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FIGURE 16 in The genus Echinolittorina Habe, 1956 (Gastropoda: Littorinidae) in the Indo-West Pacific Ocean
FIGURE 16. Distribution of Echinolittorina natalensis (open circles), E. omanensis (solid circles) and E. subnodosa (open triangles). Literature records: A, Kilburn (1972); B, Melvill & Standen (1901).
FIGURE 23 in The genus Echinolittorina Habe, 1956 (Gastropoda: Littorinidae) in the Indo-West Pacific Ocean
FIGURE 23. Distribution of Echinolittorina pascua (open squares), E. sundaica (solid triangles), E. cinerea (solid circles), and E. hawaiiensis (open circles). Literature records: A, Dharma (1997); B, Rosewater (1970); C, Fujioka & Kurozumi (1980); D, Kurozumi (1994); E, Vermeij et al. (1984).
FIGURE 2 in The genus Echinolittorina Habe, 1956 (Gastropoda: Littorinidae) in the Indo-West Pacific Ocean
FIGURE 2. Terminology of Echinolittorina shells and radulae. A. E. malaccana. B. E. tricincta. C. E. reticulata. D. E. novaezelandiae. E. Radula of E. pascua in flat view.
FIGURE 14. Echinolittorina natalensis. A–G, penes. H, pallial oviduct. I, J, paraspermatozoa. K–M, pelagic egg capsules. A in The genus Echinolittorina Habe, 1956 (Gastropoda: Littorinidae) in the Indo-West Pacific Ocean
FIGURE 14. Echinolittorina natalensis. A–G, penes. H, pallial oviduct. I, J, paraspermatozoa. K–M, pelagic egg capsules. A, Amanzimtoti, Kwazulu-Natal, South Africa (BMNH 20040211; shell H = 6.3 mm). B, C, Ankarena, Île Ste Marie, Madagascar (BMNH 20030679; shell H B = 10.8 mm, C = 10.5 mm). D, E, K–M, North Pier, Durban, South Africa (BMNH 20040210; shell H D = 10.0 mm, E = 9.4 mm). F, I, J, Oysterbay, Dar-es-Salaam, Tanzania (BMNH 20040212; shell H = 6.5 mm). G, H, Libanona Beach, Tolagnaro, Madagascar (BMNH 20030691; shell H G = 7.8 mm, H = 10.0 mm). Shading conventions as in Figure 3.
FIGURE 22. Echinolittorina pascua. A–E, penes. F, pallial oviduct. G, H, paraspermatozoa. A–C, F in The genus Echinolittorina Habe, 1956 (Gastropoda: Littorinidae) in the Indo-West Pacific Ocean
FIGURE 22. Echinolittorina pascua. A–E, penes. F, pallial oviduct. G, H, paraspermatozoa. A–C, F, Hanga Tee, Easter I. (BMNH 20040232; shell H A = 12.2 mm, B = 12.9 mm, C = 13.5 mm, F 13.2 mm). D, North Beach, Henderson I. (BMNH 20040233; shell H = 9.9 mm). E, G, Punta Hanga Poukura, Easter I. (BMNH 20040234; shell H = 3.8 mm). H, Anakena, Easter I. (BMNH 20040235). Shading conventions as in Figure 3.
FIGURE 11. Echinolittorina marisrubri new species. A in The genus Echinolittorina Habe, 1956 (Gastropoda: Littorinidae) in the Indo-West Pacific Ocean
FIGURE 11. Echinolittorina marisrubri new species. A, Little Aden, Yemen (BMNH 20030882). B, C, Safaga, Egypt (NNML). D, Eilat, Israel (BMNH 20030883). E, H, Red Sea (BMNH 20030884). F, paratype (BMNH 20030886). G, holotype, Port Safaga, Egypt (BMNH 20030885). I, Hind Kadam, Sudan (BMNH 1891.1.31.49).
Figure 6 in Sea slug night fever: 39 new records of elusive heterobranchs in the western Mediterranean (Mollusca: Gastropoda)
Figure 6. Photographs of live Sacoglossa species: (a) Hermaea bifida and close-up on its egg mass at the base of an alga. (b) Hermaea cantabra. (c) Hermaea paucicirra. (d) Limapontia capitata on Ulva lactuca. (e) Placida tardyi. (f) Placida viridis. (g) Elysia flava. Siphonariidae: (h) Williamia gussoni.
Figure 4 in Sea slug night fever: 39 new records of elusive heterobranchs in the western Mediterranean (Mollusca: Gastropoda)
Figure 4. Photographs of live Nudibranchia species: (a) The pelagic Phylliroe cf. bucephala. (b) Amphorina andra surrounded by hydrozoans of the genus Sertularella. (c) Eubranchus prietoi on the hydrozoan Kirchenpaueria halecioides. (d) The alien Godiva quadricolor. (e) Three specimens of Piseinotecus soussi and their egg masses. (f) Piseinotecus sphaeriferus on top of the hydrozoan Obelia sp. (g) Tenellia adspersa. (h) Trinchesia cuanensis on top of the hydrozoan Sertularella sp.
Figure 3 in Sea slug night fever: 39 new records of elusive heterobranchs in the western Mediterranean (Mollusca: Gastropoda)
Figure 3. Photographs of live Nudibranchia species: (a) Palio nothus and its egg mass. (b) The alien Polycera hedgpethi. (c) Polycerella emertoni and egg mass on Amathia verticillata. (d) Thecacera pennigera on top of the bryozoan Bugula sp. (e) Two specimens of Anteaeolidiella lurana and their egg masses. (f) Doto cervicenigra. (g) Doto fragilis (photo credit: Oriol Planas). (h) Doto pygmaea.
Figure 2 in Sea slug night fever: 39 new records of elusive heterobranchs in the western Mediterranean (Mollusca: Gastropoda)
Figure 2. Photographs of live Cephalaspidea species: (a) The alien Haloa japonica. (b) Haminoea orteai. (c) Egg mass of Haminoea orteai. (d) Philine catena. The Nudibranchia species: (e) Aegires palensis. (f) White morphotype of Aegires sublaevis. (g) Aldisa smaragdina on top of the sponge Phorbas topsenti. (h) Okenia longiductis on the bryozoan Amathia verticillata.
Figure 5 in Sea slug night fever: 39 new records of elusive heterobranchs in the western Mediterranean (Mollusca: Gastropoda)
Figure 5. Photographs of live Pteropoda species: (a) Creseis virgula. (b) Hyalocylis striata. (c) Peracle reticulata. (d) Pneumodermopsis canephora. Runcinida: (e) Runcina ornata. Sacoglossa: (f) Aplysiopsis elegans. (g) Caliphylla mediterránea. (h) Cyerce graeca.
Figure 1 in Sea slug night fever: 39 new records of elusive heterobranchs in the western Mediterranean (Mollusca: Gastropoda)
Figure 1. Distribution map of the western Mediterranean coast showing the main sampling stations. There should be only one image, currently there is a duplicate
FIGURE 4 in Morphological diversification of alien and native aquatic snails of the genus Physa and Aplexa (Gastropoda: Physidae) of Western and Central European range
FIGURE 4. Ranges of occurrence of species of the family Physidae. 1—P. acuta, 2—A. hypnorum, 3—P. gyrina, 4—P. fontinalis (Feliksiak 1939; Adam 1960; Backhuys 1975, Vidal Abarca & Suarez 1986; Lisický 1991; Anderson 1996, 1997;Turner et al. 1998; Cossignani & Cossignani 1995; Kerney 1999; Anderson 2003; Beran 2004; Bank 2006; Yildirim et al. 2006; Son 2007; Horsȃk et al. 2010; Glöer & Diercking 2010; CABI Data Mining 2011; Bódis et al. 2012; Laenko 2012; Van Damme et al. 2012; Welter-Schultes 2012; Glöer 2015; Vinarski et al. 2015; Raković et al. 2016; Piechocki & Wawrzyniak-Wydrowska 2016; Moroz et al. 2017; Cieplok & Spyra 2020; www.faunaeuropea.org; http://www.animalbase.uni-goettingen.de).
FIGURE 7 in Morphological diversification of alien and native aquatic snails of the genus Physa and Aplexa (Gastropoda: Physidae) of Western and Central European range
FIGURE 7. Characteristic features of P. gyrina with special emphasis on the white lip (10.18150/WOIHYB) (Phot. M. Gawlak).
FIGURE 3 in Morphological diversification of alien and native aquatic snails of the genus Physa and Aplexa (Gastropoda: Physidae) of Western and Central European range
FIGURE 3. Scanning electron microscopy image of A. hypnorum shell (10.18150/UFOMHM) A, B—front (with visible lip) and back side of the shell, C—projecting lamellar crystals on the lip (Phot. A—C M. Gawlak).
FIGURE 2 in Morphological diversification of alien and native aquatic snails of the genus Physa and Aplexa (Gastropoda: Physidae) of Western and Central European range
FIGURE 2. Scanning electron micrographs of the shell apex of Physidae (10.18150/FIZSWX) Horizontally: A—P. acuta (subsidence ponds); B—A. hypnorum (anthropogenic ponds, Poland); C—P. fontinalis (Nida River, Poland); D—P. gyrina (Ireland, The Argory- ditch and Sandy Bay L Neagh; Wales, Gwent Levels in pond in flood plain (l. Killen); E- Apex of the small (young) specimens—1—P. acuta, 2—A. hyponorum, 3—P. fontinalis, 4—P. gyrina (Phot. A–E M. Gawlak).
FIGURE 1 in Morphological diversification of alien and native aquatic snails of the genus Physa and Aplexa (Gastropoda: Physidae) of Western and Central European range
FIGURE 1. Physidae of Western and Central Europe (10.18150/YPDFJU)—general shell morphology A—Physa acuta (Phot. M. Kanturski), B—Aplexa hypnorum, C—Physa fontinalis, D—Physa gyrina; 1—front side of the shell, 2—shell from the side view, 3—back side of the shell (Phot. B–D A. Cieplok, A. Spyra).
FIGURE 6. P in Morphological diversification of alien and native aquatic snails of the genus Physa and Aplexa (Gastropoda: Physidae) of Western and Central European range
FIGURE 6. P. acuta shell features (SEM) (10.18150/G6UWMN); in which the sutural belts are visible (A), the structure of a white lip (B) with characteristic projecting lamellar crystals (C) is indicated by an arrow (Phot. A–C M. Gawlak), (D) a view of the lip visible under the stereoscopic microscope (Phot. M. Kanturski).
FIGURE 8 in Morphological diversification of alien and native aquatic snails of the genus Physa and Aplexa (Gastropoda: Physidae) of Western and Central European range
FIGURE 8. Correspondence Analysis (CA) diagram for the Physidae species; 1—Whorl convexity, 2—Spire, 3—Shell thickness, 4—Thickened appendages, 5—Shell shine, 6—Shell width and height ratio, 7—Aperture height, 8—Shell height, 9—Lip, 10—Apex, 11—Shell width, 12—Aperture width, 13—Spire height.
FIGURE 3 in A new freshwater snail genus and species (Gastropoda: Caenogastropoda, Cochliopidae) with extremely spinous shells from sub-recent spring deposits in northeastern Mexico
FIGURE 3. SEM images of Spinopyrgus luismaedai n. gen. et n. sp. (L–P). L. Specimen (UJMC-255) from El Molino spring with strong spines. M. Specimen (UJMC-255) apical view. N. Specimen (UJMC-256), protoconch. O. Specimen (UJMC-255), details of the strong axial elements of the body whorl. P. Specimen (UJMC-256) from Juan Guerra spring, protoconch. Q-T. Pyrgophorus parvulus (Guilding) from Río Sabinas, Coahuila, Mexico (from Czaja et al. 2022, Fig. 5A). Q, R. Specimen (UJMC 460a) from Río Sabinas from both sides. S. Same specimen with details of the spiral elements of the body whorl. T. Same specimen (UJMC 460a), protoconch.
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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.