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Рис. 4. Смешанный лес в месте обитаниЯ Eostrobilops coreana в северной части п-ова Песчаный. Фото Л.А. ПроЗоровой, 1.11.2020 г. in On the distribution and ecology of a rare land snail, Eostrobilops coreana (Pilsbry, 1927) (Gastropoda: Pulmonata: Strobilopsidae)
Рис. 4. Смешанный лес в месте обитаниЯ Eostrobilops coreana в северной части п-ова Песчаный. Фото Л.А. ПроЗоровой, 1.11.2020 г.
Рис. 2. ИЗвестные местообитаниЯ улитки Eostrobilops coreana: 1 – СевернаЯ КореЯ, окрестности ПхеньЯна; 2 – СевернаЯ КореЯ, Канвондо, хребет Кымгансан; 3 – ЮЖнаЯ КореЯ, Чхунчхон-Пукто, окрестности г. ТанЯн; 4 – ЮЖнаЯ КореЯ, Канвондо, окрестности д. Синчервон; 5 – Приморский край, Заповедник КедроваЯ падь; 6 – Приморский край, хребет ЛоЗовый, пеЩера МедвеЖий Клык; 7 – Приморский край, п-ов Песчаный. Условные обоЗначениЯ: Зеленый цвет – леса раЗличной плотности, красный – урбаниЗированные территории, Желтый – сельскохоЗЯйственные Земли (по: Jakub [2018]). in On the distribution and ecology of a rare land snail, Eostrobilops coreana (Pilsbry, 1927) (Gastropoda: Pulmonata: Strobilopsidae)
Рис. 2. ИЗвестные местообитаниЯ улитки Eostrobilops coreana: 1 – СевернаЯ КореЯ, окрестности ПхеньЯна; 2 – СевернаЯ КореЯ, Канвондо, хребет Кымгансан; 3 – ЮЖнаЯ КореЯ, Чхунчхон-Пукто, окрестности г. ТанЯн; 4 – ЮЖнаЯ КореЯ, Канвондо, окрестности д. Синчервон; 5 – Приморский край, Заповедник КедроваЯ падь; 6 – Приморский край, хребет ЛоЗовый, пеЩера МедвеЖий Клык; 7 – Приморский край, п-ов Песчаный. Условные обоЗначениЯ: Зеленый цвет – леса раЗличной плотности, красный – урбаниЗированные территории, Желтый – сельскохоЗЯйственные Земли (по: Jakub [2018]).
Figure 1 in Partula desolata sp. nov. (Pulmonata: Partulidae), an extinct land snail from Rota, Mariana Islands, Micronesia
Figure 1. Map of the Mariana Islands with islands mentioned in the text labeled and a map of Rota showing approximate locations of the collecting sites (see text for coordinates).
Figure 2 in Partula desolata sp. nov. (Pulmonata: Partulidae), an extinct land snail from Rota, Mariana Islands, Micronesia
Figure 2. Partula desolata Bauman & Kerr, sp. nov. Holotype, BPBM 252143-A, Payapai Cave, Alaguan region, Rota Island, Mariana Islands. Scale bar = 10 mm. A.–C. Apertural, adapertural, apical views, respectively. D. Slightly oblique basal view exposing the umbilical pit and a thickened and reflexed, but damaged, basal peristome.
Figure 3 in Partula desolata sp. nov. (Pulmonata: Partulidae), an extinct land snail from Rota, Mariana Islands, Micronesia
Figure 3. Comparison of Partula desolata sp. nov. to P. gibba and P. thalia, showing disparity in size and development of peristome. Scale bar = 10 mm. P. desolata sp. nov., Rota, Mariana Islands, paratypes: A. UGI 3001, B. UF 449332 and C. UF 449333. D. P. gibba, Rota, UF 449334. E. P. thalia, Raiatea, Society Islands, UF 112145.
Fig. 2 in The local forms of Zootecus (Gastropoda: Pulmonata: Subulinidae) of Pakistan: an archaeomalacological case study
Fig. 2 - WP 199, N 25 44. 760 E 66 37.190 with Zootecus shells emerging from sediments (photo by P. Biagi, R. Nisbet, A. Girod).
Fig. 5 in The local forms of Zootecus (Gastropoda: Pulmonata: Subulinidae) of Pakistan: an archaeomalacological case study
Fig. 5 - Rohri Hills, site 59. Section through the deposits: a) Zootecus sp. shells (modified from Biagi & Pessina. 1994).
Fig. 1 in The local forms of Zootecus (Gastropoda: Pulmonata: Subulinidae) of Pakistan: an archaeomalacological case study
Fig. 1 - Left: map of Pakistan with the areas of the studied sites. A) Balochistan, sites WP16, WP 31, Uthal. B) Upper Sindh, Rohri Hills, site 59, site 480. Right: satellite view of the area of Balochistan, South of Uthal with location of the Lake Siranda and the lagoon of Miani Hor.
Fig. 11 in The local forms of Zootecus (Gastropoda: Pulmonata: Subulinidae) of Pakistan: an archaeomalacological case study
Fig. 11 - Comparison between the linear regression of the five samples and the shapes described in the past literature. 1) Z. pullus. 2) Z. chion gracilor minor. 3) Z. insularis chion. 4) Z. polygyratus. 5) Z. chion. 6) Z. chion from Hyderabad. 7) Z. agrensis. 8) Z. estellus. 9) Z. pertica.
Fig. 4 in The local forms of Zootecus (Gastropoda: Pulmonata: Subulinidae) of Pakistan: an archaeomalacological case study
Fig. 4 - Left: view of shell heaps. WP 16, Zootecus sp. with fresh-water malacofauna. Right: WP 31, shells of Zootecus sp. only (photo by A. Girod).
Fig. 9 in The local forms of Zootecus (Gastropoda: Pulmonata: Subulinidae) of Pakistan: an archaeomalacological case study
Fig. 9 - Linear regression analyses of the height - diameter relationships in the samples; x-axis = diameter in mm; y-axis = height in mm.
Fig. 3 in The local forms of Zootecus (Gastropoda: Pulmonata: Subulinidae) of Pakistan: an archaeomalacological case study
Fig. 3 - Hills around the River Windar and some living specimens of Zootecus cfr. insularis (photo by A. Girod).
Fig. 4 in A comprehensive phylogeographic study of Arion vulgaris Moquin-Tandon, 1855 (Gastropoda: Pulmonata: Arionidae) in Europe
Fig. 4 Haplotype diversity for COI (a) and ZF (b) markers calculated for all localities of A. vulgaris with sample size larger or equal to two individuals against latitude and longitude. The larger bubble size, the higher haplotype diversity was observed at a particular locality
Fig. 3 in A comprehensive phylogeographic study of Arion vulgaris Moquin-Tandon, 1855 (Gastropoda: Pulmonata: Arionidae) in Europe
Fig. 3 Haplotype median joining network of the nuclear DNA haplotypes of A. vulgaris. Haplotypes are represented by circles, the size of which is proportional to the number of populations in which a particular haplotype is present. Populations are listed in Table 6 (Supplementary Materials). Haplotypes are 1 to 24; circles without a number indicate a hypothetical intermediate haplotype linking observed haplotypes. Hatch marks in the network represent single mutations
Figs. 6–10. 6. Cerithium magnum Jay, 1836 in Catalog Of Recent Type Specimens In The Division Of Invertebrate Zoology, American Museum Of Natural History. V. Mollusca, Part 2 (Class Gastropoda [Exclusive Opisthobranchia And Pulmonata With Supplements To Gastropoda [Opisthobranchia], And Bivalvia
Figs. 6–10. 6. Cerithium magnum Jay, 1836 (lectotype—AMNH 56067), X 0.75. 7. Conus Bernardi and Crosse, 1861 (syntype—AMNH 47629), X 1.75. 8. Conus pseudoaustini Usticke, (holotype—AMNH 195452), X 2. 9. Cyclostoma maculosa Jay, 1839 (syntype—AMNH 56086), 10. Cyclostoma multilineata Jay, 1839 (syntype—AMNH 56087), X 2.6.
Figs 6―10 in Two new species of the genus Boysidia from China, with a preliminary discussion of its geography (Pulmonata: Stylommatophora: Pupillidae)
Figs 6―10. Boysidia (Boysidia) xiaoguanensis sp. nov. 6. Apertural view. 7. Right-lateral view. 8. Left-lateral view. 9. Umbilical view. 10. Aperture enlarged. Scale bars: 6―9 = 1 mm, 10 = 0.5 mm. Abbreviations: Par = parietal tooth; Col = columellar tooth; UPal = upper palatal tooth; LPal = lower palatal tooth.
Figs 1–5 in Two new species of the genus Boysidia from China, with a preliminary discussion of its geography (Pulmonata: Stylommatophora: Pupillidae)
Figs 1–5. Boysidia (Boysidia) xianfengensis sp. nov. 1. Apertural view. 2. Right-lateral view. 3. Left-lateral view. 4. Umbilical view. 5. Aperture enlarged. Scale bars: 1―4 = 1 mm, 5 = 0.5 mm. Abbreviations: Par = parietal tooth; Col = columellar tooth; UPal = upper palatal tooth; LPal = lower palatal tooth; IPal = infrapalatal tooth.
Рис. 5. Варианты преΑсказанной Αоменной структуры скавенΑжер-рецепторов гемоцитов моΛΛюсков Planorbarius corneus. Сокращения (зΑесь и ΑаΛее): SR — богатый цистеином Αомен скавенΑжер-рецептора, Filament — Αомен промежуточного фиΛамента, TSP1 — повторы тромбоспонΑина типа 1, KR — крингΛ-Αомен, LDLa — Αомен рецептора Λипопротеинов низкой пΛотности кΛасса А Fig. 5. Variants of the predicted domain structure of scavenger receptors from hemocytes of Planorbarius corneus molluscs. Abbreviations (here and in what follows): SR — scavenger receptor Cys-rich domain, Filament — intermediate filament protein, TSP1 — thrombospondin type 1 repeats, KR — kringle domain, LDLa — low-density lipoprotein receptor domain class A in Pathogen recognition molecules from hemocytes of Planorbarius corneus molluscs (Planorbidae, Pulmonata)
Рис. 5. Варианты преΑсказанной Αоменной структуры скавенΑжер-рецепторов гемоцитов моΛΛюсков Planorbarius corneus. Сокращения (зΑесь и ΑаΛее): SR — богатый цистеином Αомен скавенΑжер-рецептора, Filament — Αомен промежуточного фиΛамента, TSP1 — повторы тромбоспонΑина типа 1, KR — крингΛ-Αомен, LDLa — Αомен рецептора Λипопротеинов низкой пΛотности кΛасса А Fig. 5. Variants of the predicted domain structure of scavenger receptors from hemocytes of Planorbarius corneus molluscs. Abbreviations (here and in what follows): SR — scavenger receptor Cys-rich domain, Filament — intermediate filament protein, TSP1 — thrombospondin type 1 repeats, KR — kringle domain, LDLa — low-density lipoprotein receptor domain class A
Рис. 2. Варианты преΑсказанной Αоменной структуры патогенраспознающих моΛекуΛ гемоцитов моΛΛюсков Planorbarius corneus. a — фибриногенпоΑобные беΛки, b — гаΛектины, c — F-Λектины. УсΛовные обозначения и сокращения, зΑесь и ΑаΛее: горизонтаΛьные красные поΛоски — сигнаΛьный пептиΑ, горизонтаΛьные розовые — обΛасть низкой сΛожности, вертикаΛьные синие поΛоски — трансмембранная обΛасть, FBG — фибриногеновый Αомен, FTP — Αомен фукоΛектина, EGF — Αомен эпиΑермаΛьного фактора роста, EGF_CA — каΛьцийсвязывающий EGF-поΑобный Αомен, PAN_AP — APPLE-поΑобный Αомен, SCAN — обΛасть, богатая Λейцином, GLECT — гаΛактозосвязывающий Λектин, CLECT — Λектин C-типа, Gal-bind — гаΛактозиΑ–связывающий Λектин, ML — MD-2- поΑробный Αомен распознавания ΛипиΑов Fig. 2. Variants of the predicted domain structure of pattern recognition molecules from hemocytes of Planorbarius corneus molluscs. a — fibrinogen-related proteins, b — galectins, c — F-lectins. Symbols and abbreviations (here and further): horizontal red stripes — signal peptide, horizontal pink stripes — a low complexity region, vertical blue stripes — transmembrane region, FBG — fibrinogen-related domain, FTP — fucolectin domain, EGF — epidermal growth factor-like domain, EGF_CA — calcium-binding EGF-like domain, PAN_AP — APPLE-like domain, SCAN — leucine rich region, Apple — APPLE domain, GLECT — galactose-binding lectin, CLECT — C-type lectin, Gal-bind — galactoside-binding lectin, ML — MD-2-related lipid-recognition domain in Pathogen recognition molecules from hemocytes of Planorbarius corneus molluscs (Planorbidae, Pulmonata)
Рис. 2. Варианты преΑсказанной Αоменной структуры патогенраспознающих моΛекуΛ гемоцитов моΛΛюсков Planorbarius corneus. a — фибриногенпоΑобные беΛки, b — гаΛектины, c — F-Λектины. УсΛовные обозначения и сокращения, зΑесь и ΑаΛее: горизонтаΛьные красные поΛоски — сигнаΛьный пептиΑ, горизонтаΛьные розовые — обΛасть низкой сΛожности, вертикаΛьные синие поΛоски — трансмембранная обΛасть, FBG — фибриногеновый Αомен, FTP — Αомен фукоΛектина, EGF — Αомен эпиΑермаΛьного фактора роста, EGF_CA — каΛьцийсвязывающий EGF-поΑобный Αомен, PAN_AP — APPLE-поΑобный Αомен, SCAN — обΛасть, богатая Λейцином, GLECT — гаΛактозосвязывающий Λектин, CLECT — Λектин C-типа, Gal-bind — гаΛактозиΑ–связывающий Λектин, ML — MD-2- поΑробный Αомен распознавания ΛипиΑов Fig. 2. Variants of the predicted domain structure of pattern recognition molecules from hemocytes of Planorbarius corneus molluscs. a — fibrinogen-related proteins, b — galectins, c — F-lectins. Symbols and abbreviations (here and further): horizontal red stripes — signal peptide, horizontal pink stripes — a low complexity region, vertical blue stripes — transmembrane region, FBG — fibrinogen-related domain, FTP — fucolectin domain, EGF — epidermal growth factor-like domain, EGF_CA — calcium-binding EGF-like domain, PAN_AP — APPLE-like domain, SCAN — leucine rich region, Apple — APPLE domain, GLECT — galactose-binding lectin, CLECT — C-type lectin, Gal-bind — galactoside-binding lectin, ML — MD-2-related lipid-recognition domain
Рис. 8. ОтноситеΛьная преΑставΛенность транскриптов патогенраспознающих рецепторов в гемоцитах моΛΛюсков Planorbarius corneus, заражённых трематоΑами Bilharziella polonica (I) и незаражённых особей (N) Fig. 8. Relative number of transcripts of pattern recognition receptors from hemocytes of Planorbarius corneus molluscs infected with Bilharziella polonica trematodes (I) and uninfected individuals (N) in Pathogen recognition molecules from hemocytes of Planorbarius corneus molluscs (Planorbidae, Pulmonata)
Рис. 8. ОтноситеΛьная преΑставΛенность транскриптов патогенраспознающих рецепторов в гемоцитах моΛΛюсков Planorbarius corneus, заражённых трематоΑами Bilharziella polonica (I) и незаражённых особей (N) Fig. 8. Relative number of transcripts of pattern recognition receptors from hemocytes of Planorbarius corneus molluscs infected with Bilharziella polonica trematodes (I) and uninfected individuals (N)
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.