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55 results for “Medius”
Linked collectors and determiners for: Two new species of Australian Eutarsopolipus (Acariformes: Podapolipidae) from Nurus medius (Coleoptera: Carabidae).
Natural history specimen data linked to collectors and determiners held within, "Two new species of Australian Eutarsopolipus (Acariformes: Podapolipidae) from Nurus medius (Coleoptera: Carabidae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="http://bionomia.net/dataset/5b436602-7dfa-4336-8dff-24debf9bf16c">https://bionomia.net/dataset/5b436602-7dfa-4336-8dff-24debf9bf16c</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/5b436602-7dfa-4336-8dff-24debf9bf16c">https://gbif.org/dataset/5b436602-7dfa-4336-8dff-24debf9bf16c</a>. Formatted as a Frictionless Data package.
Alternative assemblies for Pteropus medius genome
<p>This dataset correspond to the alternative assemblies for P. medius genome.</p> <p>The final assembly has been deposited on ENA: https://www.ebi.ac.uk/ena/data/view/GCA_902729225</p>
FIGURE 1. Maximum Likelihood tree with bootstrap values over 50 in Onthophagus (Palaeonthophagus) medius (Kugelann, 1792) — a good western palaearctic species in the Onthophagus vacca complex (Coleoptera: Scarabaeidae: Scarabaeinae: Onthophagini)
FIGURE 1. Maximum Likelihood tree with bootstrap values over 50% shown above the branches that resulted from the analysis of the mitochondrial DNA sequences. Collecting sites: Bulgaria: L1—Sakar Mts: Topolovgrad, L2—Strandza Mts.: Zvezdec, L3—Bakadzicite: Vojnika, L4—Sinemorec (8 km S Ahtopol); Germany: L5—Klein Schmölen, L6— Mecklenburg: Sternberg; Italy: L7—Torino (Ipla), L8—Sardinia: Rio Antas: Flumini-magg.-Tempio di Antas, L9—St. Antíoco, Tonnara, L10—Cala Gonone, L11—Monte Lupone, L12—Rocca Massima, L13—Lago Sefro, L14—Piane della Regna, L15—Colle dell'Orso, L16—Campodimele env., L17—Pantano della Zottola, Iserina; Spain: L18— Higuera de la Sierra, L19—Avila to El Barraco, L20—Guadix, L21—Extremadura: 1 km E Jarandilla.
Subspecies and Distribution. B. a. alleni Thomas, 1880 — South America, E of the Andes. B. a. medius Thomas, 1909 — Choc6 region of W Colombia, Ecuador, and NW Venezuela. B. a. orinomus Goldman, 1912 — E Panama. in Procyonidae
Subspecies and Distribution. B. a. alleni Thomas, 1880 — South America, E of the Andes. B. a. medius Thomas, 1909 — Choc6 region of W Colombia, Ecuador, and NW Venezuela. B. a. orinomus Goldman, 1912 — E Panama.
On following pages: 3. Small Long-fingered Bat (Miniopterus pusillus); 4. Intermediate Long-fingered Bat (Miniopterus medius); 5. Ryukyu Long-fingered Bat (Miniopterus fuscus); 6. Eschscholtz's Long-fingered Bat (Miniopterus eschscholtzil); 7. Philippine Long-fingered Bat (Miniopterus paululus); 8. Great Long-fingered Bat (Miniopterus tristis); 9. Shortridge's Long-fingered Bat (Miniopterus shortridgel); 10. Javanese Long-fingered Bat (Miniopterus blepotis); 11. Little Long-fingered Bat (Miniopterus australis); 12. Small Melanesian Long-fingered Bat (Miniopterus macrocneme); 13. Loyalty Long-fingered Bat (Miniopterus robustior); 14. Australian Long-fingered Bat (Miniopterus orianae); 15. Pallid Long-fingered Bat (Miniopterus pallidus); 16. Schreibers's Long-fingered Bat (Miniopterus schreibersii); 17. Maghrebian Long-fingered Bat (Miniopterus maghrebensis). in Miniopteridae
On following pages: 3. Small Long-fingered Bat (Miniopterus pusillus); 4. Intermediate Long-fingered Bat (Miniopterus medius); 5. Ryukyu Long-fingered Bat (Miniopterus fuscus); 6. Eschscholtz's Long-fingered Bat (Miniopterus eschscholtzil); 7. Philippine Long-fingered Bat (Miniopterus paululus); 8. Great Long-fingered Bat (Miniopterus tristis); 9. Shortridge's Long-fingered Bat (Miniopterus shortridgel); 10. Javanese Long-fingered Bat (Miniopterus blepotis); 11. Little Long-fingered Bat (Miniopterus australis); 12. Small Melanesian Long-fingered Bat (Miniopterus macrocneme); 13. Loyalty Long-fingered Bat (Miniopterus robustior); 14. Australian Long-fingered Bat (Miniopterus orianae); 15. Pallid Long-fingered Bat (Miniopterus pallidus); 16. Schreibers's Long-fingered Bat (Miniopterus schreibersii); 17. Maghrebian Long-fingered Bat (Miniopterus maghrebensis).
On following pages: 177. Bonin Flying Fox (Pteropus pselaphon); 178. Little Golden-mantled Flying Fox (Pteropus pumilus); 179. Lyle's Flying Fox (Pteropus lylei); 180. Indian Flying Fox (Pteropus medius); 181. Rodrigues Flying Fox (Pteropus rodricensis); 182. Large Flying Fox (Pteropus vampyrus); 183. Aldabra Flying Fox (Pteropus aldabrensis); 184. Malagasy Flying Fox (Pteropus rufus); 185. Seychelles Flying Fox (Pteropus seychellensis); 186. Greater Mascarene Flying Fox (Pteropus nigen; 187. Aru Flying Fox (Pteropus aruensis); 188. Kai Flying Fox (Pteropus keyensis); 189. Black-bearded Flying Fox (Pteropus melanopogon); 190. South Moluccan Flying Fox (Pteropus chrysoproctus); 191. North Moluccan Flying Fox (Pteropus caniceps). in Pteropodidae
On following pages: 177. Bonin Flying Fox (Pteropus pselaphon); 178. Little Golden-mantled Flying Fox (Pteropus pumilus); 179. Lyle's Flying Fox (Pteropus lylei); 180. Indian Flying Fox (Pteropus medius); 181. Rodrigues Flying Fox (Pteropus rodricensis); 182. Large Flying Fox (Pteropus vampyrus); 183. Aldabra Flying Fox (Pteropus aldabrensis); 184. Malagasy Flying Fox (Pteropus rufus); 185. Seychelles Flying Fox (Pteropus seychellensis); 186. Greater Mascarene Flying Fox (Pteropus nigen; 187. Aru Flying Fox (Pteropus aruensis); 188. Kai Flying Fox (Pteropus keyensis); 189. Black-bearded Flying Fox (Pteropus melanopogon); 190. South Moluccan Flying Fox (Pteropus chrysoproctus); 191. North Moluccan Flying Fox (Pteropus caniceps).
Data from: Computational Modeling of Gluteus Medius Muscle Moment Arm in Caviomorph Rodents Reveals Ecomorphological Specializations
<p>The data stored in this repository allow the reproduction of the study described in the following. Vertebrate musculoskeletal locomotion is realized through lever-arm systems. The instantaneous muscle moment arm (IMMA), which is expected to be under selective pressure and thus of interest for ecomorphological studies, is a key aspect of these systems. The IMMA changes with joint motion and its length change is technically difficult to acquire—usually, proxies such as osteological in-levers are used instead—and has not been compared in a larger phylogenetic ecomorphology framework, yet. We used 18 species of the ecologically diverse clade of caviomorph rodents to test whether its diversity is reflected in the IMMA of the hip extensor M. gluteus medius. A large IMMA is beneficial for torque generation; a small IMMA facilitates fast joint excursion. We expected large IMMAs in scansorial species, small IMMAs in fossorial species, and somewhat intermediate IMMAs in cursorial species, depending on the relative importance of acceleration and joint angular velocity. We modelled the IMMA over the entire range of possible hip extensions and applied macroevolutionary model comparison to selected joint poses. We also obtained the osteological in-lever of the M. gluteus medius to compare it to the IMMA. At small hip extension, the IMMA was largest on average in scansorial species, while the other two lifestyles were similar. We interpret this as an emphasized need for increased hip joint torque when climbing on inclines, especially in a crouched posture. Cursorial species might benefit from a fast joint excursion, but their similarity with the fossorial species is difficult to interpret and could hint at ecological similarities. At larger extension angles, cursorial species displayed the second-largest IMMAs after scansorial species. The larger IMMA optimum results in powerful hip extension which coincides with forward acceleration at late stance beneficial for climbing, jumping, and escaping predators. This might be less relevant for a fossorial lifestyle. The results of the in-lever only matched the IMMA results of larger hip extension angles, suggesting that the modelling of the IMMA provides more nuanced insights into adaptations of musculoskeletal lever arm systems than this osteological proxy.</p>
Subspecies and Distribution. P. f. flavus Baird, 1855 — SW USA and NC Mexico (SE Arizona, New Mexico, N & W Texas, and from NE Sonora and Chihuahua to NC Durango). P. f. bimaculatus Merriam, 1889 — SW USA (WC Arizona). P. f. bunkeri Cockrum, 1951 — SC USA (WC Great Plains of E Colorado, W Kansas, and W Oklahoma). P. f. fuliginosus Merriam, 1890 — SW USA (vicinity of San Francisco Mts and Mogollon Plateau, NC Arizona). P. f. fuscus S. Anderson, 1972 — NW Mexico (upper valley of the Rio Papigochic and watershed of the Laguna Bustillos, WC Chihuahua). P. f. goodpaster: Hoffmeister, 1956 — SW USA (restricted distribution on the Mogollon Plateau of EC Arizona). P. f. hopiensis Goldman, 1932 — SW USA (Four Corners region of SE Utah, SW Colorado, NE Arizona, and NW New Mexico). P. f. medius Baker, 1954 — NC Mexico (SE Durango, SE Coahuila, Zacatecas, W San Luis Potosi, Aguascalientes, NE Jalisco, and Guanajuato). P. f. mexicanus Merriam, 1894 — EC Mexico (Querétaro, Hidalgo, NE Michoacan, Puebla, Distrito Federal, Tlaxcala, WC Veracruz, and Morelos). P. f. pallescens Baker, 1954 — NE Mexico (SE Chihuahua, W Coahuila, and NE Durango). P. f. parviceps Baker, 1954 — WC Mexico (S Zacatecas and N Jalisco). P. f. piperi Goldman, 1917 — NC USA (N Great Plains of E Wyoming and W Nebraska). P. f. sanluisi Hill, 1952 — SW USA (San Luis Valley of SC Colorado). P. f. sonoriensis Nelson & Goldman, 1934 — NW Mexico (disjunct distribution in coastal plains of WC Sonora). in Heteromyidae
Subspecies and Distribution. P. f. flavus Baird, 1855 — SW USA and NC Mexico (SE Arizona, New Mexico, N & W Texas, and from NE Sonora and Chihuahua to NC Durango). P. f. bimaculatus Merriam, 1889 — SW USA (WC Arizona). P. f. bunkeri Cockrum, 1951 — SC USA (WC Great Plains of E Colorado, W Kansas, and W Oklahoma). P. f. fuliginosus Merriam, 1890 — SW USA (vicinity of San Francisco Mts and Mogollon Plateau, NC Arizona). P. f. fuscus S. Anderson, 1972 — NW Mexico (upper valley of the Rio Papigochic and watershed of the Laguna Bustillos, WC Chihuahua). P. f. goodpaster: Hoffmeister, 1956 — SW USA (restricted distribution on the Mogollon Plateau of EC Arizona). P. f. hopiensis Goldman, 1932 — SW USA (Four Corners region of SE Utah, SW Colorado, NE Arizona, and NW New Mexico). P. f. medius Baker, 1954 — NC Mexico (SE Durango, SE Coahuila, Zacatecas, W San Luis Potosi, Aguascalientes, NE Jalisco, and Guanajuato). P. f. mexicanus Merriam, 1894 — EC Mexico (Querétaro, Hidalgo, NE Michoacan, Puebla, Distrito Federal, Tlaxcala, WC Veracruz, and Morelos). P. f. pallescens Baker, 1954 — NE Mexico (SE Chihuahua, W Coahuila, and NE Durango). P. f. parviceps Baker, 1954 — WC Mexico (S Zacatecas and N Jalisco). P. f. piperi Goldman, 1917 — NC USA (N Great Plains of E Wyoming and W Nebraska). P. f. sanluisi Hill, 1952 — SW USA (San Luis Valley of SC Colorado). P. f. sonoriensis Nelson & Goldman, 1934 — NW Mexico (disjunct distribution in coastal plains of WC Sonora).
Subspecies and Distribution. L.e.europaeusPallas,1778—WesternEurope. L. e. caspicus Hemprich & Ehrenberg, 1832 — Lower Volga, Kalmykia (Russia) and W Kazakhstan. JR e. connor Robinson, 1918 — NW Iran. e. creticus Barrett-Hamilton, 1903 — Crete (Greece). a e. cyprius Barrett-Hamilton, 1903 — Cyprus. e. cyrensis Satunin, 1905 — Azerbaijan, Transcaucasia. a e. hybridus Desmarest, 1822 — Baltic States, Belarus, Ukraine, Finland, W & C Russia. Sl e. judeae Gray, 1867 — Palestine. aE e. karpathorum Hilzheimer, 1906 — Carpathian Mts. all e. medius Nilsson, 1820 — Denmark. al e. occidentalis de Winton, 1898 — Great Britain. ul e. parnassius Miller, 1903 — C Greece. el. e. ponticus Ognev, 1929 — Black Sea coast (Russia). ul. e. rhodius Festa, 1914 — Rhodes (Greece). Bl e. syriacus Hemprich & Ehrenberg, 1832 — Syria. ab. e. transsylvanicus Matschie, 1901 — E & SE Europe. in Leporidae
Subspecies and Distribution. L.e.europaeusPallas,1778—WesternEurope. L. e. caspicus Hemprich & Ehrenberg, 1832 — Lower Volga, Kalmykia (Russia) and W Kazakhstan. JR e. connor Robinson, 1918 — NW Iran. e. creticus Barrett-Hamilton, 1903 — Crete (Greece). a e. cyprius Barrett-Hamilton, 1903 — Cyprus. e. cyrensis Satunin, 1905 — Azerbaijan, Transcaucasia. a e. hybridus Desmarest, 1822 — Baltic States, Belarus, Ukraine, Finland, W & C Russia. Sl e. judeae Gray, 1867 — Palestine. aE e. karpathorum Hilzheimer, 1906 — Carpathian Mts. all e. medius Nilsson, 1820 — Denmark. al e. occidentalis de Winton, 1898 — Great Britain. ul e. parnassius Miller, 1903 — C Greece. el. e. ponticus Ognev, 1929 — Black Sea coast (Russia). ul. e. rhodius Festa, 1914 — Rhodes (Greece). Bl e. syriacus Hemprich & Ehrenberg, 1832 — Syria. ab. e. transsylvanicus Matschie, 1901 — E & SE Europe.
On following pages: 90. Unicolored Tree-rat (Phyllomys unicolon; 91. Patton's Atlantic Tree-rat (Phyllomys patton); 92. Serra da Mantiqueira Atlantic Tree-rat (Phyllomys mantiqueirensis); 93. Lund's Atlantic Tree-rat (Phyllomys lundi): 94. Kerr's Atlantic Tree-rat (Phyllomys kerri); 95. Long-furred Atlantic Tree-rat (Phyllomys medius); 96. Giant Atlantic Tree-rat (Phyllomys thomasi); 97. Drab Atlantic Tree-rat (Phyllomys dasythrix); 98. Southern Atlantic Treerat (Phyllomys sulinus); 99. Black-spined Atlantic Tree-rat (Phyllomys nigrispinus). in Echimyidae
On following pages: 90. Unicolored Tree-rat (Phyllomys unicolon; 91. Patton's Atlantic Tree-rat (Phyllomys patton); 92. Serra da Mantiqueira Atlantic Tree-rat (Phyllomys mantiqueirensis); 93. Lund's Atlantic Tree-rat (Phyllomys lundi): 94. Kerr's Atlantic Tree-rat (Phyllomys kerri); 95. Long-furred Atlantic Tree-rat (Phyllomys medius); 96. Giant Atlantic Tree-rat (Phyllomys thomasi); 97. Drab Atlantic Tree-rat (Phyllomys dasythrix); 98. Southern Atlantic Treerat (Phyllomys sulinus); 99. Black-spined Atlantic Tree-rat (Phyllomys nigrispinus).
On following pages: 446. Glover Allen's Shaggy Rat (Dasymys alleni); 447. Middle Shaggy Rat (Dasymys medius); 448. Rwandan Shaggy Rat (Dasymys rwandae); 449. Tanzanian Shaggy Rat (Dasymys sua); 450. CrawfordCabral's Shaggy Rat (Dasymys cabrali); 451. Angolan Shaggy Rat (Dasymys nudipes); 452. Roberts's Shaggy Rat (Dasymys robertsii); 453. Cape Shaggy Rat (Dasymys capensis), 454. African Shaggy Rat (Dasymys incomtus); 455. Ethiopian Thicket Rat (Grammomys minnae); 456. Arid Woodland Thicket Rat (Grammomys aridulus); 457. Bunting's Thicket Rat (Grammomys buntingi); 458. Western Rainforest Thicket Rat (Grammomys poensis); 459. Albertine Rift Thicket Rat (Grammomys dryas); 460. Eastern Rainforest Thicket Rat (Grammomys kuru); 461. Short-snouted Thicket Rat (Grammomys brevirostris); 462. Gray-headed Thicket Rat (Grammomys caniceps); 463. Mount Kenya Thicket Rat (Grammomys gigas); 464. East African Thicket Rat (Grammomys ibeanus); 465. Macmillan's Thicket Rat (Grammomys macmillani); 466. Selous's Thicket Rat (Grammomys selousi); 467. in Muridae
On following pages: 446. Glover Allen's Shaggy Rat (Dasymys alleni); 447. Middle Shaggy Rat (Dasymys medius); 448. Rwandan Shaggy Rat (Dasymys rwandae); 449. Tanzanian Shaggy Rat (Dasymys sua); 450. CrawfordCabral's Shaggy Rat (Dasymys cabrali); 451. Angolan Shaggy Rat (Dasymys nudipes); 452. Roberts's Shaggy Rat (Dasymys robertsii); 453. Cape Shaggy Rat (Dasymys capensis), 454. African Shaggy Rat (Dasymys incomtus); 455. Ethiopian Thicket Rat (Grammomys minnae); 456. Arid Woodland Thicket Rat (Grammomys aridulus); 457. Bunting's Thicket Rat (Grammomys buntingi); 458. Western Rainforest Thicket Rat (Grammomys poensis); 459. Albertine Rift Thicket Rat (Grammomys dryas); 460. Eastern Rainforest Thicket Rat (Grammomys kuru); 461. Short-snouted Thicket Rat (Grammomys brevirostris); 462. Gray-headed Thicket Rat (Grammomys caniceps); 463. Mount Kenya Thicket Rat (Grammomys gigas); 464. East African Thicket Rat (Grammomys ibeanus); 465. Macmillan's Thicket Rat (Grammomys macmillani); 466. Selous's Thicket Rat (Grammomys selousi); 467.
Holotype of Salignus duplicatus medius Kerzhner, 1979
Open the record for dataset details and reuse information.
FIGURE 10 in Two new species of Australian Eutarsopolipus (Acariformes: Podapolipidae) from Nurus medius (Coleoptera: Carabidae)
FIGURE 10. Eutarsopolipus echinatus sp. nov., larval female: (A) dorsum; (B) tarsus I, detail; (C) Plate H (ventral).
FIGURE 8 in Two new species of Australian Eutarsopolipus (Acariformes: Podapolipidae) from Nurus medius (Coleoptera: Carabidae)
FIGURE 8. Eutarsopolipus echinatus sp. nov., adult female: (A) leg I, dorsal view; (B) tarsus I, ventral view; (C) leg II, dorsal view; (D) leg III, dorsal view.
FIGURE 9 in Two new species of Australian Eutarsopolipus (Acariformes: Podapolipidae) from Nurus medius (Coleoptera: Carabidae)
FIGURE 9. Eutarsopolipus echinatus sp. nov., larviform adult male, dorsum. "x" indicates asymmetrical seta on left tarsus I.
FIGURE 2 in Two new species of Australian Eutarsopolipus (Acariformes: Podapolipidae) from Nurus medius (Coleoptera: Carabidae)
FIGURE 2. Eutarsopolipus burwelli sp. nov., adult female: (A) venter; (B) setae 1a, holotype specimen (anomalous form), detail; (C) setae 1a, paratype specimen (typical form), detail.
FIGURE 3 in Two new species of Australian Eutarsopolipus (Acariformes: Podapolipidae) from Nurus medius (Coleoptera: Carabidae)
FIGURE 3. Eutarsopolipus burwelli sp. nov., adult female: (A) leg I, dorsal view; (B) leg II, dorsal view; (C) leg III, dorsal view; (D) tarsus III, ventral view.
FIGURE 3. Uroptychus medius n in Squat lobsters of the superfamily Chirostyloidea (Decapoda: Anomura) from seamounts on the Nishi-Shichito and Mariana ridges, North-West Pacific off Japan, with descriptions of two new species
FIGURE 3. Uroptychus medius n. sp., holotype, ovigerous female (cl 9.1 mm), JAMSTEC 106694. A, thoracic sternites 3–5, ventral view; B, pleomere 6 and telson, outer view; C, left antenna, dorsal view (flagellum partially omitted); D, left maxilliped 3, basis to merus, ventral view (exopod and setae omitted); E, detail of crista dentata on ischium of left maxilliped 3; F, left maxilliped 3 endopod, merus to dactylus.
FIGURE 1. A, Uroptychus medius n in Squat lobsters of the superfamily Chirostyloidea (Decapoda: Anomura) from seamounts on the Nishi-Shichito and Mariana ridges, North-West Pacific off Japan, with descriptions of two new species
FIGURE 1. A, Uroptychus medius n. sp., holotype, ovigerous female (cl 9.1 mm), JAMSTEC 106694. A, habitus in dorsal view, showing colouration in fresh condition; B, living animal associated with a colony of chrysogorgiid octocoral, taken during KM-ROV dive #131, Ritto Seamount, at a depth of 2001 m.
FIGURE 2. Uroptychus medius n in Squat lobsters of the superfamily Chirostyloidea (Decapoda: Anomura) from seamounts on the Nishi-Shichito and Mariana ridges, North-West Pacific off Japan, with descriptions of two new species
FIGURE 2. Uroptychus medius n. sp., holotype, ovigerous female (cl 9.1 mm), JAMSTEC 106694. A, carapace, anterior pleon and cephalic appendages, dorsal view; B, carapace and left cephalic appendages, lateral view; C, merus of right cheliped, dorsal view; D, same, lateral view; E, carpus of right cheliped, dorsal view; F, right chela, dorsal view.
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