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285 results for “Diminution”
Figure 7 in Seven new species of Night Frogs (Anura, Nyctibatrachidae) from the Western Ghats Biodiversity Hotspot of India, with remarkably high diversity of diminutive forms
Figure 7 Holotype of Nyctibatrachus robinmoorei sp. nov. (ZSI/WGRC/V/A/925). (A) Frontolateral view, in life. (B) Size (SVL 12.2 mm) in comparison to the Indian five-rupee coin (24 mm diameter). (C) Dorsal view, in life. (D) Dorsal surface of third finger disc, in preservation. (E) Dorsal surface of fourth toe disc, in preservation. (F) Ventral view, in life. (G) Lateral view of head, in preservation. (H) Ventral view of hand, in preservation. (I) Ventral view of foot, in preservation. (J) Schematic illustration of foot webbing.
Figure 6 in Seven new species of Night Frogs (Anura, Nyctibatrachidae) from the Western Ghats Biodiversity Hotspot of India, with remarkably high diversity of diminutive forms
Figure 6 Holotype of Nyctibatrachus radcliffei sp. nov. (ZSI/WGRC/V/A/920). (A) Dorsolateral view, in life. (B) Dorsal view, in life. (C) Dorsal surface of third finger disc, in preservation. (D) Dorsal surface of fourth toe disc, in preservation. (E) Ventral view, in life. (F) Lateral view of head, in preservation. (G) Ventral view of hand, in preservation. (H) Ventral view of foot, in preservation. (I) Schematic illustration of foot webbing.
Figure 4 in Seven new species of Night Frogs (Anura, Nyctibatrachidae) from the Western Ghats Biodiversity Hotspot of India, with remarkably high diversity of diminutive forms
Figure 4 Holotype of Nyctibatrachus manalari sp. nov. (ZSI/WGRC/V/A/897). (A) Dorsolateral view, in life. (B) Size (SVL 13.8 mm) in comparison to the Indian five-rupee coin (24 mm diameter). (C) Dorsal view, in life. (D) Dorsal surface of third finger disc, in preservation. (E) Dorsal surface of fourth toe disc, in preservation. (F) Ventral view, in life. (G) Femoral glands, in preservation. (H) Close-up of femoral glands after removal of skin showing multiple glands. (I) Lateral view of head, in preservation. (J) Ventral view of hand, in preservation. (K) Ventral view of foot, in preservation. (L) Schematic illustration of foot webbing.
Figure 5 in Seven new species of Night Frogs (Anura, Nyctibatrachidae) from the Western Ghats Biodiversity Hotspot of India, with remarkably high diversity of diminutive forms
Figure 5 Holotype of Nyctibatrachus pulivijayani sp. nov. (ZSI/WGRC/V/A/902). (A) Dorsolateral view, in life. (B) Size (SVL 13.3 mm) in comparison to the Indian five-rupee coin (24 mm diameter). (C) Dorsal view, in life. (D) Dorsal surface third finger disc, in preservation. (E) Dorsal surface of fourth toe disc, in preservation. (F) Ventral view, in life. (G) Femoral glands, in preservation. (H) Close-up of femoral glands after removal of skin showing multiple glands. (I) Lateral view of head, in preservation. (J) Ventral view of hand, in preservation. (K) Ventral view of foot, in preservation. (L) Schematic illustration of foot webbing.
Figure 3 in Seven new species of Night Frogs (Anura, Nyctibatrachidae) from the Western Ghats Biodiversity Hotspot of India, with remarkably high diversity of diminutive forms
Figure 3 Male advertisement calls of Nyctibatrachus athirappillyensis sp. nov. and Nyctibatrachus manalari sp. nov. (A–E) Nyctibatrachus athirappillyensis sp. nov. (A) 10 s segment. (B) 1 s segment showing part 1 (non-pulsatile) and part 2 (pulsatile) of a single call. (C) 0.1 s segment showing the part 2 of a single call. (D) 0.1 s segment showing the part 1 of a single call. (E) Spectrogram of 1 s call segment. (F– I) Nyctibatrachus manalari sp. nov. (F) 10 s segment. (G) 1 s segment. (H) 0.1 s segment showing a single non-pulsatile call. (I) Spectrogram of 1 s call segment.
Figure 2 in Seven new species of Night Frogs (Anura, Nyctibatrachidae) from the Western Ghats Biodiversity Hotspot of India, with remarkably high diversity of diminutive forms
Figure 2 Holotype of Nyctibatrachus athirappillyensis sp. nov. (ZSI/WGRC/V/A/891). (A) Dorsolateral view, in life. (B) Size (SVL 20.9 mm) in comparison to the Indian five-rupee coin (24 mm diameter). (C) Dorsal view, in life. (D) Dorsal surface of third finger disc, in preservation. (E) Dorsal surface of fourth toe disc, in preservation. (F) Ventral view, in life. (G) Femoral glands, in preservation. (H) Closeup of femoral glands after removal of skin showing multiple glands. (I) Lateral view of head, in preservation. (J) Ventral view of hand, in preservation. (K) Ventral view of foot, in preservation. (L) Schematic illustration of foot webbing.
Figure 1 in Seven new species of Night Frogs (Anura, Nyctibatrachidae) from the Western Ghats Biodiversity Hotspot of India, with remarkably high diversity of diminutive forms
Figure 1 Morphometric differentiation of species using the discriminant function analyses. (A) Projection on factor plane first and second explaining 79.1% of the variations among seven miniature-sized species. (B) Projection on factor plane first and second explaining 83.9% of the variations among five medium-sized species. (C) Projection on factor plane first and second explaining 86.3% of the variations among six large-sized species.
Fig. 4 in A Diminutive New Speciesof DicronocephalusHope (Coleoptera: Scarabaeidae: Cetoniinae) from Xizang Zizhiqu (Tibet Autonomous Region), China, with a Distributional Analysis of the Genus
Fig. 4. Metasternal projections of Dicronocephalus diminuata (left) and Dicronocephalus dabryi (right). a = metasternal projection, b = mesofemur, c = mesotrochanter.
Fig. 3. Dicronocephalus species. a in A Diminutive New Speciesof DicronocephalusHope (Coleoptera: Scarabaeidae: Cetoniinae) from Xizang Zizhiqu (Tibet Autonomous Region), China, with a Distributional Analysis of the Genus
Fig. 3. Dicronocephalus species. a) D. diminuata, allotype female, length 19 mm, b) D. diminuata, holotype male, length including clypeal extensions = 25 mm, c) D. wallichii bowringi, typically sized male from Yunnan Province, southwestern China, length including clypeal extensions = 38 mm.
Fig. 5 in A Diminutive New Speciesof DicronocephalusHope (Coleoptera: Scarabaeidae: Cetoniinae) from Xizang Zizhiqu (Tibet Autonomous Region), China, with a Distributional Analysis of the Genus
Fig. 5. Heads of Dicronocephalus species. a) D. wallichii wallichii (northern Thailand), b) D. wallichii wallichii (northern Vietnam, Mt. Tarn Dao), c) D. wallichii bowringi (Sichuan), d) D. wallichii bourgoini (Taiwan), e) D. bieti (Yunnan), f) D. dabryi (Shaanxi), g) D. adamsi (Shaanxi, Sichuan), h) D. shimomurai (Taiwan), i) D. yui yui (central Taiwan), j) D. yui cheni Kurosawa (southern Taiwan), k) D. uenoi uenoi Kurosawa (southern Taiwan), l) D. uenoi katoi Kurosawa (central Taiwan).
Figure 16 in Herpetocetus morrowi (Cetacea: Mysticeti), a new species of diminutive baleen whale from the Upper Pliocene (Piacenzian) of California, USA, with observations on the evolution and relationships of the Cetotheriidae
Figure 16. Herpetocetus morrowi sp. nov., UCMP 124950, illustrated right temporal wall of holotype skull in lateral view showing configuration of anatomical elements.
Figure 34 in Herpetocetus morrowi (Cetacea: Mysticeti), a new species of diminutive baleen whale from the Upper Pliocene (Piacenzian) of California, USA, with observations on the evolution and relationships of the Cetotheriidae
Figure 34. Herpetocetus morrowi sp. nov., UCMP 124950, holotype thoracic vertebrae. A, vertebra #6, anterior view; B, adjoined vertebrae and rib fragment, anterior view; C, vertebra #6, posterior view; D, adjoined vertebrae and rib fragment, posterior view; E, vertebra #6, dorsal view; F, adjoined vertebrae and rib fragment, dorsal view. Scale bar = 5 cm.
On following pages: 396. Yuma Myotis (Myotis yumanensis); 397. Cave Myotis (Myotis velifer); 398. Peninsular Myotis (Myotis peninsularis); 399. Guatemalan Myotis (Myotis cobanensis); 400. Chilean Myotis (Myotis chiloensis); 401. Silver-tipped Myotis (Myotis albescens); 402. Yellowish Myotis (Myotis levis); 403. Dinelli's Myotis (Myotis dinelli); 404. I1zecksohn's Myotis (Myotis izecksohni); 405. LaVal's Myotis (Myotis lavali); 406. Montane Myotis (Myotis oxyotus); 407. Clyde Jones's Myotis (Myotis clydejonesi); 408. Schwartz's Myotis (Myotis martiniquensis); 409. Dominican Myotis (Myotis dominicensis); 410. Barbados Myotis (Myotis nycton; 411. Atacama Myotis (Myotis atacamensis); 412. Curagao Myotis (Myotis nesopolus); 413. Colombian Black Myotis (Myotis caucensis); 414. Sir David Attenborough''s Myotis (Myotis attenboroughi); 415. Handley's Myotis (Myotis handleyi); 416. Diminutive Myotis (Myotis diminutus); 417. Common Black Myotis (Myotis nigricans); 418. Brandt's Myotis (Myotis brandftii); 419. Siberian Whiskered Myotis (Myotis sibiricus). in Vespertilionidae
On following pages: 396. Yuma Myotis (Myotis yumanensis); 397. Cave Myotis (Myotis velifer); 398. Peninsular Myotis (Myotis peninsularis); 399. Guatemalan Myotis (Myotis cobanensis); 400. Chilean Myotis (Myotis chiloensis); 401. Silver-tipped Myotis (Myotis albescens); 402. Yellowish Myotis (Myotis levis); 403. Dinelli's Myotis (Myotis dinelli); 404. I1zecksohn's Myotis (Myotis izecksohni); 405. LaVal's Myotis (Myotis lavali); 406. Montane Myotis (Myotis oxyotus); 407. Clyde Jones's Myotis (Myotis clydejonesi); 408. Schwartz's Myotis (Myotis martiniquensis); 409. Dominican Myotis (Myotis dominicensis); 410. Barbados Myotis (Myotis nycton; 411. Atacama Myotis (Myotis atacamensis); 412. Curagao Myotis (Myotis nesopolus); 413. Colombian Black Myotis (Myotis caucensis); 414. Sir David Attenborough''s Myotis (Myotis attenboroughi); 415. Handley's Myotis (Myotis handleyi); 416. Diminutive Myotis (Myotis diminutus); 417. Common Black Myotis (Myotis nigricans); 418. Brandt's Myotis (Myotis brandftii); 419. Siberian Whiskered Myotis (Myotis sibiricus).
On following pages: 174. Small Big-eared Brown Bat (Histiotus montanus);, 175. Thomas's Big-eared Brown Bat (Histiotus laephotis); 176. Common Big-eared Brown Bat (Histiotus macrotus); 177. Southern Big-eared Brown Bat (Histiotus magellanicus); 178. Big Brown Bat (Eptesicus fuscus); 179. Guadeloupe Serotine (Eptesicus guadeloupensis); 180. Diminutive Serotine (Eptesicus diminutus); 181. Little Black Serotine (Eptesicus andinus); 182. Chiriguinan Serotine (Eptesicus chiriquinus); 183. Argentine Serotine (Eptesicus furinalis); 184. Harmless Serotine (Eptesicus innoxius); 185. Brazilian Serotine (Eptesicus brasiliensis); 186. Taddei's Serotine (Eptesicus taddeii); 187. Ulapes Serotine (Eptesicus ulapesensis); 188. Horn-skinned Serotine (Eptesicus floweri); 189. Lagos Serotine (Eptesicus platyops); 190. Long-tailed Serotine (Eptesicus hottentotus); 191. Ognev's Serotine (Eptesicus ognevi); 192. Anatolian Serotine (Eptesicus anatolicus); 193. Botta's Serotine (Eptesicus bottae); 194. Meridional Serotine (Eptesicus isabellinus); 195. Oriental Serotine (Eptesicus pachyomus); 196. Eurasian Serotine (Eptesicus serotinus); 197. Northern Serotine (Eptesicus nilssonil); 198. Sombre Serotine (Eptesicus tate); 199. Gobi Serotine (Eptesicus gobiensis), 200. Japanese Serotine (Eptesicus japonensis);, 201. Thick-eared Serotine (Eptesicus pachyotis). in Vespertilionidae
On following pages: 174. Small Big-eared Brown Bat (Histiotus montanus);, 175. Thomas's Big-eared Brown Bat (Histiotus laephotis); 176. Common Big-eared Brown Bat (Histiotus macrotus); 177. Southern Big-eared Brown Bat (Histiotus magellanicus); 178. Big Brown Bat (Eptesicus fuscus); 179. Guadeloupe Serotine (Eptesicus guadeloupensis); 180. Diminutive Serotine (Eptesicus diminutus); 181. Little Black Serotine (Eptesicus andinus); 182. Chiriguinan Serotine (Eptesicus chiriquinus); 183. Argentine Serotine (Eptesicus furinalis); 184. Harmless Serotine (Eptesicus innoxius); 185. Brazilian Serotine (Eptesicus brasiliensis); 186. Taddei's Serotine (Eptesicus taddeii); 187. Ulapes Serotine (Eptesicus ulapesensis); 188. Horn-skinned Serotine (Eptesicus floweri); 189. Lagos Serotine (Eptesicus platyops); 190. Long-tailed Serotine (Eptesicus hottentotus); 191. Ognev's Serotine (Eptesicus ognevi); 192. Anatolian Serotine (Eptesicus anatolicus); 193. Botta's Serotine (Eptesicus bottae); 194. Meridional Serotine (Eptesicus isabellinus); 195. Oriental Serotine (Eptesicus pachyomus); 196. Eurasian Serotine (Eptesicus serotinus); 197. Northern Serotine (Eptesicus nilssonil); 198. Sombre Serotine (Eptesicus tate); 199. Gobi Serotine (Eptesicus gobiensis), 200. Japanese Serotine (Eptesicus japonensis);, 201. Thick-eared Serotine (Eptesicus pachyotis).
FIGURE 1 in A new diminutive subterranean eel loach species of the genus Pangio (Teleostei: Cobitidae) from Southern India
FIGURE 1. Pangio pathala holotype (KUFOS.FT.2020.1, 32.1 mm SL) (A) in life, and (B–F) in preservative.
FIGURE 8. A–E. Begonia cornitepala Irmsch. A in Two new diminutive species of Begonia (Begoniaceae) from the north coast of São Paulo State, Brazil
FIGURE 8. A–E. Begonia cornitepala Irmsch. A, Mature flowering and fruiting plants; B, Abaxial leaf surface (left), fruit and inflorescences (center) and adaxial leaf surface (right); C, Details of the stipules and stem; D, Details of the inflorescence; E, Fruits. (A–E from M.D.Miranda 4).
FIGURE 6. A–E. Begonia umbrosa M.D.Miranda & E.L.Jacques. A in Two new diminutive species of Begonia (Begoniaceae) from the north coast of São Paulo State, Brazil
FIGURE 6. A–E. Begonia umbrosa M.D.Miranda & E.L.Jacques. A, Plant in its natural habitat; B–C, Habit; D–E, Fruiting branch (A–E from M.D.Miranda 54).
FIGURE 5. A–L. Begonia umbrosa M.D.Miranda & E.L.Jacques. A in Two new diminutive species of Begonia (Begoniaceae) from the north coast of São Paulo State, Brazil
FIGURE 5. A–L. Begonia umbrosa M.D.Miranda & E.L.Jacques. A, Abaxial leaf surface; B, Adaxial leaf surface; C, Inflorescence showing a pistillate flower; D, Inflorescence showing a staminate flower and an immature pistillate flower; E, Staminate flower, anterior view; F, Staminate flower, lateral view; G, Staminate flower, posterior view; H, Pistillate flower, anterior view; I, Pistillate flower, lateral view; J, Pistillate flower, posterior view; K, Ovary, cross section; L, Mature fruit. (Scale Bars: A–B= 4,8 cm; C= 2 cm; D= 2.8 cm; E–H, J–K = 1.2 cm; I= 0.8 cm; L= 1 cm). (A–L from M.D.Miranda 14).
FIGURE 2. A–G. Begonia atlantica M.D.Miranda & E.L.Jacques. A in Two new diminutive species of Begonia (Begoniaceae) from the north coast of São Paulo State, Brazil
FIGURE 2. A–G. Begonia atlantica M.D.Miranda & E.L.Jacques. A, Habit; B, Plants in their habitat with staminate and pistillate flower at anthesis; C, Detail of the stem and petioles, showing their indumentum; D, Young plants growing on rock; E, Plant at the earliest flowering time; F, Detail of the stipule, highlighting its indumentum; G, Inflorescence with a staminate flower at anthesis and immature pistillate and staminate flower. (A–G from M.D.Miranda 12).
FIGURE 4. A–D. Begonia microinduta M.D.Miranda. A in Two new diminutive species of Begonia (Begoniaceae) from the north coast of São Paulo State, Brazil
FIGURE 4. A–D. Begonia microinduta M.D.Miranda. A, Young plant with acuminate leaf apex; B, Adult individual with discolored adaxial leaf surface; C, Population growing over rocks on the ground of the forest; D, Details of staminate flowers (above) and pistillate flowers (below). (A–C from M.D.Miranda 92, D from M.D. Miranda 11).
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
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