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FIGURE 16. Distribution map for 11 in A revision of the Brazilian species of Lysmata Risso, 1816 (Decapoda: Caridea Lysmatidae), with discussion of the morphological characters used in their identification
FIGURE 16. Distribution map for 11 species of Lysmata Risso, 1816 currently known from the Brazilian coast and offshore islands. Abbreviations: Alagoas (AL), Amapá (AP), Atol das Rocas (AR), Bahia (BA), Ceará (CE), Espírito Santo (ES), Maranhão (MA), Pará (PA), Paraíba (PB), Paraná (PR), Pernambuco (PE), Piauí (PI), Rio Grande do Norte (RN), Rio Grande do Sul (RS), Rio de Janeiro (RJ), Santa Catarina (SC), São Paulo (SP), São Pedro e São Paulo (SPSP), Sergipe (SE), Trindade e Martim Vaz (TMV).
FIGURE 15 in A revision of the Brazilian species of Lysmata Risso, 1816 (Decapoda: Caridea Lysmatidae), with discussion of the morphological characters used in their identification
FIGURE 15. Lysmata vittata (Stimpson, 1860), non-ov. specimen from Sergipe (pocl 7.0 mm; MZUSP 37423): (A) frontal margin and cephalic appendages, lateral view; (B) infraorbital region, lateral view; (C) same, dorsolateral view; (D) left third maxilliped, antepenultimate and penultimate articles, ventromesial view; (E) left antennule, third article of antennular peduncle and flagella, mesial view; (F) same, bifurcation between upper flagellum and accessory ramus, mesial view; (G) right first pereopod, merus to propodus, lateral view.
FIGURE 13 in A revision of the Brazilian species of Lysmata Risso, 1816 (Decapoda: Caridea Lysmatidae), with discussion of the morphological characters used in their identification
FIGURE 13. Lysmata moorei (Rathbun, 1901), non-ov. specimen from Espírito Santo (pocl 8.2 mm; MZUSP 32298): (A) frontal margin and cephalic appendages, lateral view; (B) infraorbital region, lateral view; (C) same, dorsolateral view; (D) left third maxilliped, antepenultimate and penultimate articles, ventromesial view; (E) left antennule, third article of antennular peduncle and flagella, mesial view; (F) same, bifurcation between upper flagellum and accessory ramus, mesial view; (G) right first pereopod, merus to propodus, lateral view.
FIGURE 11 in A revision of the Brazilian species of Lysmata Risso, 1816 (Decapoda: Caridea Lysmatidae), with discussion of the morphological characters used in their identification
FIGURE 11. Lysmata lipkei Okuno & Fiedler, 2010, non-ov. specimen from Sergipe, Brazil (pocl 5.5 mm; MZUSP 37415): (A) frontal margin and cephalic appendages, lateral view; (B) infraorbital region, lateral view; (C) same, dorsolateral view; (D) left third maxilliped, antepenultimate and penultimate articles, ventromesial view; (E) left antennule, third article of antennular peduncle and flagella, mesial view; (F) same, bifurcation between upper flagellum and accessory ramus, mesial view; (G) right first pereopod, merus to propodus, lateral view. Weak articulations represented by a dotted line.
FIGURE 8 in A revision of the Brazilian species of Lysmata Risso, 1816 (Decapoda: Caridea Lysmatidae), with discussion of the morphological characters used in their identification
FIGURE 8. Lysmata cf. jundalini Rhyne, Calado & Santos, 2012, non-ov. specimen from Espírito Santo (pocl 4.1 mm; MZUSP 34362): (A) left antennule, third article of antennular peduncle and flagella, mesial view; (B) same, articles preceding bifurcation of accessory ramus; (C) right first pereopod, merus to propodus, lateral view. Weak articulations represented by a dotted line.
FIGURE 5 in A revision of the Brazilian species of Lysmata Risso, 1816 (Decapoda: Caridea Lysmatidae), with discussion of the morphological characters used in their identification
FIGURE 5. Lysmata grabhami (Gordon, 1935), (A–G) non-ov. specimen from Bahia (pocl 13.5 mm; MZUSP 36814), (H) non-ov. specimen from Ceará (pocl 12.0 mm; MZUSP 39093): (A) frontal margin and cephalic appendages, lateral view; (B) infraorbital region, lateral view; (C) same, dorsolateral view; (D) left third maxilliped, antepenultimate and penultimate articles, ventromesial view; (E) left antennule, third article of antennular peduncle and flagella, mesial view; (F) same, bifurcation between upper flagellum and accessory ramus, mesial view; (G) right first pereopod, merus to propodus, lateral view; (H) infraorbital region, lateral view. Weak articulations represented by a dotted line.
FIGURE 6 in A revision of the Brazilian species of Lysmata Risso, 1816 (Decapoda: Caridea Lysmatidae), with discussion of the morphological characters used in their identification
FIGURE 6. Lysmata intermedia (Kingsley, 1878): non-ov. specimen (pocl 5.8 mm; MZUSP 32642) from Ilha das Couves, São Paulo, reported in Barros-Alves et al. (2016), in lateral view. White arrow: swollen area on the upper antennular flagellum; black arrow: coxa of fourth pereopod. Photograph: D.F.R. Alves.
FIGURE 2 in A revision of the Brazilian species of Lysmata Risso, 1816 (Decapoda: Caridea Lysmatidae), with discussion of the morphological characters used in their identification
FIGURE 2. Lysmata ankeri Rhyne & Lin, 2006, non-ov. specimen from Bahia (pocl 9.6 mm; MZUSP 36970): (A) frontal margin and cephalic appendages, lateral view; (B) infraorbital region, lateral view; (C) same, dorsolateral view; (D) left third maxilliped, antepenultimate and penultimate articles, ventromesial view; (E) left antennule, third article of antennular peduncle and flagella, mesial view; (F) same, bifurcation between upper flagellum and accessory ramus, mesial view; (G) right first pereopod, merus to propodus, lateral view.
FIGURE 7 in A revision of the Brazilian species of Lysmata Risso, 1816 (Decapoda: Caridea Lysmatidae), with discussion of the morphological characters used in their identification
FIGURE 7. Lysmata intermedia (Kingsley, 1878), (A–G) non-ov. specimen from Rio Grande do Norte (pocl 5.9 mm; MZUSP 29792), (H) non-ov. specimen from São Paulo (pocl 5.8 mm; MZUSP 32642), (I, J) non-ov. specimen from Bocas del Toro, Panama (pocl 3.5 mm; MZUSP 38020): (A) frontal margin and cephalic appendages, lateral view; (B) infraorbital region, lateral view; (C) same, dorsolateral view; (D) left third maxilliped, antepenultimate and penultimate articles, ventromesial view; (E) right first pereopod, merus to propodus, lateral view; (F) left antennule, third article of antennular peduncle and flagella, mesial view; (G) same, bifurcation between upper flagellum and accessory ramus, mesial view; (H, I) right first pereopod, merus to propodus, lateral view; (J) left antennule, third article of antennular peduncle and flagella, mesial view. Weak articulations represented by a dotted line.
FIGURE 7 in Comparative morphology of myrmecophilous immature stages of European Microdon species (Diptera: Syrphidae): updated identification key and new diagnostic characters
FIGURE 7. Dorsal reticulation of third instar larvae of M. myrmicae (A, B), M. analis (C, D) and M. devius (E, F); left, general view; right, detail of single reticulation processes. A = 400 µm; B = 50 µm; C, E = 500 µm; D = 100 µm; F = 200 µm.
FIGURES 3–7. Calliphora character states. 3. C in Identification of Neotropical blow flies of the genus Calliphora Robineau- Desvoidy (Diptera: Calliphoridae) with the description of a new species
FIGURES 3–7. Calliphora character states. 3. C. triseta, pale whitish setae on upper surface, rim and fringe of lower calypter. 4. C. irazuana, brown setae on upper surface, rim and fringe of lower calypter. 5. C. lopesi male, setae extend about halfway up facial ridge. 6. C. triseta male, setae extend about 80% up facial ridge. 7. C. nigribasis, base of wing infuscated.
FIGURE 59 in Identification and character analysis of the Acerentomidae (Protura) of the northeastern Palearctic (Protura: Acerentomidae)
FIGURE 59. Two most parsimonious trees resulting from parsimony analyses of north-eastern Palearctic acerentomid species (L = 212, CI = 40, RI = 69).
FIGURE 60 in Identification and character analysis of the Acerentomidae (Protura) of the northeastern Palearctic (Protura: Acerentomidae)
FIGURE 60. Phylogenetic hypothesis for Acerentomidae, strict consensus cladogram. Black circles indicate true synapomorphies (without reverses), half-black circles indicate incomplete synapomorphies, white circles indicate homoplasies. Numbering of characters corresponds to those in the data matrix.
FIGURE 58 in Identification and character analysis of the Acerentomidae (Protura) of the northeastern Palearctic (Protura: Acerentomidae)
FIGURE 58. Strict consensus cladogram of two most parsimonious trees resulting from maximum parsimonious analysis (L = 210, CI = 41, R I= 70). Numbers above branches represent bootstrap values (given for nodes with 50% or higher bootstrap support).
FIGURES 48–57. Callientomon chinensis Yin, 1980, specimen from the Russian Far East. 48 in Identification and character analysis of the Acerentomidae (Protura) of the northeastern Palearctic (Protura: Acerentomidae)
FIGURES 48–57. Callientomon chinensis Yin, 1980, specimen from the Russian Far East. 48) Tergite I, right side. 49) Tergite XI, left side. 50) Prosternum, left side. 51) Mesosternum, left side. 52) Metasternum, left side. 53) Accessory seta on sternite VI. 54) Seta β1 on foretarsus. 55) Seta δ4 on foretarsus. 56) Sternite I. 57) Sternite VII. Arrows show pores. Scale bar: 20 µm.
FIGURES 44–47 in Identification and character analysis of the Acerentomidae (Protura) of the northeastern Palearctic (Protura: Acerentomidae)
FIGURES 44–47. Yamatentomon yamato (Imadaté &Yosii, 1956), specimen from the Russian Far East. 44) Seta β1 on foretarsus; 45) Seta δ4 and sensillum c' on foretarsus; 46) Male squama genitalis, left side; 47) Sternites VI–VII. Arrows show pores. Scale bar: 20 µm.
FIGURES 37–43. Nipponentomon khabarovskense Nakamura, 2004, holotype. 37 in Identification and character analysis of the Acerentomidae (Protura) of the northeastern Palearctic (Protura: Acerentomidae)
FIGURES 37–43. Nipponentomon khabarovskense Nakamura, 2004, holotype. 37) Pseudoculus with setae l3 and sd4. 38) Cephalic seta sd5. 39) Tergite I, frontal part. 40) Tergite I, lateral part. 41) Sternites II and III. Arrows show pores. Nipponentomon bidentatum Nakamura, 2004, holotype. 42) Pseudoculus with setae l3 and sd4. 43) Cephalic seta sd5. Scale bar: 20 µm.
FIGURES 11–17 in Identification and character analysis of the Acerentomidae (Protura) of the northeastern Palearctic (Protura: Acerentomidae)
FIGURES 11–17. Imadateiella sharovi (Martynova, 1977). 11) Head. 12) Pseudoculus. 13) Maxillary palpus. 14) Labial palpus. 15) Canal of maxillary gland. 16) Foretarsus, exterior view. 17) Foretarsus, interior view. Arrows show pores. Figs. 12– 14, paratype a; others, holotype. Scale bar: 20 µm.
FIGURES 18–36 in Identification and character analysis of the Acerentomidae (Protura) of the northeastern Palearctic (Protura: Acerentomidae)
FIGURES 18–36. Imadateiella sharovi (Martynova, 1977). 18) Thoracic nota. 19) Tergite I. 20) Tergite VI. 21) Tergite VII. 22) Tergites VIII–XII. 23) Prosternum. 24) Mesosternum. 25) Metasternum. 26) Seta A2 on prosternum. 27) Sternite I. 28) Sternite II. 29) Sternite VI. 30) Sternite VII. 31) Seta P1a on tergite VII. 32) Seta P1a on sternite VI. 33) Anterolateral part of tergite VII. 34) Comb of tergite VIII. 35) Female squama genitalis. 36) Sternites VIII–XII. Arrows show pores. Figs. 34, 35, paratype b; Figs. 23–25, paratype a; others, holotype. Scale bar: 20 µm.
FIGURES 5–7 in Identification and character analysis of the Acerentomidae (Protura) of the northeastern Palearctic (Protura: Acerentomidae)
FIGURES 5–7. Known distribution of proturan genera. 5) Filientomon Rusek, 1974. 6) Yamatentomon Imadaté, 1964. 7) Verrucoentomon Rusek, 1974.
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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.