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15 results for “Phoenicopteridae”
Figura 2 in Primer ( registro documentado de la Parina Chica Phoenicoparrus jamesi, Phoenicopteriformes: Phoenicopteridae) en Santiago del Estero, Argentina
Figura 2. Variación en la tonalidad de la coloración del plumaje de individuos de Parina Chica (Phoenicoparrus jamesi). Foto: Oscar B. Quiroga. Figure 2. Variation in the tonality of the coloration of the plumage of individuals of Puna Flamingo (Phoenicoparrus jamesi). Photo: Oscar B. Quiroga.
Figura 1 in Primer ( registro documentado de la Parina Chica Phoenicoparrus jamesi, Phoenicopteriformes: Phoenicopteridae) en Santiago del Estero, Argentina
Figura 1. Mapa del área de estudio donde se muestra: A) dique de Los Quiroga, B) localidad de Tipiro y C) laguna donde se observaron a las Parinas Chicas (Phoenicoparrus jamesi). Fuente: Google Earth 2022. Figure 1. Map of the study area showing: A) Los Quiroga dam, B) Tipiro locality and C) lagoon where Puna Flamingos (Phoenicoparrus jamesi) were observed. Source: Google Earth 2022.
Figura 4 in Primer ( registro documentado de la Parina Chica Phoenicoparrus jamesi, Phoenicopteriformes: Phoenicopteridae) en Santiago del Estero, Argentina
Figura 4. Grupo de Parinas Chicas (Phoenicoparrus jamesi) al levantar vuelo junto a Patos Crestudos (Sarkidiornis sylvicola). Foto: Oscar B. Quiroga. Figure 4. Group of Puna Flamingos (Phoenicoparrus jamesi) taking flight together with Crested Ducks (Sarkidiornis sylvicola). Photo: Oscar B. Quiroga.
Figura 3 in Primer ( registro documentado de la Parina Chica Phoenicoparrus jamesi, Phoenicopteriformes: Phoenicopteridae) en Santiago del Estero, Argentina
Figura 3. Individuos de Parinas Chicas (Phoenicoparrus jamesi) compartiendo el espejo de agua junto a otras aves: A) Himantopus mexicanus, B) Sarkidiornis sylvicola y C) Phoenicopterus chilensis. Fotos: Oscar B. Quiroga. Figure 3. Individuals of Puna Flamingos (Phoenicoparrus jamesi) sharing the water mirror with other birds: A) Himantopus mexicanus, B) Sarkidiornis sylvicola and C) Phoenicopterus chilensis. Photos: Oscar B. Quiroga.
Figure 5 in Morphological evidence for sister group relationship between flamingos (Aves: Phoenicopteridae) and grebes (Podicipedidae)
Figure 5. Hypotarsus in comparison. (A) Phoenicopterus chilensis (Phoenicopteridae); (B) Palaelodus sp. (Palaelodidae, SMF Av182c); (C) Aechmophorus occidentalis (Podicipedidae). Not to scale. The numerals indicate the furrows/canals for the tendons of: 1, musculus flexor digitorum longus; 2, musculus flexor perforatus digiti II; 3, musculus flexor perforans et perforatus digiti II; 4, musculus flexor hallucis longus. Homology of tendineal furrows/canals was verified against spirit specimens for Phoenicopteridae (J. Bosch, pers. comm.) and deduced from position of bony canals for the other taxa. Note that identification of tendineal furrows/canals departs from Strauch (1978: fig. 29). Not to scale.
Figure 3 in Morphological evidence for sister group relationship between flamingos (Aves: Phoenicopteridae) and grebes (Podicipedidae)
Figure 3. Right tibiotarsus, proximal end in comparison. (A) Podiceps cristatus (Podicipedidae); (B) Phoenicopterus ruber (Phoenicopteridae); (C) Ciconia ciconia (Ciconiidae). The arrows indicate the cnemial crest (character 55). Not to scale.
Figure 2 in Morphological evidence for sister group relationship between flamingos (Aves: Phoenicopteridae) and grebes (Podicipedidae)
Figure 2. Proximal end of right humerus (A–D) and proximal phalanx of major digit (E–I) in comparison. (A) Phoenicopterus chilensis (Phoenicopteridae); (B) Palaelodus sp. (Palaelodidae, SMF Av 191a); (C) Tachybaptus ruficollis (Podicipedidae); (D) Eudocimus ruber (Threskiornithidae); (E) Juncitarsus merkeli (cast of holotype in SMF, coated with ammonium chloride); (F) Phoenicopterus ruber (Phoenicopteridae); (G) Palaelodus sp. (Palaelodidae, SMF Av 274g); (H) Aechmophorus occidentalis (Podicipedidae); (I) Eudocimus ruber (Threskiornithidae). The arrows indicate the marked depression at the attachment site of musculus scapulohumeralis cranialis (character 41). Not to scale.
Figure 4 in Morphological evidence for sister group relationship between flamingos (Aves: Phoenicopteridae) and grebes (Podicipedidae)
Figure 4. Right foot in comparison. (A) Juncitarsus merkeli (cast of holotype in SMF, coated with ammonium chloride); (B) Podiceps cristatus (Podicipedidae); (C) Phoenicopterus ruber (Phoenicopteridae, figure reversed to facilitate comparison). The arrows point to the hallux (character 59); note the comparatively well-developed hindtoe in Juncitarsus. Not to scale.
Fig. 6 in New cranial material of the earliest filter feeding flamingo Harrisonavis croizeti (Aves, Phoenicopteridae) informs the evolution of the highly specialized filter feeding apparatus
Fig. 6 Cladogram showing the relationship of Harrisonavis croizeti to other members of Mirandornithes (flamingos and grebes; Sangster, 2005). H. croizeti is placed outside of the crown group based on apomorphic data presented in this study. The relationships of the crown clade are from Torres et al. (2014). The placement of Juncitarsus (Olson and Feduccia 1980) is uncertain (indicated by a dashed line); treatment here follows Mayr (2014a). Extinct taxa denoted by dagger symbols
Fig. 4 in New cranial material of the earliest filter feeding flamingo Harrisonavis croizeti (Aves, Phoenicopteridae) informs the evolution of the highly specialized filter feeding apparatus
Fig. 4 Material representing lower bills of Harrisonavis croizeti compared to extinct Leakeyornis aethiopicus and extant Phoenicopterus roseus and Phoenicoparrus minor. H. croizeti (NMB SG 18285a), middle part of the left side, in right lateral (a) and internal (medial; b) views. H. croizeti (NMB SG 18285b), tip of the right side, in lateral (c) and internal (medial; d) views. P. roseus in right lateral (e) view. P. minor in right lateral (f) view. H. croizeti (NMHUK A 2665) in right lateral (g) view. L. aethiopicus (NMHUK A 4384) in right lateral (h) view. Arrow indicates ridging characteristic of flamingo bills. Scale bars 1 cm
Fig. 3 in New cranial material of the earliest filter feeding flamingo Harrisonavis croizeti (Aves, Phoenicopteridae) informs the evolution of the highly specialized filter feeding apparatus
Fig. 3 Sub-adult and adult upper bills from Harrisonavis croizeti compared to extinct Leakeyornis aethiopicus and adult extant Phoenicopterus roseus and Phoenicoparrus minor. Sub-adult H. croizeti (NMB MA 9594) in dorsal (a), ventral (b), and right lateral (n) views. Adult H. croizeti (FSL 442292) in dorsal (c), ventral (d), and right lateral (o) views. Adult P. roseus in dorsal (e), ventral (f), and right lateral (l) views. Adult P. minor in dorsal (g), ventral (h), and right lateral (m) views. L. aethiopicus (NMHUK A 4382) in dorsal (i), ventral (j), and right lateral (k) views. ct crista tomialis, mk maxillary keel; nf nasal furrows. Arrows indicate reticulated surface unique to extant flamingos. Arrowhead indicates fibrous texture on dorsal surface of NMB MA 9594, suggesting the bill belonged to a subadult individual. Scale bars 1 cm
Fig. 2 in New cranial material of the earliest filter feeding flamingo Harrisonavis croizeti (Aves, Phoenicopteridae) informs the evolution of the highly specialized filter feeding apparatus
Fig. 2 Skull of Harrisonavis croizeti (Gervais 1852), from the Late Oligocene of the Auvergne region in central France, compared with the extinct Palaelodus ambiguus and extant Phoenicopterus roseus and Phoenicoparrus minor in dorsal, ventral, and occipital views. P. ambiguus (ML StG 60) in dorsal (a), ventral (b), and occipital (i) views. H. croizeti (ML StG 203bis) in dorsal (c), ventral (d), and occipital (j) views. P. roseus in dorsal (e), ventral (f), and occipital (k) views. P. minor in dorsal (g), ventral (h), and occipital (l) views. cl os palatina, crista lateralis; cm os palatine, crista medialis; cn crista nuchalis; ct crista tomialis; cv os palatine, crista ventralis; fgn fossa glandularis nasalis; fo fonticulus occipitalis; mk maxillary keel; ppa processus paroccipitalis; ppo processus postorbitalis. Scale bars 1 cm
Fig. 1 in New cranial material of the earliest filter feeding flamingo Harrisonavis croizeti (Aves, Phoenicopteridae) informs the evolution of the highly specialized filter feeding apparatus
Fig. 1 Skull of Harrisonavis croizeti (Gervais 1852), from the Late Oligocene of the Auvergne region in central France, compared with the extinct Palaelodus ambiguus and extant flamingos Phoenicopterus roseus and Phoenicoparrus minor in lateral views. P. ambiguus (ML StG 60) in right lateral (a) and left lateral (b) views. H. croizeti (ML StG 203bis) in right lateral (c) and left lateral (d) views. P. roseus in right lateral (e) and left lateral (f) views. P. minor in right lateral (g) and left lateral (h) views. aj arcus jugalis, cn crista nuchalis, fr frontal ridges, ft fossa temporalis, mk maxillary keel, n nares, nf nasal furrow, np nasal prominence, pc prominentia cerebellaris, pmp processus maxillopalatinus, ppo processus postorbitalis. Scale bars 1 cm
Figure 1 in Morphological evidence for sister group relationship between flamingos (Aves: Phoenicopteridae) and grebes (Podicipedidae)
Figure 1. Strict consensus tree of three most parsimonious trees resulting from a cladistic analysis of the character matrix in Appendix 2 (Length = 197, CI = 0.39, RI = 0.56, RC = 0.21). Bootstrap values of more than 50% are indicated above the internodes.
Fig. 5 in New cranial material of the earliest filter feeding flamingo Harrisonavis croizeti (Aves, Phoenicopteridae) informs the evolution of the highly specialized filter feeding apparatus
Fig. 5 Digital reconstruction of Harrisonavis croizeti comprising newly reported material compared with the cast of the lectotype of H. croizeti. Reconstruction in left (a) and right (b) views. Cast of the lectotype skull of H. croizeti (NMNH Av 6544) (c). In addition to other characters (see text), the new upper bill is less curved compared to the previously reported and presumably adult bill, suggesting a sub-adult condition for NMB MA 9594. In the reconstruction of H. croizeti (a, b), the component fossils (indicated by specimen number and by color) have not been modified from their original scales and were fitted by eye in three- dimensional space. Some overlap occurs where the specimens pre- serve the same region of the skull. Scale bars 1 cm
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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