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FIGURE 2. Chlidichthys bibulus, SMF 29235, 34.7 in Pseudochromine and pseudoplesiopine dottyback fishes from the Socotra Archipelago, Indian Ocean, with descriptions of two new species of Pseudochromis Rüppell (Perciformes: Pseudochromidae)
FIGURE 2. Chlidichthys bibulus, SMF 29235, 34.7 mm SL, Ras Qatanin Bay, SW coast of Socotra Island, Socotra Archipelago. (Photo by P. Hurst)
FIGURE 3. Chlidichthys cacatuoides, SMF 29231, 30.5 in Pseudochromine and pseudoplesiopine dottyback fishes from the Socotra Archipelago, Indian Ocean, with descriptions of two new species of Pseudochromis Rüppell (Perciformes: Pseudochromidae)
FIGURE 3. Chlidichthys cacatuoides, SMF 29231, 30.5 mm SL, NE coast of Darsa Island, Socotra Archipelago. (Photo by U. Zajonz)
FIGURE 12. M. maldiviensis n in Bryodiversity in the tropics: taxonomy of Microporella species (Bryozoa, Cheilostomata) with personate maternal zooids from Indian Ocean, Red Sea and southeast Mediterranean
FIGURE 12. M. maldiviensis n. sp., specimens from Maldive Islands (A, F: paratype 2010-0002-0005 DPUV; B, G: paratype 2010-0002-0004 DPUV; C, E, I: fragment of the holotype 2010-0002-0001 DPUV; D, H: paratype 2010-0002-0003 DPUV). A: non-ovicellate zooids. B: maternal zooid and ovicell with typical personate structure. C: distal half of non-ovicellate zooid with 4 oral spines in distal position. D: avicularium with hooked and finely denticulate mandible resting in the rostrum. E–G: primary orifice with 3 (E), 4 (G) or 5 spines (F), low rounded denticles on the distal edge, shoulder-shaped condyles and slightly corrugated proximal edge. H: avicularium with mandible in open position showing the pointed processes corresponding to the rostrum tip. I: three non-ovicellate zooids with 1, 0 or 2 avicularia respectively, and patches of 'secondary calcification'. Scale bars: A, I = 200 µm; B, C = 100 µm; D, H = 50 µm; E–G = 30 µm.
FIGURE 7. M in Bryodiversity in the tropics: taxonomy of Microporella species (Bryozoa, Cheilostomata) with personate maternal zooids from Indian Ocean, Red Sea and southeast Mediterranean
FIGURE 7. M. genisii, specimens from Ras Mohammed, Red Sea. A: cleaned non-ovicellate zooid with relatively large pseudopores and small nodules, ascopore with poorly developed median process, avicularium and orifice with 4 spines. B: maternal zooid with entooecium with small 'pseudopores' and personate peristomial collar leaving apparent a pair of oral spines at the junction with the vizor of the ovicell. C: primary orifice with smooth distal edge and proximal edge sculptured with low beads. D: avicularium in open position showing the gutter-shaped lower side of mandible and pointed processes; note the nearly round ascopore. E: young colony with ancestrula and peri-ancestrular zooids including early-formed ovicells. F: calcified part of avicularium. Scale bars: A, B = 100 µm; C, D, F = 50 µm; E = 200 µm.
FIGURE 10. M in Bryodiversity in the tropics: taxonomy of Microporella species (Bryozoa, Cheilostomata) with personate maternal zooids from Indian Ocean, Red Sea and southeast Mediterranean
FIGURE 10. M. harmeri, primary orifice in specimens from different localities. Red Sea: Safaga Bay (A) and Ras Mohammed (F); Indian Ocean: S Africa (B), Oman (C) and Maldives (D); SE Mediterranean: Lebanon (E).
FIGURE 5 in Bryodiversity in the tropics: taxonomy of Microporella species (Bryozoa, Cheilostomata) with personate maternal zooids from Indian Ocean, Red Sea and southeast Mediterranean
FIGURE 5. Savigny's drawings of M. coronata. Left: non-ovicellate zooid (Savigny 1817, pl. 9, fig. 7.3); right: zooid with personate ovicell (Savigny 1817, pl. 9, fig. 7.4), named Flustra umbracula by Audouin (1826)
FIGURE 6. M. hastingsae n in Bryodiversity in the tropics: taxonomy of Microporella species (Bryozoa, Cheilostomata) with personate maternal zooids from Indian Ocean, Red Sea and southeast Mediterranean
FIGURE 6. M. hastingsae n. sp., specimen Natural History Museum, London n° 1926.9.6.238, from the Suez Canal. A: nonovicellate zooids with two avicularia. B: zooids with complete ovicell without personate collar (to the right) and young forming ooecium. Note large marginal pores surrounding entooecium (photos courtesy M. Spencer Jones and J. Scholz).
FIGURE 9. M in Bryodiversity in the tropics: taxonomy of Microporella species (Bryozoa, Cheilostomata) with personate maternal zooids from Indian Ocean, Red Sea and southeast Mediterranean
FIGURE 9. M. harmeri, ascopore: variability of shape. A: S Africa, Indian Ocean. B: Safaga Bay, Red Sea. C: Oman, Indian Ocean. D: Ras Mohammed, Red Sea. Scale bars A-D = 10 µm.
FIGURE 8. M in Bryodiversity in the tropics: taxonomy of Microporella species (Bryozoa, Cheilostomata) with personate maternal zooids from Indian Ocean, Red Sea and southeast Mediterranean
FIGURE 8. M. harmeri, specimens from Red Sea, Safaga Bay (A, B) and Ras Mohammed (C), Indian Ocean, Oman (D, F) and SE Mediterranean, Selaata (E). A: part of colony with non-ovicellate zooids. B: Distal half of a cleaned non-ovicellate zooid. C: uncleaned non-ovicellate zooids with asymmetrical lanceolate mandibles. D: part of colony with ovicells. E: detail of a cleaned maternal zooid with ovicell showing the entooecium and the personate peristomial collar. F: ancestrula and peri-ancestrular zooids. Scale bars: A, C, D, F = 200 µm; B, E = 100 µm.
FIGURE 4. M in Bryodiversity in the tropics: taxonomy of Microporella species (Bryozoa, Cheilostomata) with personate maternal zooids from Indian Ocean, Red Sea and southeast Mediterranean
FIGURE 4. M. coronata, specimens from Lebanon, SE Mediterranean. A: cleaned non-ovicellate zooid with 6 oral spines, paired avicularia and ascopore edged with a proximal bulge. B: uncleaned non-ovicellate zooid with long setiform mandibles. C: maternal zooid with peristomial collar including the ascopore and joined lateral flaps, and ovicell with vizor (proximal part of ectooecium) and nodular, pseudoporous wall (entooecium). D: secondary orifice of a maternal zooid with un-fused lateral flaps. E: ancestrula (to the left) with 10 spines. Scale bars: A–E = 100 µm.
FIGURE 3. M. collaroides n in Bryodiversity in the tropics: taxonomy of Microporella species (Bryozoa, Cheilostomata) with personate maternal zooids from Indian Ocean, Red Sea and southeast Mediterranean
FIGURE 3. M. collaroides n. sp., paratype specimen 2010-0003-0002 DPUV from Jeddah, Red Sea. A: part of the colony with non-ovicellate zooids and personate ovicell (below). B: part of the same colony with ovicells without personate structure. C: distal zooid with ooecium and personate maternal zooid with typical peristomial collar. D: latero-distal view of a maternal zooid showing the secondary orifice formed by the peristomial collar and entooecium with 'pseudopores'. E: distal half of a non-ovicellate autozooid with primary orifice, ascopore and avicularium. F: primary orifice with wavy distal edge, broad proximal edge bordered with oval bars and lateral condyles. Scale bars: A, C = 200 µm; B = 400 µm; D, E = 100 µm; F = 50 µm.
FIGURE 1. M. browni n in Bryodiversity in the tropics: taxonomy of Microporella species (Bryozoa, Cheilostomata) with personate maternal zooids from Indian Ocean, Red Sea and southeast Mediterranean
FIGURE 1. M. browni n. sp., specimens from Oman, Indian Ocean (A-C: paratype 2010-0001-0009 DPUV; F: paratype 2010- 0001-0009 DPUV). A: Distal half of a cleaned non-ovicellate zooid with five oral spines. B: Part of colony with a personate maternal zooid and ovicell and four zooids with initial stage of ovicell formation, two with a single avicularium and two without. C: Primary orifice with 4 oral spines, distal denticles, corrugated proximal edge and low condyles at the corners. D: uncleaned zooids with 5 or 6 oral spines, avicularium and setiform mandible folded over the frontal wall. E: gutter-shaped lower face of mandible bearing pointed processes near its basis. F: growing margin of a colony showing basal pore chambers. G: ancestrula and peri-ancestrular zooids. Scale bars: A, D, F = 100 µm; B, G = 200 µm; C, E = 50 µm.
FIGURE 11. M in Bryodiversity in the tropics: taxonomy of Microporella species (Bryozoa, Cheilostomata) with personate maternal zooids from Indian Ocean, Red Sea and southeast Mediterranean
FIGURE 11. M. harmeri, mandible of avicularium. A: channelled rostrum and mandible folded over the frontal shield; S Africa, Indian Ocean. B: zooids with mandibles in resting position; note the more or less curled lanceolate wings; Oman, Indian Ocean. C: detail of an opened mandible showing the articulation, the stalk and the basal hook which clamps the mandible to the rostrum tip; Ras Mohammed, Red Sea. D: mandible in resting position, with a typical asymmetrical lanceolate shape; Oman, Indian Ocean. Scale bars: A, D = 50 µm; B = 200 µm; C = 25 µm.
FIGURE 2. M. browni n in Bryodiversity in the tropics: taxonomy of Microporella species (Bryozoa, Cheilostomata) with personate maternal zooids from Indian Ocean, Red Sea and southeast Mediterranean
FIGURE 2. M. browni n. sp., specimens from Maldive Islands, Indian Ocean (A, C) and Beirut, SE Mediterranean (B, D, E) displaying the same morphological features. A–B: zooids with ovicells; C–D: primary orifice; E: rimmed ascopore and avicularium. Scale bars: A–B = 100 µm; C–E = 50 µm.
FIGURE 13 in Bryodiversity in the tropics: taxonomy of Microporella species (Bryozoa, Cheilostomata) with personate maternal zooids from Indian Ocean, Red Sea and southeast Mediterranean
FIGURE 13. Geographical distribution of the six studied Microporella species with personate ovicells. B: M. browni n. sp.; Cl: M. collaroides n. sp.; Cr: M. coronata; G: M. genisii; H.: M. harmeri; M: M. maldiviensis n. sp.
FIGURE 4 in A review of the Acanthopagrus bifasciatus species complex (Pisces: Sparidae) from the Indian Ocean, with redescriptions of A. bifasciatus (Forsskål 1775) and A. catenula (Lacepède 1801)
FIGURE 4. Teeth of upper and lower jaws of A‒B Acanthopagrus bifasciatus and C‒D A. catenula. A‒B, BPBM 18173, 151 mm SL, Red Sea; C‒D, SAIAB 11820, 162 mm SL, South Africa.
FIGURE 6 in A review of the Acanthopagrus bifasciatus species complex (Pisces: Sparidae) from the Indian Ocean, with redescriptions of A. bifasciatus (Forsskål 1775) and A. catenula (Lacepède 1801)
FIGURE 6. Orbit diameters of Acanthopagrus bifasciatus (open circle) and A. catenula (solid triangle) in relation to standard length.
FIGURE 5 in A review of the Acanthopagrus bifasciatus species complex (Pisces: Sparidae) from the Indian Ocean, with redescriptions of A. bifasciatus (Forsskål 1775) and A. catenula (Lacepède 1801)
FIGURE 5. Clear different sizes of upper teeth on the same size specimens of A Acanthopagrus bifasciatus and B A. catenula. A, MUFS 25810, 335 mm SL, Oman; B, MUFS 25807, 345 mm SL, off Socotra Island, Somalia.
FIGURE 3 in A review of the Acanthopagrus bifasciatus species complex (Pisces: Sparidae) from the Indian Ocean, with redescriptions of A. bifasciatus (Forsskål 1775) and A. catenula (Lacepède 1801)
FIGURE 3. Stages of A‒D Acanthopagrus bifasciatus and E‒H A. catenula. A, SMF 24659, 101 mm SL, Red Sea; B, BPBM 18173, 151 mm SL, Ras Muhammed, Sinai Peninsula, Egypt; C, BPBM 29526, 238 mm SL, Bahrain; D, MUFS 25811, 362 mm SL, off southern Oman facing Indian Ocean; E, MNHN A4149, 103 mm SL, Madagascar; F, SAIAB 11819, 153 mm SL, Kenya; G, Uncatalogued specimen (reversed), ca. 30 cm TL, Rodrigues, photographed by T. Hooper; H, MUFS 25808, 364 mm SL, off Socotra Island, Somalia.
FIGURE 2 in A review of the Acanthopagrus bifasciatus species complex (Pisces: Sparidae) from the Indian Ocean, with redescriptions of A. bifasciatus (Forsskål 1775) and A. catenula (Lacepède 1801)
FIGURE 2. Colour photographs of A Acanthopagrus bifasciatus and B A. catenula. A A. bifasciatus, BPBM 18173, 151 mm SL, Ras Muhammad, Sinai Peninsula, Egypt, Red Sea; B, SAIAB 9672, 139 mm SL, Kosi Bay, KwaZulu-Natal, South Africa.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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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
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.