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Summary table of museum specimens Overview of the museum acronyms in The bats of the Congo and of Rwanda and Burundi revisited (Mammalia: Chiroptera)

<p><i>Summary table of museum specimens</i> Overview of the museum acronyms</p><table><thead><tr><th>Acronym</th><th><b>Name + Contact name + Database website</b></th></tr></thead><tbody><tr><th>AMNH</th><td>American Museum of Natural History, New York, USA; Nancy B. Simmons http://sci-web-001.amnh.org/db/emuwebamnh/index.php</td></tr><tr><th>BMNH</th><td>The Natural History Museum (formerly British Museum of Natural History), London, UK; Paulina Jenkins http://data.nhm.ac.uk/</td></tr><tr><th>CAS</th><td>California Academy of Sciences, San Francisco, USA; Maureen Flannery http://researcharchive.calacademy.org/research/bmammals/MamColl/index.asp</td></tr><tr><th>CM</th><td>Carnegie Museum, Pittsburgh, USA; Suzanne B. McLaren</td></tr><tr><th>DNSM</th><td>Durban Natural Science Museum, Durban, South Africa; Leigh Richards</td></tr><tr><th>FMNH</th><td>Field Museum of Natural History, Chicago, USA; Bruce D. Patterson</td></tr><tr><th></th><td>http://emuweb.fieldmuseum.org/mammals/taxonomic.php?_ga=1.142122738.1331713266.1463234212</td></tr><tr><th>HNHM</th><td>Hungarian Natural History Museum, Budapest, Hungary; G&aacute;bor Csorba</td></tr><tr><th>HZM</th><td>Harrison Institute (formerly Harrison Zoological Museum), Sevenoaks, UK; Paul Bates</td></tr><tr><th>INPBC</th><td>Institute of the National Parks of Belgian Congo, Brussels, Belgium</td></tr><tr><th>KU</th><td>University of Kansas, Natural History Museum, Lawrence, USA; Maria Eiffler http://collections.biodiversity.ku.edu/KUMammals/</td></tr><tr><th>MCZ</th><td>Museum of Comparative Zoology, Harvard University, Cambridge, USA; Judith Chupasko http://mczbase.mcz.harvard.edu/SpecimenSearch.cfm</td></tr><tr><th>MHNG</th><td>Mus&eacute;um d&rsquo;Histoire Naturelle, Gen&egrave;ve, Switzerland; Manuel Ruedi</td></tr><tr><th>MNHN</th><td>Mus&eacute;um national d&rsquo;Histoire naturelle, Paris, France; Jean Marc Pons https://science.mnhn.fr/institution/mnhn/collection/zm/item/search</td></tr><tr><th>MSB</th><td>Museum of Southwestern Biology, Albuquerque, USA; Joseph Cook http://arctos.database.museum/SpecimenSearch.cfm</td></tr><tr><th>NMBA</th><td>Naturhistorisches Museum, Basel, Switzerland; Denis Vallan, Raffael Winkler</td></tr><tr><th>NMP</th><td>National Museum (Natural History), Prague, Czech Republic; Petr Benda</td></tr><tr><th>NMW</th><td>Naturhistorisches Museum, Vienna, Austria; Frank Emmanuel Zachos</td></tr><tr><th>NMZL</th><td>National Museum of Zambia, Livingstone, Zambia; Clare Mateke</td></tr><tr><th>OSU</th><td>Oklahoma State University, Stillwater, USA; Karen McBee</td></tr><tr><th>RBINS</th><td>Royal Belgian Institute for Natural Sciences, Brussels, Belgium; Georges Lenglet, Tom Geerinckx, Olivier Pauwels https://darwin.naturalsciences.be/</td></tr><tr><th>RMCA</th><td>Royal Museum of Central Africa, Tervuren, Belgium; Wim Wendelen, Emmanuel Gilissen</td></tr><tr><th>RMNH</th><td>Naturalis - National Natuurhistorish Museum (formerly Rijksmuseum voor Natuurlijke Historie), Leiden, the Netherlands; Pepijn Kamminga, Steven van der Mije http://bioportal.naturalis.nl/</td></tr></tbody></table>

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Fig. 16. Distribution maps. A–B. Rhinolophus hildebrandtii Peters, 1878. C–D. Rhinolophus hilli Aellen, 1973. E–F in The bats of the Congo and of Rwanda and Burundi revisited (Mammalia: Chiroptera)

Fig. 16. Distribution maps. A–B. Rhinolophus hildebrandtii Peters, 1878. C–D. Rhinolophus hilli Aellen, 1973. E–F. Rhinolophus kahuzi Fahr &amp; Kerbis Peterhans, 2013. A, C, E. Distribution in the CRB area. B, D, F. Pan-African distribution.

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Fig. 15. Distribution maps. A–B. Rhinolophus clivosus Cretzschmar, 1826. C–D. Rhinolophus eloquens K. Andersen, 1905. E–F in The bats of the Congo and of Rwanda and Burundi revisited (Mammalia: Chiroptera)

Fig. 15. Distribution maps. A–B. Rhinolophus clivosus Cretzschmar, 1826. C–D. Rhinolophus eloquens K. Andersen, 1905. E–F. Rhinolophus fumigatus Rüppell, 1842. A, C, E. Distribution in the CRB area. B, D, F. Pan-African distribution.

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Fig. 7. Distribution maps. A–B in The bats of the Congo and of Rwanda and Burundi revisited (Mammalia: Chiroptera)

Fig. 7. Distribution maps. A–B. Nanonycteris veldkampii (Jentink, 1888). C–D. Megaloglossus woermanni Pagenstecher, 1885. E–F. Myonycteris angolensis (Bocage, 1898). A, C, E. Distribution in the CRB area. B, D, F. Pan-African distribution.

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Fig. 14. Distribution maps. A–B in The bats of the Congo and of Rwanda and Burundi revisited (Mammalia: Chiroptera)

Fig. 14. Distribution maps. A–B. Lavia frons (E. Geoffroy St.-Hilaire, 1810). C–D. Rhinolophus alcyone Temminck, 1852. E–F. Rhinolophus blasii Peters, 1867. A, C, E. Distribution in the CRB area. B, D, F. Pan-African distribution.

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Fig. 11. Distribution maps. A–B. Hipposideros abae J.A. Allen, 1917. C–D in The bats of the Congo and of Rwanda and Burundi revisited (Mammalia: Chiroptera)

Fig. 11. Distribution maps. A–B. Hipposideros abae J.A. Allen, 1917. C–D. Hipposideros beatus (K. Anderson,1906). E–F. Hipposideros caffer (Sundevall, 1846). A, C, E. Distribution in the CRB area. B, D, F. Pan-African distribution.

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Fig. 6. Distribution maps. A–B. Hypsignathus monstrosus H. Allen, 1862. C–D. Micropteropus intermedius Hayman, 1963. E–F in The bats of the Congo and of Rwanda and Burundi revisited (Mammalia: Chiroptera)

Fig. 6. Distribution maps. A–B. Hypsignathus monstrosus H. Allen, 1862. C–D. Micropteropus intermedius Hayman, 1963. E–F. Micropteropus pusillus (Peters, 1867). A, C, E. Distribution in the CRB area. B, D, F. Pan-African distribution.

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Fig. 1 in The bats of the Congo and of Rwanda and Burundi revisited (Mammalia: Chiroptera)

Fig. 1. Capture localities for all bats. The symbols represent: yellow (H): records included in Hayman et al. (1966), and brown (V): newly added records. Other coloured pins represent type specimens: red (H): holotype, blue (P): paratype or paralectotype (for further details, see text).

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Fig. 4. Distribution maps. A–B in The bats of the Congo and of Rwanda and Burundi revisited (Mammalia: Chiroptera)

Fig. 4. Distribution maps. A–B. Epomophorus labiatus (Temminck, 1837). C–D. Epomophorus minimus Claessen &amp; De Vree, 1991. E–F. Epomophorus minor Dobson, 1880. A, C, E. Distribution in the CRB area. B, D, F. Pan-African distribution.

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Fig. 8. Distribution maps. A–B. Myonycteris relicta Bergmans, 1980. C–D in The bats of the Congo and of Rwanda and Burundi revisited (Mammalia: Chiroptera)

Fig. 8. Distribution maps. A–B. Myonycteris relicta Bergmans, 1980. C–D. Myonycteris torquata (Dobson, 1878). E–F. Plerotes anchietae (Seabra, 1900). A, C, E. Distribution in the CRB area. B, D, F. Pan-African distribution.

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Fig. 13. Distribution maps. A–B in The bats of the Congo and of Rwanda and Burundi revisited (Mammalia: Chiroptera)

Fig. 13. Distribution maps. A–B. Macronycteris gigas (Wagner, 1845). C–D. Macronycteris vittatus (Peters, 1852). E–F. Cardioderma cor (Peters, 1872). A, C, E. Distribution in the CRB area. B, D, F. Pan-African distribution.

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Fig. 9. Distribution maps. A–B in The bats of the Congo and of Rwanda and Burundi revisited (Mammalia: Chiroptera)

Fig. 9. Distribution maps. A–B. Rousettus aegyptiacus (E. Geoffroy St.-Hilaire, 1810). C–D. Casinycteris argynnis Thomas, 1910. E–F. Scotonycteris bergmansi Hassanin et al., 2015. A, C, E. Distribution in the CRB area. B, D, F. Pan-African distribution.

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Fig. 3. Distribution maps. A–B in The bats of the Congo and of Rwanda and Burundi revisited (Mammalia: Chiroptera)

Fig. 3. Distribution maps. A–B. Eidolon helvum (Kerr, 1792). C–D. Epomophorus anselli Bergmans &amp; Van Strien, 2004. E–F. Epomophorus crypturus Peters, 1852. A, C, E. Distribution in the CRB area. B, D, F. Pan-African distribution.

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Fig. 12. Distribution maps. A–B. Hipposideros camerunensis Eisentraut, 1956. C–D in The bats of the Congo and of Rwanda and Burundi revisited (Mammalia: Chiroptera)

Fig. 12. Distribution maps. A–B. Hipposideros camerunensis Eisentraut, 1956. C–D. Hipposideros fuliginosus (Temminck, 1853). E–F. Hipposideros ruber (Noack, 1893). A, C, E. Distribution in the CRB area. B, D, F. Pan-African distribution.

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FIG. 5 in The hyaenodonts (Mammalia) from the French locality of Aumelas (Hérault), with possible new representatives from the late Ypresian

FIG. 5. — Values of the Ln (body mass) of mesonychids, oxyaenids, and hyaenodonts ("Proviverrinae" sensu Solé (2013), "Sinopinae", "Arfiinae", Hyaenodontinae, and Hyainailourinae) from MP7 to MP19 with particular attention on hyaenodonts from Aumelas. Aumelas is here represented to be close to the MP11 referencelevel. Abbreviations: ELMA, European Land Mammal Ages; EMP, Mammal Palaeogene. Values are available at Appendix 6.

opencc-zeroJun 2020View details →
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FIG. 7 in Description of a new species of Cynodictis Bravard & Pomel, 1850 (Carnivora, Mammalia) from the Quercy Phosphorites with comments on the use of skull morphology for phylogenetics

FIG. 7. — Cranium of Cynodictis lacustris Gervais, 1852 (MNHN.F.Qu1903-20) in dorsal view (A), lateral view (B) and ventral view (C). Abbreviations: bo, basioccipital; bs, basisphenoid; ce, carnassial embrasure pit; csm, crista supramastoideus; eo, exoccipital; fm, foramen magnum; fr, frontal; M1, upper first molar; mp, mastoid process; mx, maxillary; nc, nuchal crest; oc, occipital condyle; pa, parietal; pal, palatine; pop, postorbital process of frontal; pp, paroccipital process; pr, promontorium of petrosal; ps, presphenoid; pt, pterygoid; ptp, posttympanic process of squamosal; rt, foramen for ramus temporalis; sc, sagittal crest; tc, temporal crest. Scale bar: 10 mm.

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FIG. 2 in Description of a new species of Cynodictis Bravard & Pomel, 1850 (Carnivora, Mammalia) from the Quercy Phosphorites with comments on the use of skull morphology for phylogenetics

FIG. 2. — Cranium of Cynodictis peignei n. sp. (snout – MNHN.F.Qu9007; neurocranium – MNHN.F.Qu9008) in dorsal view (A), lateral view (B) and ventral view (C). Abbreviations: bo, basioccipital; bs, basisphenoid; C, upper canine; ce, carnassial embrasure pit; csm, crista supramastoideus; eo, exoccipital; fm, foramen magnum; fr, frontal; gf, glenoid fossa; I3, upper third incisor; inf, incisive foramen; iof, infraorbital foramen; ju, jugal; lac, lacrimal; lacf, lacrimal foramen; mp, mastoid process; mpfr, maxillary process of frontal; mx, maxillary; mxt, maxillary tuberosity; na, nasal; nc, nuchal crest; np, nasal process of nasal; oc, occipital condyle; P1, upper first premolar; P2, upper second premolar; P3, upper third premolar; P4, upper ultimate premolar; pa, parietal; pal, palatine; pdp, posterodorsal process of premaxillary; pgp, postglenoid process; pmx, premaxillary; pop, postorbital process of frontal; pp, paroccipital process; pr, promontorium of petrosal; ptp, posttympanic process of squamosal; rt, foramen for ramus temporalis; sc, sagittal crest; sq, squamosal; zpmx, zygomatic process of maxillary; zpsq, zygomatic process of squamosal. Scale bar: 10 mm.

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FIG. 2 in On the morphology of the astragalus and calcaneus of the amphicyonids (Carnivora, Mammalia) from the Paleogene of Europe: implications for the ecology of the European bear-dogs

FIG. 2. — Tarsal bones of Cynodictis lacustris from Aubrelong (France; Rupelian, MP21): A-E, MNHN.F.Au994, left astragalus (reversed views); A, dorsal view; B, ventral view; C, lateral view; D, distal view; E, proximal view; F-J, MNHN.F.Au2044, right calcaneus; F, dorsal view; G, lateral view; H, medial view; I, distal view; J, proximal view. Abbreviations: cf, cuboid facet; ef, ectal facet; f, foramen; ff, fibular facet; h, head; ll, lateral lip; lp, lateral process; lpt, lateral process of tuber; ml, medial lip; mpt, medial process of tuber; n, neck; ppt, proximal plantar tuberosity; plt, plantar tubercle; pp, peroneal process; ptg, plantar tendon groove; sf, sustentacular facet; sg, sagittal groove; sit, sinus of the tarsus; st, sustentaculum tali; tc, tuber calcanei; tr, trochlea. Scale bar: 1 cm.

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APPENDIX 1 in On the morphology of the astragalus and calcaneus of the amphicyonids (Carnivora, Mammalia) from the Paleogene of Europe: implications for the ecology of the European bear-dogs

APPENDIX 1. — Measurements, in mm, of astragali used for the estimation of body mass. For each morphotype, only the values of the smallest and biggest specimens are provided.

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FIG. 4 in On the morphology of the astragalus and calcaneus of the amphicyonids (Carnivora, Mammalia) from the Paleogene of Europe: implications for the ecology of the European bear-dogs

FIG. 4. — Calcanei of undetermined amphicyonids from the Quercy (France; Priabonian-Chattian, MP18-MP30): A-E, Morphotype A, MNHN.F.Qu9845, left calcaneus (reversed views): A, dorsal view; B, lateral view; C, medial view; D, distal view; E, proximal view; F-J, Morphotype B, KUL.PLV1542_28, left calcaneus (reversed views); F, dorsal view; G, lateral view; H, medial view; I, distal view; J, proximal view; K-O, Morphotype C, KUL.PLV1542_29, left calcaneus (reversed views): K, dorsal view; L, lateral view; M, medial view; N, distal view; O, proximal view. Abbreviations: cf, cuboid facet; ef, ectal facet; lpt, lateral process of tuber; mpt, medial process of tuber; pp, peroneal process; plt, plantar tubercle; ptg, tendinous plantar groove; sg, sagittal groove; sf, sustentacular facet; st, sustentaculum tali; tc, tuber calcanei. Scale bar: 1 cm.

opencc-zeroJul 2020View details →

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International Brain Laboratory public data

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Last verified 2026-04-29Open record

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Last verified 2026-04-29Open record