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Fig. 1 in Physiological and Biochemical Thermoregulatory Responses in Male Chinese Hwameis to Seasonal Acclimatization: Phenotypic Flexibility in a Small Passerine.

Fig. 1. Minimum, maximum and mean ambient daily summer (July to August 2013) and winter (January to February 2014) temperatures in Wenzhou, China. Mean ambient temperature ranged from 31.3 ± 0.2°C in summer to 8.6 ± 0.4°C in winter.

opencc-by-4.0May 2019View details →
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Fig. 2 in Physiological and Biochemical Thermoregulatory Responses in Male Chinese Hwameis to Seasonal Acclimatization: Phenotypic Flexibility in a Small Passerine.

Fig. 2. Seasonal variation in body mass (A), resting metabolic rate (B), evaporative water loss (C) and thermal conductance (D) in Chinese hwamei (Garrulax canorus) captured in either summer or winter in Wenzhou, China. Data are shown as mean ± SEM, **p <0.01.

opencc-by-4.0May 2019View details →
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Fig. 5 in Physiological and Biochemical Thermoregulatory Responses in Male Chinese Hwameis to Seasonal Acclimatization: Phenotypic Flexibility in a Small Passerine.

Fig. 5. Correlations between resting metabolic rate (RMR) and state-4 respiration in the pectoral muscle (A), heart (C), liver (E) and kidneys (G), and between RMR and cytochrome c oxidase activity in the pectoral muscle (B), heart (D), liver (F) and kidneys (H), in Chinese hwameis (Garrulax canorus) captured in either summer or winter in Wenzhou, China.

opencc-by-4.0May 2019View details →
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Fig. 1 in From Galapagos doves to passerines: Spillover of Haemoproteus multipigmentatus

Fig. 1. Map of the Galapagos Islands indicating sampling sites during our haemosporidian survey 2013‾2015. Prevalence percentages are provided only for those sites where Haemoproteus multipigmentatus was found.

opencc-by-4.0Dec 2017View details →
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Fig. 2. a in From Galapagos doves to passerines: Spillover of Haemoproteus multipigmentatus

Fig. 2. a. Mean prevalence of Haemoproteus multipigmentatus in passerines on sampling sites on Santiago. b. Mean relative abundance of doves and passerines on sampling sites on Santiago. Bars indicate standard error. (Sullivan was sampled only in 2014 and 2015).

opencc-by-4.0Dec 2017View details →
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Velocity-based macrorefugia for boreal passerine birds

<p>Velocity-based macrorefugia for boreal passerine birds&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> &nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> Citation for dataset&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> --------------------&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> Stralberg, D. Velocity-based macrorefugia for boreal passerine birds. Boreal Avian Modelling Project. Edmonton, Alberta, Canada. DOI: 10.5281/zenodo.1299880&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> https://doi.org/10.5281/zenodo.1299880&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> &nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> Data layers &nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> -----------------&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> Refugia layers represent mid-century (2041-2070) and end-of-century (2071-2100) conditions for the SRES A2 emissions scenario at 4-km resolution&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> -----------------&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> Combined index for 53 species (clipped to Brandt&#39;s boreal region): &nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> _refbrandt53_YYYYZZZZ&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> &nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> Species-specific indices:&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> XXXX_refYYYY&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> &nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> where:&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> YYYY = Time period (2050s or 2080s)&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> ZZZZ = weighted or unweighted&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> XXXX = Songbird Species Code (see Birdlookup.csv)&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> &nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> Percentile values of refugia indices for mapping purposes&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> &nbsp;&nbsp; &nbsp;0.01&nbsp;&nbsp; &nbsp;0.1&nbsp;&nbsp; &nbsp;0.25&nbsp;&nbsp; &nbsp;0.5&nbsp;&nbsp; &nbsp;0.75&nbsp;&nbsp; &nbsp;0.9&nbsp;&nbsp; &nbsp;0.99<br> &quot;2050s, weighted &quot;&nbsp;&nbsp; &nbsp;0.032&nbsp;&nbsp; &nbsp;0.243&nbsp;&nbsp; &nbsp;0.317&nbsp;&nbsp; &nbsp;0.399&nbsp;&nbsp; &nbsp;0.484&nbsp;&nbsp; &nbsp;0.589&nbsp;&nbsp; &nbsp;0.779<br> &quot;2080s, weighted&quot;&nbsp;&nbsp; &nbsp;0.002&nbsp;&nbsp; &nbsp;0.09&nbsp;&nbsp; &nbsp;0.137&nbsp;&nbsp; &nbsp;0.2&nbsp;&nbsp; &nbsp;0.281&nbsp;&nbsp; &nbsp;0.386&nbsp;&nbsp; &nbsp;0.675<br> &quot;2050s, unweighted&quot;&nbsp;&nbsp; &nbsp;0.006&nbsp;&nbsp; &nbsp;0.108&nbsp;&nbsp; &nbsp;0.159&nbsp;&nbsp; &nbsp;0.218&nbsp;&nbsp; &nbsp;0.292&nbsp;&nbsp; &nbsp;0.358&nbsp;&nbsp; &nbsp;0.421<br> &quot;2080s, unweighted&quot;&nbsp;&nbsp; &nbsp;0.001&nbsp;&nbsp; &nbsp;0.055&nbsp;&nbsp; &nbsp;0.083&nbsp;&nbsp; &nbsp;0.123&nbsp;&nbsp; &nbsp;0.185&nbsp;&nbsp; &nbsp;0.241&nbsp;&nbsp; &nbsp;0.297<br> &nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> &nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> Projection information&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> -------------------&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> &quot;&quot;&quot;+proj=lcc +lat_1=49 +lat_2=77 +lat_0=0 +lon_0=-95 +x_0=0 +y_0=0 +ellps=GRS80 +units=m +no_defs&quot;&quot;&quot;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> -------------------&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> Projection &nbsp; &nbsp;LAMBERT&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> Spheroid &nbsp; &nbsp; &nbsp;GRS80&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> Units &nbsp; &nbsp; &nbsp; &nbsp; METERS&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> Zunits &nbsp; &nbsp; &nbsp; &nbsp;NO&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> Xshift &nbsp; &nbsp; &nbsp; &nbsp;0.0&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> Yshift &nbsp; &nbsp; &nbsp; &nbsp;0.0&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> Parameters &nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> &nbsp; 49 &nbsp;0 &nbsp;0.0 /* 1st standard parallel&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> &nbsp; 77 &nbsp;0 &nbsp;0.0 /* 2nd standard parallel&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> &nbsp;-95 &nbsp;0 &nbsp;0.0 /* central meridian&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> &nbsp; &nbsp;0 &nbsp;0 &nbsp;0.0 /* latitude of projection&#39;s origin&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> 0.0 /* false easting (meters)&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;<br> 0.0 /* false northing (meters)&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;&nbsp;&nbsp; &nbsp;</p>

opencc-by-4.0Jun 2018View details →
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Fig. 1 in Haemoparasites in endemic and non-endemic passerine birds from central Mexico highlands

Fig. 1. Location of study sites. (A) Location of the State of Mexico, (B) Location of Nevado de Toluca Natural Protected Area (NTNPA), and Valle de Bravo Natural Protected Area (VBNPA), (C) Parque Ecológico Ejidal de Cacalomacán (PEEC) and (D) Parque Ecoturístico Corral de Piedra (PECP). Datum WGS_1984_UTM Zone 14.

opencc-by-4.0Apr 2020View details →
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Fig. 2 in The first complete leg of a passerine bird from the early Oligocene of Poland

Fig. 2. An unidentified passerine bird leg from SE Poland, Przysietnica, early Oligocene, circa 29 Mya (ZPALWr. A/4004). A. Main slab. B. Counter slab. C. Interpretative drawing of slab and counter slab (enlarged fragments are indicated by arrows). D. Enlarged proximal tarsometatarsus from main slab. E. Enlarged distal tarsometatarsus from main slab. F. Enlarged proximal tibiotarsus from counter slab.

opencc-by-4.0Dec 2014View details →
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Fig. 1 in The first complete leg of a passerine bird from the early Oligocene of Poland

Fig. 1. Location of the village of Przysietnica in southeastern Poland, where the specimen ZPALWr. A/4004 was found.

opencc-by-4.0Dec 2014View details →
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Fig. 1. Embryonated air sac nematode eggs collected from a in The presence of air sac nematodes in passerines and near-passerines in southern Germany

Fig. 1. Embryonated air sac nematode eggs collected from a (a) Eurasian nuthatch and a (b) great tit faecal sample. A dead great tit with (c) adult worms within its air sac – white arrow – and (d) embryonated eggs from a female worm retrieved from the great tit in (c). Measurements are in pixels (px) and photos taken at X40.

opencc-by-4.0Aug 2023View details →
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Figure 8 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 8. Comparison of fossil and extant acanthizid bones. Left carpometacarpi of (A–B) acanthizid gen. et sp. indet. QM F57928 and (C–D) Gerygone fusca AM O.66008 in (A,C) ventral and (B,D) dorsal aspects. Distal left tibiotarsi of (E) acanthizid gen. et sp. indet. QM F22796 and (F) Gerygone fusca AM O.66008 in cranial aspect. Some distinguishing features of Acanthizidae highlighted: 1, fovea lig. ventralis deep and recessed cranially; 2, ventral fossa on distal end of os metacarpale minus deep; 3, proc. dentiformis prominent and situated at proximo-distal midpoint of os metacarpale majus; 4, fovea carpalis caudalis small and shallow; 5, distal shaft narrow with respect to width of distal end; 6, pons supratendineus long; 7, lateral bony ridge for retinaculum m. fibularis well developed; 8, tuberositas retinaculi extensori lateralis prominent. Scale bar = 2 mm.

opencc-by-4.0Nov 2016View details →
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Figure 3 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 3. Distal ulnae of (A–C) fossil meliphagid gen. et sp. indet. QM F30855 and (D–F) Meliphaga lewinii AM O.60079 (mirrored). (A,D) cranial, (B,E) caudal and (C,F) dorsal aspects. Some characteristic features of Meliphagidae shown: 1, depressio radialis deep; 2, tub. carpale short and perpendicular to the shaft long axis; 3, condylus dorsalis far greater in proximal extent than condylus ventralis; 4, sulcus intercondylaris deep both caudally and distally; 5, papillae remigales caudales low; 6, condylus dorsalis protrudes well caudally from the shaft. Scale bar = 2 mm.

opencc-by-4.0Nov 2016View details →
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Figure 4 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 4. Carpometacarpi of fossil Meliphagidae gen. et sp. indet., compared with those of extant meliphagid species in (A,C,E,G,I) ventral and (B,D,F,H,J) dorsal aspects. (A–B) QM F57899, right carpometacarpus. (C–D) Manorina melanocephala AM O.59876. (E–F) QM F22794, proximal left carpometacarpus. (G–H) AR17407, left carpometacarpus. (I–J) Gliciphila melanops AM O.65515. Some characteristic features of Meliphagidae shown: 1, distal edge of facies articularis alularis situated proximally of the level of the fovea lig. ventralis; 2, fovea lig. ventralis large; 3, distal end of os metacarpale majus broad and its cranial extent is greater than that of proc. dentiformis; 4, fossa on ventral surface of distal end of os metacarpale minus; 5, fovea carpalis caudalis deep, its distal margin located distally of the level of proc. cranialis; 6, broad fossa at distal end of sulcus tendinosus. Scale bar = 2 mm.

opencc-by-4.0Nov 2016View details →
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Figure 12 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 12. Humeri of (A,D–F,I–J) fossil Petroicidae gen. et sp. indet. compared with those of (B,G) Microeca fascinans AM O.65147 and (C,H) Petroica phoenicea AM O.60008. (A,F) QM F 57901 left humerus. (D,I) QM F 50576, right humerus. (E,J) QM F 36366, distal left humerus. (A–E) caudal view, (F–J) cranial view. Some distinguishing features of Petroicidae shown: 1, crista deltopectoralis terminates well distally of crista bicipitalis; 2, proc. supracondylaris dorsalis broad with two apices; 3, fossa pneumotricipitalis II shallow and separate from fossa tricipitails I; 4, sulcus humerotricipitalis shallow; 5, proc. flexorius truncate and only slightly extends distally further than condylus dorsalis; 6, fossa pneumotricipitalis I pneumatic; 7, margo caudalis short and very low; 8, sulcus scapulotricipitalis wide and shallow; 9, distal end well expanded dorsally and 10, ventrally. Arrows indicate tooth punctures. Scale = 2 mm.

opencc-by-4.0Nov 2016View details →
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Figure 16 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 16. Tarsometatarsi of (B–G) fossil Megalurus sp. compared with the corresponding bones of (A) M. timoriensis AM O.65209 and (H) M. cruralis AM O.59220 in dorsal view. (B) QM F57934, left tarsometatarsus; (C) QM F30360, proximal left; (D) QM F57936, distal left; (E) QM F57937, distal left; (F) QM F30375, distal right; (G) QM F57935, distal left. Some distinguishing features labelled as follows: 1, impressio lig. collateralis medialis at about level with arcus extensorius; 2, lateral foramen vasculare proximale large; 3, tuberositas m. tibialis cranialis located distally adjacent of arcus extensorius and medially of shaft midpoint; 4, foramen vasculare distale situated proximally of incisura intertrochlearis lateralis by distance of ≥ 2× length of tr IV; 5, tr II similar width to tr III; 6, incisura intertrochlearis medialis narrow; 7, medial rim of tr II greater in distal and dorsal extents than lateral rim; 8, distal edge of tr IV at disto-lateral angle to shaft long axis. Arrows indicate different extent of medial protrusion of trochlea metatarsi II. Scale = 2 mm.

opencc-by-4.0Nov 2016View details →
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Figure 6 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 6. Proximal left tarsometatarsi of (A) fossil meliphagid gen. et sp. indet. QM F36374 and (B) Stomiopera unicolor AM O.70570 in dorsal aspect. Some distinguishing features for Meliphagidae shown: 1, cotyla medialis greater in proximal extent than cotyla lateralis; 2, impressio lig. collateralis medialis situated distally of arcus extensorius; 3, tuberositas m. tibialis cranialis located well distally of arcus extensorius and medially of the shaft midpoint. Scale bar = 2 mm.

opencc-by-4.0Nov 2016View details →
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Figure 10 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 10. Tibiotarsi of (A–D) fossil Pomatostomus sp. compared with (E–F) a left tibiotarsus of P. temporalis AM O. 68479. (A–B) QM F36368, distal left tibiotarsus. (C–D) QM F36670, distal right tibiotarsus. (A,C,E) cranial view, (B,D,F) caudal view. Some characteristic features are highlighted: 1, tuberositas retinaculi extensoris lateralis protuberant and at about level with the bony ridges for attachment of retinaculum m. fibularis; 2, lateral bony ridge for retinaculum m. fibularis a moderate flange, whereas medial bony ridge low; 3, trochlea cartilaginis tibialis very wide; 4, cristae near parallel. Scale bar = 2 mm.

opencc-by-4.0Nov 2016View details →
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Figure 5 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 5. Distal left tibiotarsi of (A) fossil meliphagid gen. et sp. indet. QM F30824 and (B) Ptilotula flavescens AM O.66333 in cranial aspect. Some characteristic features of Meliphagidae shown: 1, pons supratendineus very long; 2, tuberositas retinaculi extensori lateralis low and situated on proximal edge of pons supratendineus; 3, bony ridges for attachment of retinaculum m. fibularis low. Scale bar = 2 mm.

opencc-by-4.0Nov 2016View details →
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Figure 2 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 2. Humeri of (A,C,D,F) fossil Meliphagidae gen. et sp. indet., compared with the humerus of (B,E) Conopophila albogularis AM O.70096. (A,D) QM F30825, distal right humerus. (C,F) AR21604, distal left humerus. (A–C) caudal and (D–F) cranial aspects. Some characteristic features of Meliphagidae shown: 1, sulcus humerotricipitalis deep; 2, distal profile between sulci humerotricipitalis et scapulotricipitalis highly concave; 3, distal end greatly expanded dorsally and 4, ventrally; 5, proc. supracondylaris dorsalis bifurcated and projects well dorsally; 6, fossa m. brachialis moderately deep. Scale bar = 2 mm.

opencc-by-4.0Nov 2016View details →
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Figure 7 in The Late Cenozoic Passerine Avifauna from Rackham's Roost Site, Riversleigh, Australia

Figure 7. Distal tarsometatarsi of (A–B,D–E,G–H) fossil Meliphagidae gen. et sp. indet., compared with that of (C,F,I) Nesoptilotis leucotis AM O.59863. (A,D,G) QM F57929, distal left tarsometatarsus. (B,E,H) QM F36648, distal right tarsometatarsus. (A–C) dorsal and (D–F) plantar aspects, and (G–I) lateral aspect of distal end. Some characteristic features of Meliphagidae shown: 1, tr II medio-laterally compressed, pointed distally and rotated planto-medially from shaft long axis; 2, lateral edge of tr IV situated medially of that of shaft; 3, medial rim of tr III greater in distal extent than lateral rim; 4, incisura intertrochlearis medialis narrow; 5, medial flange at about level with fossa metatarsi I; 6, distal end dorso-plantarly compressed and distinctly bent plantarly. Scale bar = 2 mm.

opencc-by-4.0Nov 2016View details →

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Last verified 2026-04-29Open record