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2,060 results for “Papua New Guinea”
Ende (Papua New Guinea) IDS wordlist by Kate Lynn Lindsey
<p>Cite the source of the dataset as:</p> <blockquote> <p>Kate Lynn Lindsey. 2020. Ende (Papua New Guinea) dictionary. In: Key, Mary Ritchie & Comrie, Bernard (eds.) The Intercontinental Dictionary Series. Leipzig: Max Planck Institute for Evolutionary Anthropology. (Available online at https://ids.clld.org/)</p> </blockquote>
National Checklists 2017: Papua New Guinea Species List
Lists of taxa for each country and a few other administrative zones harvested from effechecka using simplified versions of geonames polygons. See <p></p>https://github.com/diatomsRcool/checklists for details<p></p>A list of species from Papua New Guinea collected using effechecka and geonames polygons
National Checklists 2019: Papua New Guinea Species List
Lists of taxa for each country and a few other administrative zones harvested from effechecka using simplified versions of geonames polygons. See <p></p>https://github.com/diatomsRcool/checklists for details.<p></p>A list of species from Papua New Guinea collected using effechecka and geonames polygons
Wordlist files of lexical data from Papua New Guinea and western Solomons Oceanic languages collated for Ross's 1986 PhD thesis and 1988 publication thereof
<p>It occurs to me that the files containing Western Oceanic lexical data that I collected in the late 70s/early 80s for my PhD (Ross 1988) might be useful to someone. They are also used in the volumes of <em>The lexicon of Proto Oceanic </em>(Ross, Pawley & Osmond 1998, 2003, 2011, 2016, 2023). In any case, it is right that they be made publicly available, something that wasn't so easy back then. Most of the material is from wordlists that I collected during fieldwork in Papua New Guinea from around 1978 to 1982. The file cor06 is omitted because it contains SE Solomonic data (outside Western Oceanic) drawn from Tryon & Hackman 1983.</p> <p>I keyed the data into text files in a format such that each line was the entry for a single word, and each field within an entry was marked by a backslash code (I adapted this format from SIL's conventions at the time), then arranged them in cognate sets, each set separated from the next by an empty line. This work was done between 1983 and 1985, when text files were the best way to store data. They were entered on a terminal connected to a mainframe computer at the ANU. I have converted the ASCII symbols used in the original files into UTF-8 here in the interests of readability. The conversion was largely automatic, and I have not done a full check of each file, so there may be glitches.</p> <p>Each file contains languages from a region, as listed below (and the regions sometimes cut across subgroups determined by the comparative method). Three-letter abbreviations are used for language names, and two key files are also provided, one (COR-abbrevs) ordered by regions (determined by the numerals that start each line), the other by alphabetical order of language name (COR-abbrevs-alph). Some three-letter codes are followed by a hyphen and an extra letter. These are dialects. For example, MUM stands for Mumeng and MUM-P for the Patep dialect of Mumeng.</p> <p>Data files are labelled with COR (for 'correspondence sets') plus a numeral. The numerals are: 1-3 New Ireland; 4 Willaumez Peninsula (New Britain) area; 5 NW Solomonic; 7+8 Papuan Tip; 9 Vitiaz Strait area and NG north coast; 10 Huon Gulf and Markham Valley; 11 South and west New Britain. 7+8 are partial only. When I keyed the files, I had to rely on a mainframe's nightly back-up onto tape spools. One night the system failed, and so did the restore, and I lost some data.</p> <p>The backslash codes in the data files are: \l language; \p protolanguage; \w word; \g gloss; \n note; \s source. The formatting of these files is a little odd, since they served as input to routines I wrote to pull out sound correspondences. Anything after '%' is the elicited form: what immediately precedes '%' has had something 'undone', e.g. metathesis.</p> <p>The orthography of the files is phonemic and largely obvious. The conventions are set out in the introductions to the volumes of <em>The lexicon of Proto Oceanic.</em></p> <p>Finally, the files also contain reconstructions at various interstages at the top of a cognate set. These were inserted for heuristic reasons during my research. Many of them did not survive into my PhD thesis, and they should preferably be ignored. The reader who is interested in current Oceanic reconstructions should turn to the volumes of <em>The lexicon of Proto Oceanic.</em></p>
Figure 9 in New microhylid Frogs from the Muller Range, Papua New Guinea
Figure 9. Detail of the middle three notes of call "D" of Oreophryne anamiatoi sp. n. (BPBM 33774). A Waveform, B power spectrum, and C spectrogram. Note the pulsing of the notes.
Figure 6. A in New microhylid Frogs from the Muller Range, Papua New Guinea
Figure 6. A Waveforms of the first four notes of the call of Cophixalus caverniphilus sp. n. Call "J" of BPBM 33747 B Call "D" produced by BPBM 33748. See Table 4 for details.
Figure 5. A Waveform, B in New microhylid Frogs from the Muller Range, Papua New Guinea
Figure 5. A Waveform, B power spectrum, and C spectrogram of the complete call of call "H" (Table 4) of Cophixalus caverniphilus sp. n. (BPBM 33748) recorded from a cave at Mt. Paramo, Muller Range, 1720 m, Southern Highlands Province, Papua New Guinea at 0830 h, 5 April 2009. Air (cave) temperature 17.6 °C.
Figure 4 in New microhylid Frogs from the Muller Range, Papua New Guinea
Figure 4. Map showing known distribution of three new species of microhylid frogs from along the eastern slope of Mt. Itukua, Muller Range, Southern Highlands Province, Papua New Guinea (star).
Figure 2. A Waveform, B in New microhylid Frogs from the Muller Range, Papua New Guinea
Figure 2. A Waveform, B power spectrum, and C spectrogram of call "T" of Albericus murritus sp. n. (BPBM 33641) recorded on E slope Mt. Itukua, Muller Range, Southern Highlands Province, Papua New Guinea on 27 March 2009 at 2020 h. Air temperature 14.7 °C.
Figure 5. A Dorsum B ventrum C in New genus of diminutive microhylid frogs from Papua New Guinea
Figure 5. A Dorsum B ventrum C side of head D palmar view of left hand, and E plantar view of right foot of holotype of Paedophryne oyatabu (BPBM 16433).
Figure 4. A Dorsum B ventrum C in New genus of diminutive microhylid frogs from Papua New Guinea
Figure 4. A Dorsum B ventrum C side of head D palmar view of left hand, and E plantar view of left foot of holotype of Paedophryne kathismaphlox (BPBM 17977).
Figure 6 in New genus of diminutive microhylid frogs from Papua New Guinea
Figure 6. Map of southeastern Papua New Guinea, showing type localities for Paedophryne kathismaphlox (filled circle) and P. oyatabu (star).
Figure 3. A Lateral B in New genus of diminutive microhylid frogs from Papua New Guinea
Figure 3. A Lateral B dorsal, and C ventral superficial head muscles for Cophixalus verrucosus (BPBM 15282) D lateral E dorsal, and F ventral superficial head muscles for Aphantophryne pansa (BPBM 25278), and G lateral H dorsal, and I ventral superficial head muscles for Paedophryne kathismaphlox (BPBM 35353). Scale bar = 5 mm.
Fig. 9. Actaea spinosissima Borradaile, 1902 in Actaea grimaldii, a new species of reef crab from Papua New Guinea (Crustacea, Brachyura, Xanthidae)
Fig. 9. Actaea spinosissima Borradaile, 1902, ♂, 8.9 × 6.6 mm (ZRC), Chagos Islands A. Dorsal view of carapace. B. Thoracic sternum showing vulvae. C. Right fourth ambulatory leg.
Fig. 7. Actaea spinosissima Borradaile, 1902 in Actaea grimaldii, a new species of reef crab from Papua New Guinea (Crustacea, Brachyura, Xanthidae)
Fig. 7. Actaea spinosissima Borradaile, 1902, holotype, ♂, 5.1 × 3.4 mm (CUMZ I.63106), Maldives. A. Frontal view of carapace. B. Anterior thoracic sternum (sternites 1–4), telson and abdominal somite 6. C. Outer view of left chela.
Fig. 6. Actaea spinosissima Borradaile, 1902 in Actaea grimaldii, a new species of reef crab from Papua New Guinea (Crustacea, Brachyura, Xanthidae)
Fig. 6. Actaea spinosissima Borradaile, 1902, holotype, ♂, 5.1 × 3.4 mm (CUMZ I.63106). Dorsal view of habitus, photographed from slightly different angles.
Fig. 5 in Actaea grimaldii, a new species of reef crab from Papua New Guinea (Crustacea, Brachyura, Xanthidae)
Fig. 5. Actaea grimaldii sp. nov., holotype, ♂, 6.2 × 4.4 mm (MNHN IU 2013-921), Papua New Guinea. A. Right third maxilliped (setae not drawn). B. Anterior thoracic sternum (sternites 1–4) and telson. C. Abdominal somites 1–6. D. Ventral view of left G1. E. Ventral view of distal part of left G1. F. Dorsal view of distal part of left G1. G. Left G2. Scale bars: A, D, G = 0.5 mm; B–C = 1.0 mm; E–F = 0.1 mm.
Fig. 4 in Actaea grimaldii, a new species of reef crab from Papua New Guinea (Crustacea, Brachyura, Xanthidae)
Fig. 4. Actaea grimaldii sp. nov., paratype, ♀, 10.2 × 7.8 mm (ZRC, ex MNHN IU 2013-1245), Papua New Guinea. A. Dorsal view of carapace. B. Thoracic sternum showing vulvae. C. Right fourth ambulatory leg.
Fig. 3 in Actaea grimaldii, a new species of reef crab from Papua New Guinea (Crustacea, Brachyura, Xanthidae)
Fig. 3. Actaea grimaldii sp. nov., paratype, ♀, 10.2 × 7.8 mm (ZRC, ex MNHN IU 2013-1245), Papua New Guinea. A. Dorsal view of habitus. B. Frontal view of carapace. C. Outer view of right chela. D. Outer view of left chela.
Fig. 8. Actaea spinosissima Borradaile, 1902 in Actaea grimaldii, a new species of reef crab from Papua New Guinea (Crustacea, Brachyura, Xanthidae)
Fig. 8. Actaea spinosissima Borradaile, 1902, ♂, 8.9 × 6.6 mm (ZRC), Chagos Islands A. Dorsal view of habitus. B. Frontal view of carapace. C. Outer view of right chela. D. Outer view of left chela.
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International Brain Laboratory public data
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OpenNeuro
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