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Abb. 10-12 in Festlegung von Typen für Andrena nitidiuscula SCHENCK 1853 und Andrena fulvicornis SCHENCK 1861 sowie Erstnachweis von Andrena curvana WARNCKE 1965 für Deutschland (Hymenoptera, Andrenidae, Andrena, Subgenus Notandrena)
Abb. 10-12: Aedeagi links Dorsalansicht, rechts Lateralansicht: (10) A. nitiduscula; (11) A. fulvicornis; (12) A. curvana (Massstab 0,2 mm).
Figure 2. Aceria guerreronis Keifer, 1965. a. Female complete body, lateral view. b. Female prodorsum. c. Female genital plate. d in First record of Aceria guerreronis Keifer, 1965 (Acari: Eriophyidae) in Panama
Figure 2. Aceria guerreronis Keifer, 1965. a. Female complete body, lateral view. b. Female prodorsum. c. Female genital plate. d. Male genital plate. / Figura 2. Aceria guerreronis Keifer, 1965. a. Cuerpo completo de la hembra, vista lateral. b. Prodorsum de la hembra. c. Placa genital de la hembra. d. Placa genital del macho.
Figure 1 in First record of Aceria guerreronis Keifer, 1965 (Acari: Eriophyidae) in Panama
Figure 1. Damage levels to Cocos nucifera fruit caused by Aceria guerreronis. / Figura 1. Niveles de daños en los frutos de Cocos nucifera causados por Aceria guerreronis.
Fig. 56. Abichites abichi Shevyrev, 1965. A in The Changhsingian (Late Permian) ammonoids from Baghuk Mountain (Central Iran)
Fig. 56. Abichites abichi Shevyrev, 1965. A. Lateral and dorsal view, specimen MB.C.30039, section H, -1.30 m. B. Lateral and dorsal view, specimen MB.C.30019, section 1, -0.90 m. C. Suture line, specimen MB.C.30019, at 7.7 mm wh. D. Whorl profile proportions. Abbreviation: see Material and methods. Scale bar units = 1 mm.
Fig. 29. Paratirolites vediensis Shevyrev, 1965. A–B. Lateral and dorsal views. A in The Changhsingian (Late Permian) ammonoids from Baghuk Mountain (Central Iran)
Fig. 29. Paratirolites vediensis Shevyrev, 1965. A–B. Lateral and dorsal views. A. Specimen MB.C.29792, section C, -2.75 m. B. Specimen MB.C.29785, section 1, -2.80 m. – C–D. Suture lines. C. Specimen MB.C.29792, at 13.0 mm wh. D. Specimen MB.C.29785, at 12.8 mm wh. – E. Whorl profile proportions. Abbreviations: see Material and methods. Scale bar units= 1 mm.
Fig. 28. Paratirolites vediensis Shevyrev, 1965 in The Changhsingian (Late Permian) ammonoids from Baghuk Mountain (Central Iran)
Fig. 28. Paratirolites vediensis Shevyrev, 1965, lateral and dorsal views. A. Specimen MB.C.29804, section G, -2.75 m. B. Specimen MB.C.29798, section E, float. Scale bar units = 1 mm.
Fig. 22. Dzhulfites spinosus Shevyrev, 1965. A–D. Lateral and dorsal views. A in The Changhsingian (Late Permian) ammonoids from Baghuk Mountain (Central Iran)
Fig. 22. Dzhulfites spinosus Shevyrev, 1965. A–D. Lateral and dorsal views. A. Specimen MB.C.29741, section E, float. B. Specimen MB.C.29739, float. C. Specimen MB.C.29743, section G, float. D. Specimen MB.C.29744, section H, -5.40 m. E–G. Suture lines. E. Specimen MB.C.29743, at 32.5 mm dm, 16.5 mm ww, 10.5 mm wh. F. Holotype. MB.C.29739, at 32.0 mm dm, 16.0 mm ww, 10.0 mm wh. G. Specimen MB.C.29744, at 29.5 mm dm, 16.5 mm ww, 9.7 mm wh. H. Whorl profile proportions. Abbreviations: see Material and methods. Scale bar units = 1 mm.
Fig. 32. Paratirolites trapezoidalis Shevyrev, 1965. A–B. Lateral and dorsal views. A in The Changhsingian (Late Permian) ammonoids from Baghuk Mountain (Central Iran)
Fig. 32. Paratirolites trapezoidalis Shevyrev, 1965. A–B. Lateral and dorsal views. A. Specimen MB.C.29845, section E, -2.80 m. B. Specimen MB.C.29844, section E, float. C. Suture line of specimen MB.C.29844, at 13.3 mm wh. Abbreviation: see Material and methods. Scale bar units = 1 mm.
Fig. 11. Agamopus convexus Balthasar, 1965 in A taxonomic revision of the New World genus Agamopus Bates, 1887 (Coleoptera: Scarabaeinae: Ateuchini)
Fig. 11. Agamopus convexus Balthasar, 1965 (now Ateuchus convexus comb. nov.). Holotype (NMPC). A. Habitus, dorsal view. B. Labels. Length of specimen: 6.5 mm. Photograph: Jiří Hájek, NMPC.
Figs 10–12 in First record of the genus Nipponodipogon Ishikawa, 1965 (Hymenoptera: Pompilidae) from India with description of a new species
Figs 10–12. Nipponodipogon iwatai (Ishikawa), female. 10, 12 – specimen from Japan, Fukui Pref.; 11 – holotype (from: Shimizu et al., 2015). 10, 11 – head, frontal view; 12 –
Fig. 4. Agrothereutes minousubae Nakanishi, 1965 in Expression of green fluorescent protein defines a specific population of lamina II excitatory interneurons in the GRP::eGFP mouse
Fig. 4. Agrothereutes minousubae Nakanishi, 1965 (A, B, KPM-NK 76585; C, D, KPM-NK 76590) and Aritranis kuro sp. nov. (E, G, I, KPM-NK 75824; F, H, KPM-NK 75825; J, K, KPM-NK 76577) ― A, C, E, J, lateral habitus; B, tegula and humeral plate (red arrow), dorso-lateral view; D, G, K, head, frontal view; F, dorsal habitus; H, propodeum, dorsal view; I, right wings.
Fig. 6 in Molecular and morphological characterisation of Pharyngostrongylus kappa Mawson, 1965 (Nematoda: Strongylida) from Australian macropodid marsupials with the description of a new species, P. patriciae n. sp.
Fig. 6 Pcylogenetic analysis of tce ITS+ rDNA sequences of Pharyngostrongylus kappa and Pharyngostrongylus patriciae n. sp. from various cost species and geograpcical locations. Tce sequence data were analysed using tce Neigcbour-Joining (NJ) and Bayesian Inference (BI) metcods. Tcere was a concordance between tce topology of tce BI tree and tce NJ tree (not scown). Nodal support is given as a posterior probability of BI/bootstrap value for NJ. Unique sequences are presented witc a GenBank accession no. followed by tce vouccer number, and cost and locality. Tcree sequences (LT576294-LT576296) were included as reference sequences from Ccilton et al. [12]. Cloacina ernabella was used as tce outgroup. Scale-bar indicates tce number of inferred substitutions per nucleotide site. Abbreviations: NSW, New Soutc Wales; NT, Nortcern Territory; QLD, Queensland; stn, station; VIC, Victoria; WA, Western Australia
Fig. 7 in Molecular and morphological characterisation of Pharyngostrongylus kappa Mawson, 1965 (Nematoda: Strongylida) from Australian macropodid marsupials with the description of a new species, P. patriciae n. sp.
Fig. 7 Pcylogenetic analysis of tce concatenated ITS+ rDNA sequences of Pharyngostrongylus spp. from various cost species and geograpcical locations. Tce sequence data were analysed using tce Neigcbour-Joining (NJ) and Bayesian Inference (BI) metcods. Tcere was a concordance between tce topology of tce BI tree and tce NJ tree (not scown). Nodal support is given as a posterior probability of BI. Cloacina ernabella was used as tce outgroup. Scale-bar indicates tce number of inferred substitutions per nucleotide site. Abbreviations: NSW, New Soutc Wales; NT, Nortcern Territory; QLD, Queensland; VIC, Victoria; WA, Western Australia
Fig. 2 in Molecular and morphological characterisation of Pharyngostrongylus kappa Mawson, 1965 (Nematoda: Strongylida) from Australian macropodid marsupials with the description of a new species, P. patriciae n. sp.
Fig. 2 Differentiation of male (a) and female (b) Pharyngostrongylus kappa specimens based on discriminant functions 1 (F1) and 2 (F2). Centroids are scown as small circles witcin eacc cost group
Fig. 4 in Molecular and morphological characterisation of Pharyngostrongylus kappa Mawson, 1965 (Nematoda: Strongylida) from Australian macropodid marsupials with the description of a new species, P. patriciae n. sp.
Fig. 4 Pcylogenetic analysis of tce ITS1 rDNA sequences of Pharyngostrongylus kappa and Pharyngostrongylus patriciae n. sp. from various cost species and geograpcical locations. Tce sequence data were analysed using tce Neigcbour-Joining (NJ) and Bayesian Inference (BI) metcods. Tcere was a concordance between tce topology of tce BI tree and tce NJ tree (not scown). Nodal support is given as a posterior probability of BI/bootstrap value for NJ. Eacc unique sequence is presented witc a GenBank accession no. followed by tce vouccer number, and its cost and locality. Tcree sequences (LT576294-LT576296) were included as reference sequences from Ccilton et al. [12]. Cloacina ernabella was used as tce outgroup. Scale-bar indicates tce number of inferred substitutions per nucleotide site. Abbreviations: NSW, New Soutc Wales; NT, Nortcern Territory; QLD, Queensland; stn, station; VIC, Victoria; WA, Western Australia
Fig. 3 Pharyngostrongylus patriciae n in Molecular and morphological characterisation of Pharyngostrongylus kappa Mawson, 1965 (Nematoda: Strongylida) from Australian macropodid marsupials with the description of a new species, P. patriciae n. sp.
Fig. 3 Pharyngostrongylus patriciae n. sp. from tce stomacc of Osphranter robustus. 1, Oesopcagus, lateral view; 2, Buccal capsule, lateral view; 3, Buccal capsule and labial crown elements; 4, Oral opening apical view; 5, Bursa, apical view; 6, Spicule tip, ventral view; 7, Female tail, lateral view; 8, Vagina and ovejector, lateral view. Scale-bars: 1, 7, 8, 100 μm; 2–4, 10 μm; 5–6, 50 μm
Fig. 5 in Molecular and morphological characterisation of Pharyngostrongylus kappa Mawson, 1965 (Nematoda: Strongylida) from Australian macropodid marsupials with the description of a new species, P. patriciae n. sp.
Fig. 5 Pcylogenetic analysis of tce ITS2 rDNA sequences of Pharyngostrongylus kappa and Pharyngostrongylus patriciae n. sp. from various cost species and geograpcical locations. Tce sequence data were analysed using tce Neigcbour-Joining (NJ) and Bayesian Inference (BI) metcods. Tcere was a concordance between tce topology of tce BI tree and tce NJ tree (not scown). Nodal support is given as a posterior probability of BI/bootstrap value for NJ. Eacc unique sequence is presented witc a GenBank accession no. followed by tce vouccer number, and its cost and locality. Tcree sequences (LT576294-LT576296) were included as reference sequences from Ccilton et al. [12]. Cloacina ernabella was used as tce outgroup. Scale-bar indicates tce number of inferred substitutions per nucleotide site. Abbreviations: NSW, New Soutc Wales; NT, Nortcern Territory; QLD, Queensland; stn, station; VIC, Victoria; WA, Western Australia
lxkahn/Hall-1965-data: Digitized data of Hall (1965)
<p>Digitized data tables and georeferenced sample localities of heavy and light mineral data for the Merced Formation and modern sediment samples from Hall (1965).</p>
Fig. 7 in Two New Species Of Aporcelaimellus Heyns, 1965 (Nematoda: Dorylaimida) From The Tropics
Fig. 7. Aporcelaimellus insularis sp. n. A–C: posterior ends of three females (B: holotype). (Scale bar 20 µm)
Fig. 6 in Two New Species Of Aporcelaimellus Heyns, 1965 (Nematoda: Dorylaimida) From The Tropics
Fig. 6. Aporcelaimellus insularis sp. n. A–B: anterior ends; C–D: vulval regions (note the heartshaped vulval lips). (Scale bars 20 µm each)
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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
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