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FIG. 5 in Monograph of Acalypha L. (Euphorbiaceae) of the Western Indian Ocean Region, with the description of a new species from Mayotte
FIG. 5. — Axillary buds: A, Acalypha emirnensis Baill. (L. Gautier LG3889); B, A. marginata (D. S. Léman s.n.); C, A. menavody (Leandri) I.Montero & Cardiel (M. Bardot-Vaucoulon 1016); D, A. rottleroides Baill. (L. Nusbaumer LN1933). Scale bars: 0.5 mm.
Figure 8. – Eleotris valadei n in Eleotris (Teleostei: Eleotridae) of the Indian Ocean: an overview with the description of three new species
Figure 8. – Eleotris valadei n. sp., MNHN-IC-2020-0065, paratype, Nouvelle-Découverte River, Praslin, Seychelles Islands (tag 12584) (© M.I. Mennesson, P. Keith).
Figure 3 in Eleotris (Teleostei: Eleotridae) of the Indian Ocean: an overview with the description of three new species
Figure 3. – Eleotris pellegini, Grand St Louis River, Mahe, Seychelles Islands (tag 12592) (© M.I. Mennesson, P. Keith).
Figure 5. Carcinoplax sinica Chen, 1984, overall habitus. A in Carcinoplax mistio, a new species of goneplacid crab from the Indian Ocean (Decapoda: Brachyura: Goneplacoidea)
Figure 5. Carcinoplax sinica Chen, 1984, overall habitus. A, male (31.7 x 20.9 mm) (ZRC 2011.0607), Gulf of Tonkin; B, male (35.2 x 23.4 mm) (ZRC 1984.7842), South China Sea; C, male (34.6 x 25.0 mm) (ZRC 1984.6314), South China Sea.
Figure 8. Gonopods. A–D, Carcinoplax mistio n in Carcinoplax mistio, a new species of goneplacid crab from the Indian Ocean (Decapoda: Brachyura: Goneplacoidea)
Figure 8. Gonopods. A–D, Carcinoplax mistio n. sp., holotype male (29.2 x 19.0 mm) (ZSI Reg. No. C7123/2), Bay of Bengal; E–J, C. mistio n. sp., K–M, male (45.0 x 29.0 mm) (Copenhagen Museum), Persian Gulf; H–J, C. purpurea Rathbun, 1914, male (31.0 x 24.2 mm) (ZRC 1999.0773), Taiwan; K–M, C. sinica Chen, 1984, male (31.7 x 20.9 mm) (ZRC 2011.0607), Gulf of Tonkin; N, C. sinica Chen, 1984, male (34.6 x 25.0 mm) (ZRC 1984.6314), South China Sea. A, H, K, left G1 (ventral view); B, C, I, L, N, distal part of left G (ventral view); D, right G2 (transposed for comparative purposes); E, distal part of G1; F, G1; G, G2; J, M, left G2. (E, after Stephensen, 1946: fig. 44A, B; F, G, after Guinot, 1989: fig. 14). Scales: A, D, H, J, K, M = 1.0 mm; B, C, I, L, N = 0.5 mm.
Figure 4. Carcinoplax sinica Chen, 1984 in Carcinoplax mistio, a new species of goneplacid crab from the Indian Ocean (Decapoda: Brachyura: Goneplacoidea)
Figure 4. Carcinoplax sinica Chen, 1984, male (28.5 x 19.5 mm) (ZRC 1984.5693), South China Sea. A, overall habitus; B, left third maxilliped; C, frontal view of cephalothorax; D, anterior thoracic sternum, pleonal somites 4–6 and telson; E, dorsal view of right cheliped; F, outer view of right chela; G, outer view of left chela.
Figure 7. Male pleon and ambulatory legs. A, G, H, Carcinoplax mistio n in Carcinoplax mistio, a new species of goneplacid crab from the Indian Ocean (Decapoda: Brachyura: Goneplacoidea)
Figure 7. Male pleon and ambulatory legs. A, G, H, Carcinoplax mistio n. sp., holotype male (29.2 x 19.0 mm) (ZSI Reg. No. C7123/2), Bay of Bengal; B, I, J, C. purpurea Rathbun, 1914, male (31.0 x 24.2 mm) (ZRC 1999.0773), Taiwan; C, C. purpurea Rathbun, 1914, male (31.7 x 24.3 mm) (ZRC 2001.0017), Taiwan; D, K, L, C. sinica (28.5 x 19.5 mm) (ZRC 1984.5693), South China Sea; E, C. sinica (35.2 x 23.4 mm) (ZRC 1984.7842), South China Sea; F, C. sinica (34.6 x 25.0 mm) (ZRC 1984.6314), South China Sea. A–F, male pleonal somites 3–6 and telson; G, I, K, right P4; H, J, L, right P5.
Figure 3. Carcinoplax purpurea Rathbun, 1914 in Carcinoplax mistio, a new species of goneplacid crab from the Indian Ocean (Decapoda: Brachyura: Goneplacoidea)
Figure 3. Carcinoplax purpurea Rathbun, 1914, male (31.0 x 24.2 mm) (ZRC 1999.0773), Taiwan. A, overall habitus; B, left third maxilliped; C, frontal view of cephalothorax; D, anterior thoracic sternum, pleonal somites 4–6 and telson; E, dorsal view of right cheliped; F, outer view of right chela; G, outer view of left chela.
Figure 6 in Carcinoplax mistio, a new species of goneplacid crab from the Indian Ocean (Decapoda: Brachyura: Goneplacoidea)
Figure 6. Dorsal view of male carapace. A, Carcinoplax mistio n. sp., holotype male (29.2 x 19.0 mm) (ZSI Reg. No. C7123/2), Bay of Bengal; B, C. mistio n. sp., paratype female (36.4 x 24.2 mm) (ZSI Reg. No. C7124/2), Bay of Bengal; C, C. purpurea Rathbun, 1914 (31.0 x 24.2 mm) (ZRC 1999.0773), Taiwan; D, C. purpurea (31.7 x 24.3 mm) (ZRC 2001.0017), Taiwan; E, C. sinica Chen, 1984 (31.7 x 20.9 mm) (ZRC 2011.0607), Gulf of Tonkin; F, C. sinica (28.5 x 19.5 mm) (ZRC 1984.5693), South China Sea; G, C. sinica (35.2 x 23.4 mm) (ZRC 1984.7842), South China Sea; H, C. sinica (34.6 x 25.0 mm) (ZRC 1984.6314), South China Sea.
Figure 9. A, B, Carcinoplax mistio n in Carcinoplax mistio, a new species of goneplacid crab from the Indian Ocean (Decapoda: Brachyura: Goneplacoidea)
Figure 9. A, B, Carcinoplax mistio n. sp., paratype female (36.4 x 24.2 mm) (ZSI Reg. No. C7124/2), Bay of Bengal; C, D, Carcinoplax purpurea Rathbun, 1914, female (38.8 x 29.5 mm) (ZRC 2001.0017), Taiwan; E, F, C. sinica Chen, 1984, female (35.9 x 25.6 mm) (ZRC 1984.6313) South China Sea. A, anterior thoracic sternum and pleon; C, E, overall habitus; B, D, F, sternopleonal cavity showing vulvae.
Figure 6 in Sphaeromopsis jayaraji sp. nov. (Crustacea: Isopoda), a new species of intertidal Sphaeromatidae from the Andaman Islands, northern Indian Ocean
Figure 6. Sphaeromopsis jayaraji sp. nov., holotype male (2.9 mm) (PUMB 35104). A, pleopod 1; B, pleopod 2; C, pleopod 3; D, pleopod 4; E, pleopod 5.
Figure 5 in Sphaeromopsis jayaraji sp. nov. (Crustacea: Isopoda), a new species of intertidal Sphaeromatidae from the Andaman Islands, northern Indian Ocean
Figure 5. Sphaeromopsis jayaraji sp. nov., holotype male (2.9 mm) (PUMB 35104). A, pereopod 1; B, pereopod 2; C, pereopod 4; D, pereopod 6; E, pereopod 7.
Figure 2 in Sphaeromopsis jayaraji sp. nov. (Crustacea: Isopoda), a new species of intertidal Sphaeromatidae from the Andaman Islands, northern Indian Ocean
Figure 2.Sphaeromopsis jayaraji sp. nov., holotype male (2.9 mm) (PUMB 35104). A, dorsal view; B, lateral view; C, frontal lamina; D, pleotelson; E, uropods.
Figure 3 in Sphaeromopsis jayaraji sp. nov. (Crustacea: Isopoda), a new species of intertidal Sphaeromatidae from the Andaman Islands, northern Indian Ocean
Figure 3. Sphaeromopsis jayaraji sp. nov., holotype male (2.9 mm) (PUMB 35104). A, ventral view of pleotelson; B, antennula; C, antenna; D, penes.
Figure 4 in Sphaeromopsis jayaraji sp. nov. (Crustacea: Isopoda), a new species of intertidal Sphaeromatidae from the Andaman Islands, northern Indian Ocean
Figure 4. Sphaeromopsis jayaraji sp. nov., holotype male (2.9 mm) (PUMB 35104). A, maxilliped; B, mandible; C, mandible palp; D, maxillula; E, maxilla.
FIGURE 2 in Evidence for dynamic resource partitioning between two sympatric reef shark species within the British Indian Ocean Territory
FIGURE 2 (a) Maximum likelihood standard ellipse areas (, 40% of the data) for isotopes δ13C v. δ15N in fin, (b) muscle, (c) red blood cell, (d) plasma and for isotope δ34S v. δ15C (e) and δ15N (f) of Carcharhinus amblyrhynchos () and Carcharhinus albimarginatus (). Convex hulls () are drawn between the centers of each group. Overlapping values, if present, are the proportion of overlapping area of the two ellipses. Potential competitor–prey teleost data are shown () with associated error bars (± 1 SD). Ellipses for red blood cell and plasma presented for reference but represent small sample sizes (<10) and therefore come with lower confidence
FIGURE 1 in Evidence for dynamic resource partitioning between two sympatric reef shark species within the British Indian Ocean Territory
FIGURE 1 Bayesian isotope mixing models were used to determine the extent that Carcharhinus amblyrhynchos and Carcharhinus albimarginatus were reliant on reef (blue) or pelagic (red) resources. End members were set as the most δ13C depleted (pelagic) and most δ13C enriched (reef) of the teleosts sampled (trevally (Carangidae) for reef, tuna (Scombridae) for pelagic). Posterior probability distributions indicate model predictions of reliance on a given source with higher values indicating greater reliance
Fig. 1 in Typification and nomenclature of the western Indian Ocean islands ferns and lycophytes described in Linnaeus filius's Supplementum plantarum
Fig. 1. – Manuscript list in Linnaeus filius's hand dated 20 February 1780 associated with Thouin's numbering entitled "Plantae missae Sonneratii" including the seven new fern and two lycophyte species from the western Indian Ocean islands described by Linnaeus f. in Supplementum plantarum. [MS 2081, p. 23 front and back; © Muséum national d'Histoire naturelle, Bibliothèque centrale, Paris]
Fig. 2 in Typification and nomenclature of the western Indian Ocean islands ferns and lycophytes described in Linnaeus filius's Supplementum plantarum
Fig. 2. – Labels of original material of Acrostichum punctatum L. f. A. Lectotype in LINN-HS bearing in Thouin's hand the number "28" to which Linnaeus f. has added the epithet "punctatum" and "ny" (="new"); B. Isolectotype in MPU originating from Thouin's herbarium with, in Thouin's hand: "Con" for Commerson as collector and "Env. a m. Linn. S. le nº 28" [sent to Linnaeus under nº 28]. [A: LINN-HS nº 1622.27; © Linnean Society of London; B: MPU1054971; © Université de Montpellier – Herbier MPU (SPH)]
Fig. 5 in Typification and nomenclature of the western Indian Ocean islands ferns and lycophytes described in Linnaeus filius's Supplementum plantarum
Fig. 5. – Lectotype of Asplenium daucifolium Lam. in MPU. [© Université de Montpellier – Herbier MPU (SPH)]
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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
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
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.