance du crâne chez Gomphotherium angustidens (Cuvier, 1817). En abscisses, âges dentaires. En ordonnées, mensuration crânienne: C17, profondeur du processus infra-orbitaire du maxillaire (voir Tableaux 1 et 3). En Péjouan sauf 1, Gers (loc. indéterminée); 2, Castelnau-Barbarens; 3, Simorre-Tournan.
FIG. 36 in L'anatomie cranio-mandibulaire de Gomphotherium angustidens (Cuvier, 1817) (Proboscidea, Mammalia): données issues du gisement d'En Péjouan (Miocène moyen du Gers, France)
FIG. 36. — Croissance du crâne chez Gomphotherium angustidens (Cuvier, 1817). En abscisses, âges dentaires. En ordonnées, mensurations crâniennes: C21, largeur interne du palais; C23, largeur du palais à l'avant de la série dentaire (voir Tableaux 1 et 3). En Péjouan sauf 1, Castelnau-Barbarens; 2, Gers (loc. indéterminée); 3, Simorre-Tournan; 4, Ceramica Mirasierra (d'après Mazo 1976).
FIG. 39 in L'anatomie cranio-mandibulaire de Gomphotherium angustidens (Cuvier, 1817) (Proboscidea, Mammalia): données issues du gisement d'En Péjouan (Miocène moyen du Gers, France)
FIG. 39. — Croissance de la mandibule chez Gomphotherium angustidens (Cuvier, 1817). En abscisses, âges dentaires. En ordonnées, mensuration mandibulaire: M18, hauteur de la branche horizontale prise au bord symphysaire postérieur (voir Tableaux 1 et 4). En Péjouan sauf 1, Ceramica Mirasierra (d'après Mazo 1976); 2, Simorre-Tournan.
FIG. 34 in L'anatomie cranio-mandibulaire de Gomphotherium angustidens (Cuvier, 1817) (Proboscidea, Mammalia): données issues du gisement d'En Péjouan (Miocène moyen du Gers, France)
FIG. 34. — Croissance de la face chez Gomphotherium angustidens (Cuvier, 1817). En abscisses, âges dentaires. En ordonnées, mensuration crânienne: C29, hauteur du maxillaire sous le processus infra-orbitaire (voir Tableaux 1 et 3). Modifié d'après Tassy 1996b, fig. 11.9. En Péjouan sauf 1, Gers (loc. indéterminée); 2, Castelnau-Barbarens; 3, Simorre-Tournan.
FIG. 31 in L'anatomie cranio-mandibulaire de Gomphotherium angustidens (Cuvier, 1817) (Proboscidea, Mammalia): données issues du gisement d'En Péjouan (Miocène moyen du Gers, France)
FIG. 31. — Croissance du crâne chez Gomphotherium angustidens (Cuvier, 1817). En abscisses, âges dentaires. En ordonnées, mensurations crâniennes: C4, longueur du rostre; C2, longueur du crâne cérébral (voir Tableaux 1 et 3). En Péjouan sauf 1, Gers (loc. indéterminée); 2, Simorre-Tournan. (Modifié d'après Tassy 1996b: fig. 11.8.)
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Allen Brain Atlas
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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
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.