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27 results for “Isabella”

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zenodo40/100

FIG. 12. — Isabella mirabilis n. gen., n in Deep-sea "lithistid" assemblages from the Norfolk Ridge (New Caledonia), with description of seven new species and a new genus (Porifera, Demospongiae)

FIG. 12. — Isabella mirabilis n. gen., n. sp.; A, outer surface with ectosomal dichotriaenes; B, C, outer surface of the choanosomal skeleton; D, details of dicranoclone desmas; E, details of articulation between choanosomal desmas; F, articulation between dicranoclone desmas from the interior of the choanosomal skeleton. Scale bars: A, D, 200 µm; B, F, 1 mm; C, 500 µm; E, 100 µm.

opencc-zeroDec 2005View details →
zenodo40/100

FIG. 26. — Isabella mirabilis n. gen., n in Deep-sea "lithistid" assemblages from the Norfolk Ridge (New Caledonia), with description of seven new species and a new genus (Porifera, Demospongiae)

FIG. 26. — Isabella mirabilis n. gen., n. sp.; A, B, microxeas; C, detail of microxea; D, ectosomal dichotriaenes; E, tips of ectosomal dichotriaenes; F-K, variable spiraster with slender arms; L-Q, thick streptaster. Scale bars: A, B, 20 µm; C, F-Q, 5 µm; D, 100 µm; E, 10 µm.

opencc-zeroDec 2005View details →
zenodo40/100

FIG. 3. — A, Isabella mirabilis n. gen., n in Deep-sea "lithistid" assemblages from the Norfolk Ridge (New Caledonia), with description of seven new species and a new genus (Porifera, Demospongiae)

FIG. 3. — A, Isabella mirabilis n. gen., n. sp.; B, Neoschrammeniella moreti (Lévi & Lévi, 1988); C, N. norfolkii n. sp.; D, N. castrum n. sp.; E, Anaderma rancureli Lévi & Lévi, 1983. Scale bars: 1 cm.

opencc-zeroDec 2005View details →
zenodo36/100

Toothpaste Lid - Isabella

The artifact is a white round porcelain lid to a toothpaste jar with green designs on it. The Jar lid is smooth but was broken into about 4 pieces and was reassembled. It is 2cm tall by 8cm in Diameter. There is a green ring around the outside with the words "Cherry Tooth Paste" and "Patronized By The Queen". In the center of the Jar there is a large white circle with writing around the outside that says "For beautifying and preserving the teeth and gums" and "Prepared By John Gosnell & Co London". In the middle of the circle there is a bust of the queen but most of her head is missing due to a hole. Source: Objaverse 1.0 / Sketchfab

opencc-byApr 2018View details →
zenodo36/100

Isabella (v4)

Statue of Isabella Elder generated in 3DF Zephyr Free from a small set of 28 photographs. Masquerade was used to mask images before generating the model, using a mixture of fast settings for point cloud generation and higher settings for generating the final mesh and texture. One of a series of models of the same statue, using the same photographs to compare different photogrammetry software packages. Source: Objaverse 1.0 / Sketchfab

opencc-byJan 2021View details →
zenodo32/100

FIGURES 1–2 in Occurrence of Epistylis anastatica (Linnaeus, 1767) (Ciliophora: Peritrichia) on Mesocyclops isabellae Dussart & Fernando (Crustacea: Copepoda: Cyclopoida) in India, with an annotated checklist of species of Epistylis reported as Epibionts of Cyclopoid Copepods and resources for their identification

FIGURES 1–2. Colonies of Epistylis anastatica attached to the metasome and urosome of Mesocyclops isabellae. Scale bar = 250 µm in 1 and 50 µm in 2.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 10 in Occurrence of Epistylis anastatica (Linnaeus, 1767) (Ciliophora: Peritrichia) on Mesocyclops isabellae Dussart & Fernando (Crustacea: Copepoda: Cyclopoida) in India, with an annotated checklist of species of Epistylis reported as Epibionts of Cyclopoid Copepods and resources for their identification

FIGURE 10. Diagrams that illustrate the possible forms and branching patterns of colonies of Epistylis spp. given in Table 2. Colony forms: a, simple cluster; b–c, e–h, arborescent; d, cuneate (wedge-shaped, with all stalks terminating at the same level); branching patterns: a, irregular (no discernible pattern); b–d, symmetrically dichotomous; c, asymmetrically dichotomous; e symmetrically alternating; f, asymmetrically alternating; g, pinnate; h, umbellate. Notes: colonies such as 'b' and 'c' are sometimes described as fan-shaped (flabellate); cuneate colonies (d) are sometimes incorrectly described as umbellate, a term that can be used properly only to describe a pattern in which all of the 2o branches radiate in different planes from a single point (compare 'd' and 'h' to see the difference); pinnate colonies like those illustrated in 'g' are an extreme variant of the alternating pattern in which pairs of 2o branches arise from points so close together that they seem to be opposite one another.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURES 3–9 in Occurrence of Epistylis anastatica (Linnaeus, 1767) (Ciliophora: Peritrichia) on Mesocyclops isabellae Dussart & Fernando (Crustacea: Copepoda: Cyclopoida) in India, with an annotated checklist of species of Epistylis reported as Epibionts of Cyclopoid Copepods and resources for their identification

FIGURES 3–9. Epistylis anastatica attached to the exoskeleton of Mesocyclops isabellae. 3–5: views of the stalk, showing the dichotomous branching pattern and long primary stalk; arrowheads in fig. 3 indicate the branching points in an asymmetrically dichotomous colony and to its right are the abandoned stalks of a symmetrically dichotomous colony (region encircled); 4, immature colony; note the elongate primary stalk; 5, stalks of two symmetrically dichotomous colonies (one is lying over the other, which is slightly out of focus). 6–9: characteristics of zooids; 6, the upper arrowhead indicates the edge of the peristomial lip, and the lower arrowhead indicates the scopula (circular, aboral region that secretes the stalk and attaches the zooid to it); 7, arrow indicates the projecting tube formed by constriction of the peristomial lip when cell contracts ("schnauzenformigen"); MaN, longitudinally oriented macronucleus; 8–9, zooids that remained expanded when fixed; arrow indicates the peristomial lip in both figures. Scale bar = 100 µm in 3–4 and 25 µm in 5–9.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 6 in A new species of lithistid sponge hiding within the Isabella mirabilis species complex (Porifera: Demospongiae: Tetractinellida) from seamounts of the Norfolk Ridge

FIGURE 6. Specimens of Isabella tanoa, clockwise from the bottom left the holotype MNHN DCL 4111 (QM G318737), then paratypes QM G318803, G318765 and G335130.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 7 in A new species of lithistid sponge hiding within the Isabella mirabilis species complex (Porifera: Demospongiae: Tetractinellida) from seamounts of the Norfolk Ridge

FIGURE 7. Outer surface and desma skeleton of the holotype MNHN DCL 4111 (QM G318737) of Isabella tanoa n. sp. A, outer surface showing bundles of oxeas protruding through the surface, with abundant centrotylote microacanthoxeas and ectosomal dichotriaenes. B, minute oscules surrounded by ectosomal streptasters and microxeas. C, loose open architecture of the dicranoclone desmas in the upper choanosome. D, increased thickness of the desmas and increased complexity of the articulation between the desmas deeper in the choanosome. E and F, details of articulation between choanosomal desmas.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 8. Spicules from the holotype MNHN DCL 4111 in A new species of lithistid sponge hiding within the Isabella mirabilis species complex (Porifera: Demospongiae: Tetractinellida) from seamounts of the Norfolk Ridge

FIGURE 8. Spicules from the holotype MNHN DCL 4111 (QM G318737) Isabella tanoa n. sp. A to C, centrotylote microacanthoxeas. D, close up of the tip of the centrotylote microacanthoxeas. E, long ectosomal dichotriaenes. F, short-shafted ectosomal dichotriaenes. G to J, spirasters with long thin thorny arms. K to Q, streptasters with short thick thorny arms of variable number, length and termination.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 5 in A new species of lithistid sponge hiding within the Isabella mirabilis species complex (Porifera: Demospongiae: Tetractinellida) from seamounts of the Norfolk Ridge

FIGURE 5. Dichotriaenes of Isabella mirabilis. A to H, showing the variability of dichotriaenes. I, triaene.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 3 in A new species of lithistid sponge hiding within the Isabella mirabilis species complex (Porifera: Demospongiae: Tetractinellida) from seamounts of the Norfolk Ridge

FIGURE 3. One of the 'warts' from Isabella mirabilis budding off from specimen G318751, with the large oxeas, dichotriaenes and microscopic oscules clearly visible.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 2 in A new species of lithistid sponge hiding within the Isabella mirabilis species complex (Porifera: Demospongiae: Tetractinellida) from seamounts of the Norfolk Ridge

FIGURE 2. Preserved specimens of I. mirabilis. Back row, from left to right: G318751, G329916 and G329917. Middle row: G329919, G329920, G329921 and G329924. Front row: G329925, G329922 and G329923.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 1 in A new species of lithistid sponge hiding within the Isabella mirabilis species complex (Porifera: Demospongiae: Tetractinellida) from seamounts of the Norfolk Ridge

FIGURE 1. Specimens of I. mirabilis, on the left, the Holotype MNHN DCL 3903 (QM G318560), and on the right G318751.

opennotspecifiedDec 2016View details →
zenodo32/100

FIGURE 4 in A new species of lithistid sponge hiding within the Isabella mirabilis species complex (Porifera: Demospongiae: Tetractinellida) from seamounts of the Norfolk Ridge

FIGURE 4. Spicules of Isabella mirabilis. A, microacanthoaxeas. B, centrotylote microacanthoxeas. C, centrotylote microacanthoxeas with thorns. D and E, smooth centrotylote microxeas. F, tip of microacanthoxeas. G to I, tip of smooth microxeas. J, range of smooth microxeas. K to M, Spirasters with long thin thorny arms. N to R, streptasters with short thick thorny arms of variable number, length and termination.

opennotspecifiedDec 2016View details →
zenodo32/100

On following pages: 121. Roberts's Serotine (Neoromicia robertsi); 122. Stanley's Serotine (Neoromicia stanleyi); 123. Zulu Serotine (Neoromicia zuluensis): 124. Tiny Serotine (Neoromicia guineensis); 125. Somali Serotine (Neoromicia somalica); 126. Banana Serotine (Neoromicia nanus); 127. Rendall''s Serotine (Neoromicia rendall): 128. Dark-brown Serotine (Neoromicia brunnea); 129. Rosevear's Serotine (Neoromicia rosevear): 130. Isabelline Serotine (Neoromicia isabella); 131. Grandidier's Serotine (Neoromicia grandidieri); 132. White-winged Serotine (Neoromicia tenuipinnis); 133. Heller's Serotine (Neoromicia helios); 134. De Winton's Long-eared Bat (Laephotis wintoni); 135. Angolan Long-eared Bat (Laephotis angolensis); 136. Botswanan Long-eared Bat (Laephotis botswanae); 137. Namib Long-eared Bat (Laephotis namibensis): 138. Sind Bat (Rhyneptesicus nasutus); 139. Collared Sprite (Thainycteris aureocollaris); 140. Necklace Sprite (Thainycteris torquatus); 141. Bronze Sprite (Arielulus circumdatus); 142. Social Sprite (Arielulus societatis); 143. Coppery Sprite (Arielulus cuprosus). in Vespertilionidae

On following pages: 121. Roberts's Serotine (Neoromicia robertsi); 122. Stanley's Serotine (Neoromicia stanleyi); 123. Zulu Serotine (Neoromicia zuluensis): 124. Tiny Serotine (Neoromicia guineensis); 125. Somali Serotine (Neoromicia somalica); 126. Banana Serotine (Neoromicia nanus); 127. Rendall''s Serotine (Neoromicia rendall): 128. Dark-brown Serotine (Neoromicia brunnea); 129. Rosevear's Serotine (Neoromicia rosevear): 130. Isabelline Serotine (Neoromicia isabella); 131. Grandidier's Serotine (Neoromicia grandidieri); 132. White-winged Serotine (Neoromicia tenuipinnis); 133. Heller's Serotine (Neoromicia helios); 134. De Winton's Long-eared Bat (Laephotis wintoni); 135. Angolan Long-eared Bat (Laephotis angolensis); 136. Botswanan Long-eared Bat (Laephotis botswanae); 137. Namib Long-eared Bat (Laephotis namibensis): 138. Sind Bat (Rhyneptesicus nasutus); 139. Collared Sprite (Thainycteris aureocollaris); 140. Necklace Sprite (Thainycteris torquatus); 141. Bronze Sprite (Arielulus circumdatus); 142. Social Sprite (Arielulus societatis); 143. Coppery Sprite (Arielulus cuprosus).

opennotspecifiedOct 2019View details →
zenodo32/100

On following pages: 265. Small Sun Squirrel (Heliosciurus punctatus); 266. Ruwenzori Sun Squirrel (Heliosciurus 269. Forest Giant Squirrel (Protoxerus stangeri); 270. Slender-tailed Squirrel (Protoxerus aubinnii); 271. Western Palm (Funisciurus substriatus); 274. Red-cheeked Rope Squirrel (Funisciurus leucogenys); 275. Thomas's Rope Squirrel ruwenzoril); 267. Zanj Sun Squirrel (Heliosciurus undulatus); 268. Mutable Sun Squirrel (Heliosciurus mutabilis), Squirrel (Epixerus ebii); 272. Fire-footed Rope Squirrel (Funisciurus pyrropus); 273. Kintampo Rope Squirrel (Funisciurus anerythrus); 276. Lady Burton's Rope Squirrel (Funisciurus isabella). in Sciuridae

On following pages: 265. Small Sun Squirrel (Heliosciurus punctatus); 266. Ruwenzori Sun Squirrel (Heliosciurus 269. Forest Giant Squirrel (Protoxerus stangeri); 270. Slender-tailed Squirrel (Protoxerus aubinnii); 271. Western Palm (Funisciurus substriatus); 274. Red-cheeked Rope Squirrel (Funisciurus leucogenys); 275. Thomas's Rope Squirrel ruwenzoril); 267. Zanj Sun Squirrel (Heliosciurus undulatus); 268. Mutable Sun Squirrel (Heliosciurus mutabilis), Squirrel (Epixerus ebii); 272. Fire-footed Rope Squirrel (Funisciurus pyrropus); 273. Kintampo Rope Squirrel (Funisciurus anerythrus); 276. Lady Burton's Rope Squirrel (Funisciurus isabella).

opennotspecifiedJul 2016View details →
zenodo32/100

On following pages: 185. Etruscan Shrew (Suncus etruscus); 186. Sri Lankan Shrew (Suncus fellowesgordoni); 187. (Suncus zeylanicus); 190. Asian House Shrew (Suncus murinus); 191. Sri Lankan Highland Shrew (Suncus montanus (Suncus day); 195. Flores Shrew (Suncus mertensi); 196. Black Shrew (Suncus aten); 197. Taita Shrew (Suncus aequatorius Shrew (Suncus infinitesimus); 201. Remy's Pygmy Shrew (Suncus remyi); 202. Lesser Dwarf Shrew (Suncus varilla) Forest Shrew (Sylvisorex johnstonijohnstoni); 206. Akaibe's Forest Shrew (Sylvisorex akaibel); 207. Moon Forest Shrew oriundus); 210. Bioko Forest Shrew (Sylvisorex isabellae); 211. Corbet's Forest Shrew (Sylvisorex corbet)); 212. Bamenda Shrew (Sylvisorex camerunensis); 215. Mount Cameroon Forest Shrew (Sylvisorex morio); 216. Kongana Forest Shrew (Sylvisorex grant); 219. Howell's Forest Shrew (Sylvisorex howell); 220. Armored Hero Shrew (Scutisorex somereni Large-headed Shrew (Paracrocidura schouteden)); 224. Grauer's Large-headed Shrew (Paracrocidura graueri); 225. Piebald Malayan Pygmy Shrew (Suncus malayanus); 188. Bornean Pygmy Shrew (Suncus hose); 189. Jungle Shrew); 192. Nilgiri Highland Shrew (Suncus nigen; 193. Anderson's Shrew (Suncus stoliczkanus); 194. Day's Shrew); 198. Greater Dwarf Shrew (Suncus lixa); 199. Hutu-Tutsi Dwarf Shrew (Suncus hututsi); 200. Least Dwarf; 203. Climbing Shrew (Suncus megalurus); 204. Rwenzori Shrew (Ruwenzorisorex suncoides); 205. Johnston's (Sylvisorex lunaris); 208. Greater Forest Shrew (Sylvisorex ollula); 209. Lesser Forest Shrew (Sylvisorex Forest Shrew (Sylvisorex silvanorum); 213. Rainforest Shrew (Sylvisorex pluvialis); 214. Cameroonian Forest (Sylvisorex konganensis); 217. Volcano Forest Shrew (Sylvisorex vulcanorum); 218. Grant's Forest Shrew); 221. Thor's Hero Shrew (Scutisorex thori); 222. Greater Large-headed Shrew (Paracrocidura maxima); 223. Lesser Shrew (Diplomesodon pulchellus). in Soricidae

On following pages: 185. Etruscan Shrew (Suncus etruscus); 186. Sri Lankan Shrew (Suncus fellowesgordoni); 187. (Suncus zeylanicus); 190. Asian House Shrew (Suncus murinus); 191. Sri Lankan Highland Shrew (Suncus montanus (Suncus day); 195. Flores Shrew (Suncus mertensi); 196. Black Shrew (Suncus aten); 197. Taita Shrew (Suncus aequatorius Shrew (Suncus infinitesimus); 201. Remy's Pygmy Shrew (Suncus remyi); 202. Lesser Dwarf Shrew (Suncus varilla) Forest Shrew (Sylvisorex johnstonijohnstoni); 206. Akaibe's Forest Shrew (Sylvisorex akaibel); 207. Moon Forest Shrew oriundus); 210. Bioko Forest Shrew (Sylvisorex isabellae); 211. Corbet's Forest Shrew (Sylvisorex corbet)); 212. Bamenda Shrew (Sylvisorex camerunensis); 215. Mount Cameroon Forest Shrew (Sylvisorex morio); 216. Kongana Forest Shrew (Sylvisorex grant); 219. Howell's Forest Shrew (Sylvisorex howell); 220. Armored Hero Shrew (Scutisorex somereni Large-headed Shrew (Paracrocidura schouteden)); 224. Grauer's Large-headed Shrew (Paracrocidura graueri); 225. Piebald Malayan Pygmy Shrew (Suncus malayanus); 188. Bornean Pygmy Shrew (Suncus hose); 189. Jungle Shrew); 192. Nilgiri Highland Shrew (Suncus nigen; 193. Anderson's Shrew (Suncus stoliczkanus); 194. Day's Shrew); 198. Greater Dwarf Shrew (Suncus lixa); 199. Hutu-Tutsi Dwarf Shrew (Suncus hututsi); 200. Least Dwarf; 203. Climbing Shrew (Suncus megalurus); 204. Rwenzori Shrew (Ruwenzorisorex suncoides); 205. Johnston's (Sylvisorex lunaris); 208. Greater Forest Shrew (Sylvisorex ollula); 209. Lesser Forest Shrew (Sylvisorex Forest Shrew (Sylvisorex silvanorum); 213. Rainforest Shrew (Sylvisorex pluvialis); 214. Cameroonian Forest (Sylvisorex konganensis); 217. Volcano Forest Shrew (Sylvisorex vulcanorum); 218. Grant's Forest Shrew); 221. Thor's Hero Shrew (Scutisorex thori); 222. Greater Large-headed Shrew (Paracrocidura maxima); 223. Lesser Shrew (Diplomesodon pulchellus).

opennotspecifiedJul 2018View details →
zenodo32/100

FIGURES 49–54. Elytral surface. 49, Neobathyscia isabellae. 50, Bathysciotes khevenhuelleri. 51, Bathyscidius tristiculus. 52, Pavicevicia pretneri. 53, Redensesekia likana. 54 in Phylogeny of Bathysciotina Guéorguiev, 1974, based on morphology with a special emphasis to Italian genera and with the description of a new species of Halbherria (Coleoptera Leiodidae Cholevinae Leptodirini)

FIGURES 49–54. Elytral surface. 49, Neobathyscia isabellae. 50, Bathysciotes khevenhuelleri. 51, Bathyscidius tristiculus. 52, Pavicevicia pretneri. 53, Redensesekia likana. 54, Ravasinia lonae. Scale bar is 100 μm.

opennotspecifiedApr 2019View details →

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