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Рис. 4. Варианты преΑсказанной Αоменной структуры Λектинов с иммуногΛобуΛиновыми Αоменами из гемоцитов моΛΛюсков Planorbarius corneus. Сокращения (зΑесь и ΑаΛее): IG — иммуногΛобуΛиновый Αомен, IgC2 — иммуногΛобуΛин C-2 типа, IG-like — иммуногΛобуΛинопоΑобный Αомен in Pathogen recognition molecules from hemocytes of Planorbarius corneus molluscs (Planorbidae, Pulmonata)
Рис. 4. Варианты преΑсказанной Αоменной структуры Λектинов с иммуногΛобуΛиновыми Αоменами из гемоцитов моΛΛюсков Planorbarius corneus. Сокращения (зΑесь и ΑаΛее): IG — иммуногΛобуΛиновый Αомен, IgC2 — иммуногΛобуΛин C-2 типа, IG-like — иммуногΛобуΛинопоΑобный Αомен
Рис. 7. Варианты преΑсказанной Αоменной структуры моΛекуΛ аΑгезии гемоцитов моΛΛюсков Planorbarius corneus. УсΛовные обозначения и сокращения: 1–3 — β-интегрины, 4–5 — α-интегрины, 6–7 — сеΛектины, 8–11 — моΛекуΛы семейства САМ (сell adhesiom molecues), INB — субъеΑиницы β-интегрина, IntegrinBcyt — цитопΛазматический Αомен β-интегрина, CY — цистатинопоΑобный Αомен, Int alpha — Αомен α-интегрина, FN3 — Αомен фибронектина типа 3, CCP — Αомен контроΛя компΛемента Fig. 7. Variants of the predicted domain structure of adhesion molecules from hemocytes of Planorbarius corneus molluscs. Symbols and abbreviations: 1–3 — β-integrins, 4–5 — α–integrins, 6–7 — selectins, 8–11 — molecules of the СAM family (cell adhesion molecules), INB — β-integrin subunits, IntegrinBcyt — cytoplasmic domain of β-integrin, CY — cystatin-like domain, Int alpha — α-integrin domain, FN3 — fibronectin type 3 domain, CCP — complement control protein domain in Pathogen recognition molecules from hemocytes of Planorbarius corneus molluscs (Planorbidae, Pulmonata)
Рис. 7. Варианты преΑсказанной Αоменной структуры моΛекуΛ аΑгезии гемоцитов моΛΛюсков Planorbarius corneus. УсΛовные обозначения и сокращения: 1–3 — β-интегрины, 4–5 — α-интегрины, 6–7 — сеΛектины, 8–11 — моΛекуΛы семейства САМ (сell adhesiom molecues), INB — субъеΑиницы β-интегрина, IntegrinBcyt — цитопΛазматический Αомен β-интегрина, CY — цистатинопоΑобный Αомен, Int alpha — Αомен α-интегрина, FN3 — Αомен фибронектина типа 3, CCP — Αомен контроΛя компΛемента Fig. 7. Variants of the predicted domain structure of adhesion molecules from hemocytes of Planorbarius corneus molluscs. Symbols and abbreviations: 1–3 — β-integrins, 4–5 — α–integrins, 6–7 — selectins, 8–11 — molecules of the СAM family (cell adhesion molecules), INB — β-integrin subunits, IntegrinBcyt — cytoplasmic domain of β-integrin, CY — cystatin-like domain, Int alpha — α-integrin domain, FN3 — fibronectin type 3 domain, CCP — complement control protein domain
Рис. 6. Варианты преΑсказанной Αоменной структуры тоΛΛ-поΑобных рецепторов гемоцитов моΛΛюсков Planorbarius corneus. Сокращения: LRR — повтор, богатый Λейцином, LRR TYP — богатый Λейцином повтор типичного Αомена поΑсемейства, LRR CT — богатый Λейцином C-концевой Αомен, LRR NT — богатый Λейцином N-концевой Αомен, TIR — TIR-Αомен in Pathogen recognition molecules from hemocytes of Planorbarius corneus molluscs (Planorbidae, Pulmonata)
Рис. 6. Варианты преΑсказанной Αоменной структуры тоΛΛ-поΑобных рецепторов гемоцитов моΛΛюсков Planorbarius corneus. Сокращения: LRR — повтор, богатый Λейцином, LRR TYP — богатый Λейцином повтор типичного Αомена поΑсемейства, LRR CT — богатый Λейцином C-концевой Αомен, LRR NT — богатый Λейцином N-концевой Αомен, TIR — TIR-Αомен
Fig. 1 in Pathogen recognition molecules from hemocytes of Planorbarius corneus molluscs (Planorbidae, Pulmonata)
Fig. 1. The number of domains of pattern recognition molecules and adhesion molecules in the hemocytes of Planorbarius corneus molluscs according to BlastP data (NCBI NR database, e-value<1e-5)
Рис. 3. Варианты преΑсказанной Αоменной структуры патогенраспознающих моΛекуΛ гемоцитов моΛΛюсков Planorbarius corneus. a — C-Λектины, b — Λектин, связывающий маннозу. Сокращения (зΑесь и ΑаΛее): Agglutinin — Αомен аггΛютинина, KR — крингΛ-Αомен, LDLa — Αомен рецептора Λипопротеинов низкой пΛотности кΛасса А, TPK_B1 — пирофосфокиназа тиаминa, LINK — связывающий гиаΛуронан Αомен in Pathogen recognition molecules from hemocytes of Planorbarius corneus molluscs (Planorbidae, Pulmonata)
Рис. 3. Варианты преΑсказанной Αоменной структуры патогенраспознающих моΛекуΛ гемоцитов моΛΛюсков Planorbarius corneus. a — C-Λектины, b — Λектин, связывающий маннозу. Сокращения (зΑесь и ΑаΛее): Agglutinin — Αомен аггΛютинина, KR — крингΛ-Αомен, LDLa — Αомен рецептора Λипопротеинов низкой пΛотности кΛасса А, TPK_B1 — пирофосфокиназа тиаминa, LINK — связывающий гиаΛуронан Αомен
Fig. 6 A in A comprehensive phylogeographic study of Arion vulgaris Moquin-Tandon, 1855 (Gastropoda: Pulmonata: Arionidae) in Europe
Fig. 6 A COI-based Bayesian phylogenetic tree for Arion species con-" structed from currently available sequences with Arianta arbustorum sequence as an outgroup (see also Table 4, Supplementary Materials). Numbers at nodes indicate Bayesian posterior probability, values less than 0.90 are not shown on the tree. Clades for particular Arion species were collapsed regardless of the value of sequence divergence. The scale bar represents 0.05 substitutions per nucleotide position. Taxonomic names have been adopted from named GenBank sequences; accession numbers are given next to a particular clade
Fig. 10 in The local forms of Zootecus (Gastropoda: Pulmonata: Subulinidae) of Pakistan: an archaeomalacological case study
Fig. 10 - Zootecus sp.: Examples of different shell shapes. A) Siranda WP 16. B) Siranda WP 31. C) old collection from Uthal with some juvenile individuals. D) Rohri Hills site 59. E) Rohri Hills site 480 (photo A. Girod).
Tab. 1 in The local forms of Zootecus (Gastropoda: Pulmonata: Subulinidae) of Pakistan: an archaeomalacological case study
<p>Tab. 1 - Historical names, dimensions and whorl numbers of the Z <i>ootecus</i> described from Afghanistan and Pakistan. AMNH, American Museum of Natural History; NHMUK, National History Museum, London; PZS, Proceedings of the Zoological Society of London.</p><table><tbody><tr><th><b>Local taxa</b></th><th><b>Collecting areas</b></th><th><b>H mm</b></th><th><b>D mm</b></th><th><b>H/D</b></th><th><b>Whorls</b></th></tr></tbody><tbody><tr><th>1) <i>Zootecus pullus</i> Gray, 1834 - P.Z.S., 2: 66</th><td>Balochistan, Quetta; Kutch; Bank of Ganges; Delhi; Uttar Pradesh</td><td>10</td><td>4</td><td>2.5</td><td>9-10</td></tr><tr><th>2) <i>Zootecus chion</i> (smaller form) <i>gracilior minor</i> (Pfeiffer, 1856)</th><td>Not specified</td><td>11</td><td>4</td><td>2.75</td><td></td></tr><tr><th>3) <i>Zootecus insularis chion</i> (Solem, 1979, tab. IV: 30)</th><td>Afghanistan</td><td>11.8±0.15 (9.8-14.3)</td><td>5.66±0.071 (4.3-6.4)</td><td>2.279 2.234</td><td>7 3/4 + (7 1/8-9)</td></tr><tr><th>4) <i>Zootecus polygyratus</i> Reeve, 1849</th><td>Sindh (Rohri Hills); Baluchistan (Gwadar)</td><td>12</td><td>4</td><td>3</td><td>9</td></tr><tr><th>5) <i>Zootecus chion</i>, Pfeiffer, 1856</th><td>Afghanistan; Punjab; Sindh</td><td>12</td><td>0.5</td><td>2.4</td><td>7-8</td></tr><tr><th>6) <i>Zootecus chion</i> (#2), Pfeiffer, 1856</th><td>Samples from Hyderabad</td><td>14</td><td>6</td><td>2.333</td><td></td></tr><tr><th>7) <i>Zootecus agrensis</i> Kur. r 1856 - Malakozoologische Blätter, 2: 107</th><td>India: Agra</td><td>16</td><td>6</td><td>2.666</td><td>9</td></tr><tr><th>8) <i>Zootecus estellus</i> Benson, 1857 - A.M.N.H. ser. 2, 19: 327</th><td>Punjab; Sindh; Rajasthan; Andhra Pradesh</td><td>18</td><td>6</td><td>3</td><td>8</td></tr><tr><th>9) <i>Zootecus pertica</i> Benson, 1857 - A.M.N.H. ser. 2, 19: 328</th><td>Sindh</td><td>20</td><td>5</td><td>4</td><td>10</td></tr></tbody></table>
Linked collectors and determiners for: A review of the genus Coccoglypta Pilsbry, 1895 (Gastropoda: Pulmonata: Camaenidae).
Natural history specimen data linked to collectors and determiners held within, "A review of the genus Coccoglypta Pilsbry, 1895 (Gastropoda: Pulmonata: Camaenidae)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/beb5af6a-378d-4eea-b7bb-cd6bb86b51a7">https://bionomia.net/dataset/beb5af6a-378d-4eea-b7bb-cd6bb86b51a7</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/beb5af6a-378d-4eea-b7bb-cd6bb86b51a7">https://gbif.org/dataset/beb5af6a-378d-4eea-b7bb-cd6bb86b51a7</a>. Formatted as a Frictionless Data package.
Figure 49 in Descriptions of New Species of the Diverse and Endemic Land Snail Amplirhagada Iredale, 1933 from Rainforest Patches across the Kimberley, Western Australia (Pulmonata: Camaenidae)
Figure 49. Shell size ranges of Amplirhagada species described herein. Box plot diagrams showing the median (line in box), the 25% (box) and 75% percentile (lines outside box) and extremes (asterisks) of shell height (above) and shell width (below) of species sorted by their height. Species numbers refer to the manuscript names of the described species as used by Solem (1991): 27, A. coffea. 29, A. lindsayae. 22, A. vialae. 26, A. inusitata. 19, A. alicunda. 31, A. bendraytoni. 28, A. gardneriana. 35, A. epiphallica. 21, A. davidsoniana. 24, A. discoidea. 17, A. atlantis. 33, A. angustocauda. 25, A. forrestiana. 20, A. moraniana. 36, A. carinata. 18, A. carsoniana.
Figure 48 in Descriptions of New Species of the Diverse and Endemic Land Snail Amplirhagada Iredale, 1933 from Rainforest Patches across the Kimberley, Western Australia (Pulmonata: Camaenidae)
Figure 48. Penial anatomy of Amplirhagada carinata Solem, 1981. (A) Interior anatomy of the penial wall (WAM S34759). (B) Interior anatomy of the penial wall (WAM S34763). For labelling of structures see Fig. 4. Scale bars = 3 mm.
Figure 46. Amplirhagada carinata Solem, 1981 in Descriptions of New Species of the Diverse and Endemic Land Snail Amplirhagada Iredale, 1933 from Rainforest Patches across the Kimberley, Western Australia (Pulmonata: Camaenidae)
Figure 46. Amplirhagada carinata Solem, 1981 SEM of shell, radula and jaw (WAM S34759). (A) Protoconch and first teleoconch whorls viewed from above. (B) Detail of first teleoconch whorls viewed from above. (C) Close-up of sculpture on last whorl, lateral view. (D) Jaw. (E) Central and inner lateral teeth viewed from above. (F) Marginal teeth viewed from above. Scale bars: A–C, 200 µm; D, 100 µm; E–F, 10 µm.
Figure 45 in Descriptions of New Species of the Diverse and Endemic Land Snail Amplirhagada Iredale, 1933 from Rainforest Patches across the Kimberley, Western Australia (Pulmonata: Camaenidae)
Figure 45. Penial anatomy of Amplirhagada epiphallica n.sp. (WAM S34746). For labelling of structures see Fig. 4. (A) Interior anatomy of the penial wall. (B) Schematic view of the penis with the penial sheath being removed. Scale bars = 5 mm.
Figure 43. Amplirhagada epiphallica n in Descriptions of New Species of the Diverse and Endemic Land Snail Amplirhagada Iredale, 1933 from Rainforest Patches across the Kimberley, Western Australia (Pulmonata: Camaenidae)
Figure 43. Amplirhagada epiphallica n.sp. SEM of shell, radula and jaw (WAM S34746). (A) Protoconch and first teleoconch whorls viewed from above. (B) Detail of first teleoconch whorls viewed from above. (C) Close-up of sculpture on last whorl, lateral view. (D) Jaw. (E) Central and inner lateral teeth viewed from above. (F) Marginal teeth viewed from above. Scale bars: A–C, 1 mm; D, 100 µm; E–F, 10 µm.
Figure 39 in Descriptions of New Species of the Diverse and Endemic Land Snail Amplirhagada Iredale, 1933 from Rainforest Patches across the Kimberley, Western Australia (Pulmonata: Camaenidae)
Figure 39. Penial anatomy of Amplirhagada bendraytoni n.sp. (WAM S34741). For labelling of structures see Fig. 4. (A) Schematic view of the penis with the penial sheath being removed. Scale bar = 5 mm. (B) Interior anatomy of the penial wall. Scale bar = 5 mm. (C) Schematic cross-section of the main pilaster (not to scale).
Figure 41 in Descriptions of New Species of the Diverse and Endemic Land Snail Amplirhagada Iredale, 1933 from Rainforest Patches across the Kimberley, Western Australia (Pulmonata: Camaenidae)
Figure 41. Genitalia of Amplirhagada angustocauda n.sp. (WAM S34743). For labelling of structures see Fig. 3. Scale bar = 5 mm.
Figure 38 in Descriptions of New Species of the Diverse and Endemic Land Snail Amplirhagada Iredale, 1933 from Rainforest Patches across the Kimberley, Western Australia (Pulmonata: Camaenidae)
Figure 38. Genitalia of Amplirhagada bendraytoni n.sp. (WAM S34741). For labelling of structures see Fig. 3. Scale bar = 5 mm.
Figure 37. Amplirhagada bendraytoni n in Descriptions of New Species of the Diverse and Endemic Land Snail Amplirhagada Iredale, 1933 from Rainforest Patches across the Kimberley, Western Australia (Pulmonata: Camaenidae)
Figure 37. Amplirhagada bendraytoni n.sp. SEM of shell, radula and jaw (WAM S34741). (A) Protoconch and first teleoconch whorls viewed from above. (B) Detail of first teleoconch whorls viewed from above. (C) Jaw. (D) Close-up of central and inner lateral teeth. (E) Close-up of Marginal teeth. (F) Central and inner lateral teeth viewed from above. (G) Marginal teeth viewed from above. Scale bars: A–B, 1 mm; C, 100 µm; D–E, G, 10 µm; F, 20 µm.
Figure 40. Amplirhagada angustocauda n in Descriptions of New Species of the Diverse and Endemic Land Snail Amplirhagada Iredale, 1933 from Rainforest Patches across the Kimberley, Western Australia (Pulmonata: Camaenidae)
Figure 40. Amplirhagada angustocauda n.sp. SEM of shell, radula and jaw (WAM S34743). (A) Protoconch and first teleoconch whorls viewed from above. (B) Detail of first teleoconch whorls viewed from above. (C) Close-up of sculpture on last whorl, lateral view. (D) Jaw. (E) Central and inner lateral teeth viewed from above. (F) Marginal teeth viewed from above. Scale bars: A, 200 µm; B–C, 1 mm D, 100 µm; E, 20 µm; F, 10 µm.
Figure 42 in Descriptions of New Species of the Diverse and Endemic Land Snail Amplirhagada Iredale, 1933 from Rainforest Patches across the Kimberley, Western Australia (Pulmonata: Camaenidae)
Figure 42. Penial anatomy of Amplirhagada angustocauda n.sp. (WAM S34743). For labelling of structures see Fig. 4. (A) Interior anatomy of the penial wall. (B) Schematic view of the penis with the penial sheath being removed. Scale bars = 3 mm.
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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)
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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.