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2,991 results for “indian ocean”
Distribution. Occurs from the temperate waters of S Atlantic, Indian, and S Pacific oceans to the waters of Antarctica. A record from Burma (= Myanmar) is thought to represent a vagrant individual. in Ziphiidae
Distribution. Occurs from the temperate waters of S Atlantic, Indian, and S Pacific oceans to the waters of Antarctica. A record from Burma (= Myanmar) is thought to represent a vagrant individual.
Distribution. Throughout the warmest waters of the Indian and Pacific oceans, it has a cross-equatorial distribution occurring from as far N as the Arabian Sea, S India, Japan, and Mexico to as far S as South Africa and Australia; its occurrence appears to be relatively continuous within its distribution; it has not been recorded in the Atlantic Ocean. in Ziphiidae
Distribution. Throughout the warmest waters of the Indian and Pacific oceans, it has a cross-equatorial distribution occurring from as far N as the Arabian Sea, S India, Japan, and Mexico to as far S as South Africa and Australia; its occurrence appears to be relatively continuous within its distribution; it has not been recorded in the Atlantic Ocean.
Distribution. Ranges from temperate waters of the S Atlantic, Indian, and S Pacific oceans to waters of Antarctica. A single specimen stranded on the Dutch coast is thought to have been a vagrant individual. in Ziphiidae
Distribution. Ranges from temperate waters of the S Atlantic, Indian, and S Pacific oceans to waters of Antarctica. A single specimen stranded on the Dutch coast is thought to have been a vagrant individual.
Distribution. Warmer waters ofthe Pacific and Indian oceans in an area ranging from S India and Sri Lanka to Taiwan, Japan, SE Australia, Galapagos Is, and California. Exact distribution remains unclear due to the small number of known strandings, and the taxonomic confusion between the Ginkgo-toothed Beaked Whale and the Deraniyagala's Beaked Whale (Mesoplodonhotaula). in Ziphiidae
Distribution. Warmer waters ofthe Pacific and Indian oceans in an area ranging from S India and Sri Lanka to Taiwan, Japan, SE Australia, Galapagos Is, and California. Exact distribution remains unclear due to the small number of known strandings, and the taxonomic confusion between the Ginkgo-toothed Beaked Whale and the Deraniyagala's Beaked Whale (Mesoplodonhotaula).
Subspecies and Distribution. L.n.nigricollisF.Cuvier,1823—SIndia(SoftheGodavariRiver). L.n.aryabertensisHodgson,1844—SCNepal. L.n.dayanusBlanford,1874—SEPakistanandNWIndia(GreatIndianDesert). L.n.ruficaudatusE.GeoffroySaint-Hilaire,1826—EPakistan,NIndia,SNepal,Bangladesh,Bhutan,exceptthehigherreachesoftheHimalayasandthemangroveareaswithintheSundarbans. L.n.sadiyaKloss,1918—NEIndia(Assam). L.n.simcoxiWroughton,1912—CIndia(NMaharashtraandMadhyaPradesh). L. n. singhala Wroughton, 1915 — Sri Lanka. Indian hares (probably ruficaudatus) also occur in extreme E Afghanistan, in the border areas with Pakistan. Situation in Java is debated and the so called "Javan Hare" might be native there. The species has been introduced by founder individuals of either unknown subspeciesaffiliation or belonging to various subspecies into Comoro, Mayotte, Madagascar, Réunion (including Gunners Quoin I), Mauritius (Agaléga Is), Seychelles (Cousin I), and Andaman Is in the Indian Ocean, and into New Guinea. In Gunners Quoin the Indian Hare has been eradicated. in Leporidae
Subspecies and Distribution. L.n.nigricollisF.Cuvier,1823—SIndia(SoftheGodavariRiver). L.n.aryabertensisHodgson,1844—SCNepal. L.n.dayanusBlanford,1874—SEPakistanandNWIndia(GreatIndianDesert). L.n.ruficaudatusE.GeoffroySaint-Hilaire,1826—EPakistan,NIndia,SNepal,Bangladesh,Bhutan,exceptthehigherreachesoftheHimalayasandthemangroveareaswithintheSundarbans. L.n.sadiyaKloss,1918—NEIndia(Assam). L.n.simcoxiWroughton,1912—CIndia(NMaharashtraandMadhyaPradesh). L. n. singhala Wroughton, 1915 — Sri Lanka. Indian hares (probably ruficaudatus) also occur in extreme E Afghanistan, in the border areas with Pakistan. Situation in Java is debated and the so called "Javan Hare" might be native there. The species has been introduced by founder individuals of either unknown subspeciesaffiliation or belonging to various subspecies into Comoro, Mayotte, Madagascar, Réunion (including Gunners Quoin I), Mauritius (Agaléga Is), Seychelles (Cousin I), and Andaman Is in the Indian Ocean, and into New Guinea. In Gunners Quoin the Indian Hare has been eradicated.
Distribution. CE Madagascar, known only from its type locality, the Sahafina Forest (29-230 m above sea level), a lowland rainforest fragment of 15-6 km2, and its surrounding "savoka" (fallow farmland with cultivated trees), about 58 km E of Andasibe-Mantadia National Park and 18 km W of the Indian Ocean. The geographic range is presumably limited to the lowland areas (below 700 m) between the Mangoro River to the S and the Rianila River to the N, an area of about 7600 km?2. in Cheirogaleidae
Distribution. CE Madagascar, known only from its type locality, the Sahafina Forest (29-230 m above sea level), a lowland rainforest fragment of 15-6 km2, and its surrounding "savoka" (fallow farmland with cultivated trees), about 58 km E of Andasibe-Mantadia National Park and 18 km W of the Indian Ocean. The geographic range is presumably limited to the lowland areas (below 700 m) between the Mangoro River to the S and the Rianila River to the N, an area of about 7600 km?2.
FIGURE 4 in The invasive land flatworm Obama nungara in La Réunion, a French island in the Indian Ocean, the first report of the species for Africa
FIGURE 4. Climatic suitability of Obama nungara in La Réunion. Names of communes and their limits (white lines) are indicated. The three localities where the specimens were found (Petite France, Plaine des Grègues and Gîte de la Bergerie) are indicated.
FIGURE 1 in The invasive land flatworm Obama nungara in La Réunion, a French island in the Indian Ocean, the first report of the species for Africa
FIGURE 1. Photo of a live specimen of Obama nungara, taken in Petite France in the commune of Saint Paul, La Réunion. Photo by Régis Bretzner, taken 10 June 2021. The specimen is brown on the back, with darker brown striae, a reddish tip, and with a cream stripe running a short distance from the head towards the tail, but which soon disappears into the general colour of the back.
FIGURE 2 in The invasive land flatworm Obama nungara in La Réunion, a French island in the Indian Ocean, the first report of the species for Africa
FIGURE 2. Photo of a live specimen of Obama nungara, taken in la Plaine des Grègues in the commune of Saint Joseph, La Réunion. Specimen collected 22 April 2021 by Renaud Hoarau, photograph taken by Nicolas Huet. The photo clearly shows the dark brown striae on the brownish coloured back, and the whitish under surface.
FIGURE 5 in A new deep-sea sponge Fibulia occiensis sp. nov. (Poecilosclerida: Dendoricellidae) from the 25° South Oceanic Core Complex in the Central Indian Ocean Ridge
FIGURE 5. Geographical distribution of all known Fibulia species used for comparison (source: WoRMS database (=World Porifera Database, WPD)).
FIGURE 4 in A new deep-sea sponge Fibulia occiensis sp. nov. (Poecilosclerida: Dendoricellidae) from the 25° South Oceanic Core Complex in the Central Indian Ocean Ridge
FIGURE 4. Fibulia occiensis sp. nov. holotype (NCPOR/HYD-CIR/0029). A, oxeas. B–H, arcuate isochelae.
FIGURE 1 in A new deep-sea sponge Fibulia occiensis sp. nov. (Poecilosclerida: Dendoricellidae) from the 25° South Oceanic Core Complex in the Central Indian Ocean Ridge
FIGURE 1. Location of the collection sites of Fibulia occiensis sp. nov. in the 25° South Oceanic Core Complex (Close to Kairei hydrothermal vent field and Rodrigues Triple Junction) in the Central Indian Ocean Ridge, Indian Ocean. The blue colour block indicates the track line of the benthic sledge. The red line indicates the ridge axis.
FIGURE 3 in A new deep-sea sponge Fibulia occiensis sp. nov. (Poecilosclerida: Dendoricellidae) from the 25° South Oceanic Core Complex in the Central Indian Ocean Ridge
FIGURE 3. Fibulia occiensis sp. nov. Holotype (NCPOR/HYD-CIR/0029). A, SEM images showing the hispid surface of the sponge body and scattered arcuate isochelae forming the ectosome among the oxeas. B, the cross-section of the intercrossing tracts.
FIGURE 2. A in A new deep-sea sponge Fibulia occiensis sp. nov. (Poecilosclerida: Dendoricellidae) from the 25° South Oceanic Core Complex in the Central Indian Ocean Ridge
FIGURE 2. A, Fibulia occiensis sp. nov. holotype (NCPOR/HYD-CIR/0029), B, paratype (NCPOR/HYD-CIR/0030). C, section through the bundles of tracts showing many fine tracts. D, ectosomal skeleton plumose and feathery appearance of the body.
FIGURE 4 in On a few benthic hydroids (Cnidaria, Hydrozoa) from the Kerguelen Islands (southern Indian Ocean), including the description of a new species
FIGURE 4. Campanularia sp.: A–B, hydrothecae; C, hydrothecal distal part showing cusps; D, distal part of pedicel, basal spherule and hydrothecal basal part. Sertularella contorta Kirchenpauer, 1884: E–F, hydrothecae; G, hydrotheca and basal part of branch; H, hydrotheca showing polyp and location of basal 'tentacles' (close-up showing tentacles). Scale bar: 200 µm (A, B, E–H), 100 µm (C, D).
FIGURE 1 in On a few benthic hydroids (Cnidaria, Hydrozoa) from the Kerguelen Islands (southern Indian Ocean), including the description of a new species
FIGURE 1. Candelabrum bitentaculatum sp. nov.: A, hydranth; B, basal and middle part of polyp; C, general view of polyp's gonophore-bearing middle part; D, blastostyles with gonophores; E, blastostyles; F, general view of a portion of polyp's distal part showing the location of putative male gonophore (arrow), with close-up showing that gonophore; G, general view of basal part of polyp; H, basal part of hydranth showing blastostyle-like structures (arrow pointing to one of them clearly showing the capitate and sucker tentacles), close-up showing sucker tentacles with perisarc plate. Scale bar: 10 mm (A, B), 5 mm (D).
FIGURE 3. Coryne pusilla Gaertner, 1774 in On a few benthic hydroids (Cnidaria, Hydrozoa) from the Kerguelen Islands (southern Indian Ocean), including the description of a new species
FIGURE 3. Coryne pusilla Gaertner, 1774: A, distal part of polyp; B, larger and smaller stenoteles. Eudendrium tottoni Stechow, 1932: C, polyp; D, hydranth's basal annular swelling; E, male gonophore. Tubularia sp.: F, hydranth and gonophores. Scale bar: 900 µm (F), 600 µm (F close-up), 200 µm (A), 100 µm (C, E), 50 µm (D), 10 µm (B).
FIGURE 2 in On a few benthic hydroids (Cnidaria, Hydrozoa) from the Kerguelen Islands (southern Indian Ocean), including the description of a new species
FIGURE 2. Candelabrum bitentaculatum sp. nov.: A, discharged microbasic eurytele; B, undischarged microbasic eurytele (arrow); C, larger and smaller desmonemes and?mastigophore (arrow); D, larger and smaller desmonemes; E, discharged desmoneme; F, stenotele. Scale bar: 10 µm.
Controls on nitrite oxidation in the upper Southern Ocean: insights from winter kinetics experiments in the Indian sector
<p>This is a dataset to the paper "Controls on nitrite oxidation in the upper Southern Ocean: insights from winter kinetics experiments in the Indian sector" published under the Biogeosciences journal. This dataset contains rates of nitrite oxidation, kinetic parameters (half-saturation constant and maximum oxidation rate) for nitrite oxidation, latitudinal gradient of surface nitrite concentrations, integrated rates of ammonium and nitrite oxidation. </p>
FIGURE 3 in A new species of the grenadier genus Coelorinchus (Gadiformes: Macrouridae) from the western Indian Ocean
FIGURE 3. Coelorinchus tricristiger sp. nov., holotype, IOM M.120-009, isolated scales. A. Predorsal region. B. Flank below first dorsal-fin base. Scale bar (common): 1 mm.
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Allen Brain Atlas
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