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Fig. 3 in Circulation Pathways Of Trematodes Of Freshwater Gastropod Mollusks In Forest Biocenoses Of The Ukrainian Polissia
Fig. 3. Three-host life cycle of trematodes: А — second intermediate hosts are aquatic invertebrates; В — second intermediate hosts are amphibiontic invertebrates; С — second intermediate hosts are vertebrates; а — alternation hosts; b — biological structure of helminth fauna.
Figs 2–8 in A New Freshwater Gastropod Species Of The Genus Pseudamnicola Paulucci, 1878 From Algeria (Gastropoda: Hydrobiidae)
Figs 2–8. Pseudamnicola thawintae sp. n.: 2 = holotype, shell; 3–4 = penis in situ; 5–8 = paratypes, shells
Fig. 1. A in Some New Records Of Marine Gastropod From The Iraqi Coast
Fig. 1. A — Turritella cochlea Reeve, 1849; B — Rhinoclavis fasciata (Bruguière, 1792); C — Semiricinula
Рис. 8. Фрагменты раковин пресноводных моллюсков иЗ раскопов поселениЯ Константиновка-1: А, B – створка жемчужницы иЗ раскопа 1, вид снаружи и иЗнутри; C–E – створки жемчужниц Dahurinaia dahurica иЗ раскопа 2; F, G – фрагмент раковины гастроподы иЗ раскопа 2, вид с раЗных ракурсов. Масштабные линейки 2 см. Fig. 8. Fragments of freshwater mollusk shells from the Konstantinovka-1 site excavations: A, B – pearl mussel Dahurinaia dahurica from excavation 1, the inner and outer views; C–E – pearl mussel Dahurinaia dahurica from excavation 2; F, G – fragment of a gastropod shell from excavation 2, view from different angles. Scale bars 2 cm. in Mollusks from the archaeological site Konstantinovka-1 in Primorye (Russian Far East)
Рис. 8. Фрагменты раковин пресноводных моллюсков иЗ раскопов поселениЯ Константиновка-1: А, B – створка жемчужницы иЗ раскопа 1, вид снаружи и иЗнутри; C–E – створки жемчужниц Dahurinaia dahurica иЗ раскопа 2; F, G – фрагмент раковины гастроподы иЗ раскопа 2, вид с раЗных ракурсов. Масштабные линейки 2 см. Fig. 8. Fragments of freshwater mollusk shells from the Konstantinovka-1 site excavations: A, B – pearl mussel Dahurinaia dahurica from excavation 1, the inner and outer views; C–E – pearl mussel Dahurinaia dahurica from excavation 2; F, G – fragment of a gastropod shell from excavation 2, view from different angles. Scale bars 2 cm.
Рис. 4. Частота встречаемости водных брюхоногих моллюсков Калининградской области (%). Fig. 4. The occurrence frequency of gastropods of Kaliningrad Region (%). in Spatial distribution of gastropods (Mollusca: Gastropoda) from the Kaliningrad Region (Russia) water bodies
Рис. 4. Частота встречаемости водных брюхоногих моллюсков Калининградской области (%). Fig. 4. The occurrence frequency of gastropods of Kaliningrad Region (%).
Рис. 3. Buccinum pemphigus на дне (ст. 13, гл. 778 м). Fig. 3. Buccinum pemphigus on the bottom (st. 13, depth 778 m). in Rare and interesting deep-sea finds of the buccinid gastropods (Gastropoda: Buccinidae) from the Sea of Okhotsk
Рис. 3. Buccinum pemphigus на дне (ст. 13, гл. 778 м). Fig. 3. Buccinum pemphigus on the bottom (st. 13, depth 778 m).
Рис. 1. Места отбора проб телеуправлЯемым подводным аппаратом в Охотском море. Fig. 1. The map of the studied area in the Sea of Okhotsk. in Rare and interesting deep-sea finds of the buccinid gastropods (Gastropoda: Buccinidae) from the Sea of Okhotsk
Рис. 1. Места отбора проб телеуправлЯемым подводным аппаратом в Охотском море. Fig. 1. The map of the studied area in the Sea of Okhotsk.
Рис. 2. A – Ancistrolepis grammatus (Dall, 1907): высота 81.5 мм, MIMB 28439; B – Buccinum kinukatsugi Habe et Ito, 1968: высота 53.6 мм, MIMB 28438; C – Buccinum pemphigus Dall, 1907: высота 92.5 мм, MIMB 28431; D – Neptunea insularis (Dall, 1895): высота 102.2 мм, MIMB 28436; E – Neptunea intersculpta (Sowerby, 1899): высота 151.0 мм, MIMB 28437; F – Neptunea convexa Goryachev, 1987: высота 117.3 мм, MIMB 28441; G – Latisipho siphonoides (Dall, 1913): высота 10.0 мм, MIMB 28440; H – Lussivolutopsius memmi Kantor, 1990: высота, 70.0 мм, MIMB 28443. Fig. 2. A – Ancistrolepis grammatus (Dall, 1907): shell height 81.5 мм, MIMB 28439; B – Buccinum kinukatsugi Habe et Ito, 1968: shell height 53.6 мм, MIMB 28438; C – Buccinum pemphigus Dall, 1907: shell height 92.5 мм, MIMB 28431; D – Neptunea insularis (Dall, 1895): shell height 102.2 мм, MIMB 28436; E – Neptunea intersculpta (Sowerby, 1899): shell height 151.0 мм, MIMB 28437; F – Neptunea convexa Goryachev, 1987: shell height 117.3 мм, MIMB 28441; G – Latisipho siphonoides (Dall, 1913): shell height 10.0 мм, MIMB 28440; H – Lussivolutopsius memmi Kantor, 1990: shell height, 70.0 мм, MIMB 28443. in Rare and interesting deep-sea finds of the buccinid gastropods (Gastropoda: Buccinidae) from the Sea of Okhotsk
Рис. 2. A – Ancistrolepis grammatus (Dall, 1907): высота 81.5 мм, MIMB 28439; B – Buccinum kinukatsugi Habe et Ito, 1968: высота 53.6 мм, MIMB 28438; C – Buccinum pemphigus Dall, 1907: высота 92.5 мм, MIMB 28431; D – Neptunea insularis (Dall, 1895): высота 102.2 мм, MIMB 28436; E – Neptunea intersculpta (Sowerby, 1899): высота 151.0 мм, MIMB 28437; F – Neptunea convexa Goryachev, 1987: высота 117.3 мм, MIMB 28441; G – Latisipho siphonoides (Dall, 1913): высота 10.0 мм, MIMB 28440; H – Lussivolutopsius memmi Kantor, 1990: высота, 70.0 мм, MIMB 28443. Fig. 2. A – Ancistrolepis grammatus (Dall, 1907): shell height 81.5 мм, MIMB 28439; B – Buccinum kinukatsugi Habe et Ito, 1968: shell height 53.6 мм, MIMB 28438; C – Buccinum pemphigus Dall, 1907: shell height 92.5 мм, MIMB 28431; D – Neptunea insularis (Dall, 1895): shell height 102.2 мм, MIMB 28436; E – Neptunea intersculpta (Sowerby, 1899): shell height 151.0 мм, MIMB 28437; F – Neptunea convexa Goryachev, 1987: shell height 117.3 мм, MIMB 28441; G – Latisipho siphonoides (Dall, 1913): shell height 10.0 мм, MIMB 28440; H – Lussivolutopsius memmi Kantor, 1990: shell height, 70.0 мм, MIMB 28443.
Fig. 1 in Molecular detection of Angiostrongylus vasorum in gastropods in Surrey, UK
Fig. 1 Neighbour joining tree based on cytochrome oxidase I (COI) sequences representing all clades of the Agriolimacidae family. Values next to branches indicate percentage bootstrap support. The asterisk (*) indicates the Agriolimacidae specimen collected in this study
Fig. 5 in Reproductive behavior of the marine gastropod Charonia seguenzae (Aradas & Benoit, 1870) in captivity Abstract
Fig. 5: A) Female depositing egg capsules. B) Female cleaning egg capsules with its proboscis. C) Male (upper) copulating with a female that deposited capsules (bottom). D) Female (left) and the male (right) laying on the egg capsules. E) Male alone on egg capsules. F) Male cleaning egg capsules with its proboscis.
Fig. 3 in Reproductive behavior of the marine gastropod Charonia seguenzae (Aradas & Benoit, 1870) in captivity Abstract
Fig. 3: A) Simultaneous copulation of one female Charonia seguenzae (♀) with two males (♂). B) Closer view of the male penises (indicated with arrows) inserted into the female mantle cavity.
Fig. 2 in Reproductive behavior of the marine gastropod Charonia seguenzae (Aradas & Benoit, 1870) in captivity Abstract
Fig. 2: A) Copulation of Charonia seguenzae: Female - bottom left, male - upper right. B) Copulation of a male Charonia seguenzae with a female that had already deposited egg capsules.
Fig. 10 in On Triassic Murchisonia-like gastropods-surviving the end-Permian extinction to become extinct in the Late Triassic
Fig. 10. Goniasmatid? caenogastropod Wortheniopsis quirini (Stoppani, 1860), Ladinian, Marmolada Limestone, Italy. A. NHMW 1969/1102/0000/1, original of Koken (1899, pl. 1: 14), in lateral view (A1), detail of last preserved whorl in lateral view (A2). B. NHMW 1969/1102/0000/2, original of Koken (1899: pl. 1: 15), in lateral view (B1), detail of last preserved whorl in lateral view (B2). C. NHMW 2019/0177/0020, juvenile specimen, in lateral (C1) and oblique lateral (C2) views.
Fig. 8 in On Triassic Murchisonia-like gastropods-surviving the end-Permian extinction to become extinct in the Late Triassic
Fig. 8. Goniasmatid caenogastropod Altadema kokeni (Wittenburg, 1908a) and others, Dienerian/Smithian transition, Lower Triassic, Werfen Formation, Gastropod Oolite Member, Italy. A. Crack surface of Gastropod Oolite, near Borgo, Valsugana, Italy, ("Monte Zaccon" locality of Wittenburg 1908b); gastropods (Altadema kokeni and "Polygyrina gracilior") as well as other clasts covered with iron oxide; Wittenburg's (1908a, b) material, collection of University of Tübingen (Nützel and Schulbert 2005: fig. 15). B. Altdema kokeni (Wittenburg, 1908a), GPIT-PV-108710, holotype, and original of Wittenburg (1908a: pl. 5: 9, 10), Col di Rodella, in lateral view, not covered by ammonium chloride to show reddish color (B1), detail of last whorl in lateral view to show adapical sinus of growth lines (B2), in lateral view (B3). C. Original drawing of Altdema kokeni from Wittenburg (1908a).
Fig. 7 in On Triassic Murchisonia-like gastropods-surviving the end-Permian extinction to become extinct in the Late Triassic
Fig. 7. Goniasmatid caenogastropod Altadema hausmannae sp. nov., Dienerian/Smithian transition, Lower Triassic, Werfen Formation, Gastropod Oolite Member, Italy. A. MUSE-PAL 8176, holotype, lateral view. B. MUSE-PAL 8177, paratype, lateral view. C. MUSE-PAL 8178, paratype, in lateral view. D. MUSE-PAL 8179, paratype, in lateral view. E. MUSE-PAL 8180, paratype, in lateral view (E1), detail (E2). F. MUSE-PAL 8181, paratype, in lateral view. G. MUSE-PAL 8182, paratype, in lateral view (G1), detail (G2). H. MUSE-PAL 8183, paratype, detail to show slit-band, in oblique lateral view (H1) and specimen in lateral view (H2). I. MUSE-PAL 8184, paratype, in lateral view. J. MUSE-PAL 8185, paratype, in apertural (J1) and lateral (J2) views.
Fig. 11 in On Triassic Murchisonia-like gastropods-surviving the end-Permian extinction to become extinct in the Late Triassic
Fig. 11. Goniasmatid? caenogastropod Wortheniopsis acuta (Nützel, Kaim, and Gradinaru, 2018) comb. nov., Anisian, Romania. A. SNSB-BSPG 2015 VI 32, holotype, in lateral view (A1,A2), detail of last preserved whorl in lateral view (A3).
Fig. 9 in On Triassic Murchisonia-like gastropods-surviving the end-Permian extinction to become extinct in the Late Triassic
Fig. 9. Goniasmatid? caenogastropod Wortheniopsis margarethae (Kittl, 1894), Ladinian, Marmolada Limestone, Italy. A. NHMW 1884/0006/0872/1, in lateral (A1) and apertural (A3) views, detail of last preserved whorl in lateral view (A2) to show growth lines (course indicated with dashed line). B. NHMW 1884/0006/0872/2, in lateral view (B1), detail of last preserved whorl in lateral view (B2).
Fig. 4 in On Triassic Murchisonia-like gastropods-surviving the end-Permian extinction to become extinct in the Late Triassic
Fig. 4. Goniasmatid caenogastropod Cheilotomona blumi (Wissmann in Münster, 1841), Carnian, St. Cassian Formation, Italy. A. MB.Ga.4307.2, in lateral view (A1), early whorls in lateral view (A2), detail of whorl face with selenizone (slit-band) on crest in lateral view (A3). B. MB.Ga.4304.1, in lateral view (B1), early whorls including smooth protoconch in lateral view (B2), early whorls including smooth protoconch in oblique lateral view (B3).
Fig. 3. Goniasmatid caenogastropod Pseudomurchisonia insueta Koken, 1896 in On Triassic Murchisonia-like gastropods-surviving the end-Permian extinction to become extinct in the Late Triassic
Fig. 3. Goniasmatid caenogastropod Pseudomurchisonia insueta Koken, 1896, Carnian, Feuerkogel, Austria. A. NHMW 1926/0002/0461, in lateral view A1), detail of spire whorls in lateral view showing lack of selenizone in adapical whorl, and beginning of selenizone in abapical whorl (A2), detail of last part of last preserved whorl with fully developed selenizone (slit-band) in lateral (A3) and apertural lateral (A4) views, detail of last preserved whorl in lateral view (A5).
Fig. 2 in On Triassic Murchisonia-like gastropods-surviving the end-Permian extinction to become extinct in the Late Triassic
Fig. 2. Goniasmatid caenogastropod Laschmaspira lirata sp. nov., Carnian, Feuerkogel, Austria. A. NHMW 2023/0080/0002, paratype, in lateral view A1), early whorls in lateral (A2), oblique lateral (A3), and apical (A4, A5) views. B. NHMW 2023/0080/0003, paratype, in lateral view (B1), detail of whorl face with selenizone (slit-band) and ornamentation of spiral lirae in oblique lateral (B2) and lateral (B3) views.
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