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Figure 7 in A new genus of Mantispidae (Insecta: Neuroptera) from the Eocene of Germany, with a review of the fossil record and palaeobiogeography of the family
Figure 7. Fossil record and inferred time ranges of subgroups of Mantispidae, superimposed upon a preliminary phylogenetic tree, based mainly on Lambkin (1986a), modified here. CAL, Calomantispinae; DREP, Drepanicinae; MANT, Mantispinae; SYM, Symphrasinae. Dashed lines and '?' indicate uncertainty in relationships and time ranges.
Figure 4 in New gammaroid family, genera and species from subterranean waters of Japan, and their phylogenetic relationships (Crustacea: Amphipoda)
Figure 4. Eoniphargus kojimai (Uéno, 1955), male, 4.3 mm, NSMT-Cr 16652; female, 4.6 mm, NSMT-Cr 16653. A, pereopod 3; B, dactylus of pereopod 3; C, coxa of pereopod 3 (female); D, pereopod 4; E, dactylus of pereopod 4; F, coxa of pereopod 4 (female); G, pereopod 5; H, dactylus of pereopod 5; I, coxa–merus of pereopod 5 (female); J, pereopod 6; K, dactylus of pereopod 6; L, coxa–merus of pereopod 6 (female); M, coxa–merus of pereopod 7; N, coxa–merus of pereopod 7 (female). C, F, I, L, N, female; others, male. Scale bars = 0.1 mm unless indicated otherwise.
Figure 2 in New gammaroid family, genera and species from subterranean waters of Japan, and their phylogenetic relationships (Crustacea: Amphipoda)
Figure 2. Eoniphargus kojimai (Uéno, 1955), male, 4.3 mm, NSMT-Cr 16652; female, 4.6 mm, NSMT-Cr 16653. A, habitus, left; B, upper lip; C, lower lip; D, left mandible; E, lacinia and incisor of left mandible; F, lacinia and incisor of right mandible; G, lacinia and incisor of right mandible (female); H, maxilla 1; I, robust apical setae on outer plate of maxilla 1; J, apical setae on palp of maxilla 1; K, maxilla 2; L, maxilliped; M, dactylus of maxilliped; N, outer plate of maxilliped; O, inner plate of maxilliped; P, inner plate of maxilliped (female). G, P, female; others, male. Scale bars = 0.1 mm unless indicated otherwise.
Figure 5 in A new genus of Mantispidae (Insecta: Neuroptera) from the Eocene of Germany, with a review of the fossil record and palaeobiogeography of the family
Figure 5. The forewing pterostigma of the Jurassic mantispids. A, Liassochrysa stigmatica Ansorge & Schlüter 1990, holotype MB.I 5046 (No. LDA301, formerly from the Ansorge collection, Dobbertin, Germany); (photograph converted to standard right dorsal view); photograph by C. Neumann, MB. B, Promantispa similis, holotype PIN 2784/1080 (Karatau, Kazakhstan; Karabastau Formation). R1, first branch of radius; Sc, subcosta. Scale bar = 1 mm for both parts.
Figure 4 in A new genus of Mantispidae (Insecta: Neuroptera) from the Eocene of Germany, with a review of the fossil record and palaeobiogeography of the family
Figure 4. Apical portion of forewing margin of Symphrasites eocenicus showing trichosors (arrows). Scale bar = 100 µm. Laser scanning photograph.
Figure 2 in A new genus of Mantispidae (Insecta: Neuroptera) from the Eocene of Germany, with a review of the fossil record and palaeobiogeography of the family
Figure 2. Symphrasites eocenicus gen. et sp. nov., holotype MeI 8384. A, photograph. B, drawing of the forewing. Scale bar = 1 mm.
Figure 10 in New gammaroid family, genera and species from subterranean waters of Japan, and their phylogenetic relationships (Crustacea: Amphipoda)
Figure 10. Octopupilla felix gen. nov., sp. nov., holotype, female, 7.7 mm, NSMT-Cr 16655. A, pereopod 3; B, dactylus of pereopod 3; C, pereopod 4. Scale bars = 0.1 mm.
Figure 16 in New gammaroid family, genera and species from subterranean waters of Japan, and their phylogenetic relationships (Crustacea: Amphipoda)
Figure 16. Lucioblivio kozaensis gen. nov., sp. nov., holotype, female, 6.3 mm, NSMT-Cr 16662. A, gnathopod 1; B, palmar margin of propodus and dactylus of gnathopod 1; C, gnathopod 2; D, palmar margin of propodus and dactylus of gnathopod 2; E, posteromarginal setae of propodus of gnathopod 2; F, anteromarginal setae of carpus of gnathopod 2. Scale bars = 0.1 mm.
Figure 3 in New gammaroid family, genera and species from subterranean waters of Japan, and their phylogenetic relationships (Crustacea: Amphipoda)
Figure 3. Eoniphargus kojimai (Uéno, 1955), male, 4.3 mm, NSMT-Cr 16652; female, 4.6 mm, NSMT-Cr 16653. A, antenna 1 (some flagellar articles are omitted); B, accessory flagellum of antenna 1; C, aesthetasc on flagellar article of antenna 1; D, antenna 2 (some flagellar articles are omitted); E, calceolus on flagellar article of antenna 2; F, antenna 1 (female, some flagellar articles are omitted); G, accessory flagellum of antenna 1 (female); H, aesthetasc on flagellar article of antenna 1 (female); I, antenna 2 (female, some flagellar articles are omitted); J, gnathopod 1; K, palmar margin and dactylus of gnathopod 1 (some setae are omitted); L, gnathopod 2; M, palmar margin and dactylus of gnathopod 2 (some setae are omitted); N, gnathopod 1 (female); O, palmar margin and dactylus of gnathopod 1 (female); P, gnathopod 2 (female); Q, palmar margin and dactylus of gnathopod 2 (female, some setae are omitted). F–H, N–Q, female; others, male. Scale bars = 0.1 mm unless indicated otherwise.
Figure 6 in New gammaroid family, genera and species from subterranean waters of Japan, and their phylogenetic relationships (Crustacea: Amphipoda)
Figure 6. Scanning electron micrographs of Eoniphargus kojimai (Uéno, 1955), male, 4.3 mm; female, 4.4 mm. A, antenna 2; B, calceoli on antenna 2; C, right mandible; D, molar of right mandible. A–B, male; C–D, female.
Figure 6. Mesomantispa sibirica Makarkin, 1997, specimen PIN 4210 in A new genus of Mantispidae (Insecta: Neuroptera) from the Eocene of Germany, with a review of the fossil record and palaeobiogeography of the family
Figure 6. Mesomantispa sibirica Makarkin, 1997, specimen PIN 4210/5275. A, photograph of the forewing. B, drawing of the forewing. Dashed lines indicate poorly preserved veins. 1A, anal vein 1; CuA, anterior cubitus; CuP, posterior cubitus; MA and MP, anterior and posterior branches of media; R1, first branch of radius; Rs, radial sector; Sc, subcosta. Scale bar = 1 mm.
Figure 15 in New gammaroid family, genera and species from subterranean waters of Japan, and their phylogenetic relationships (Crustacea: Amphipoda)
Figure 15. Lucioblivio kozaensis gen. nov., sp. nov., holotype, female, 6.3 mm, NSMT-Cr 16662. A, maxilliped; B, inner plate of maxilliped; C, outer plate of maxilliped; D, dactylus of maxilliped; E–G, dorsal margins of pleonites 1–3; H–J, dorsal margins of urosomites 1–3; K–M, epimeral plates 1–3; N, uropod 1; O, uropod 2; P, uropod 3; Q, inner plate of uropod 3; R, outer plate of uropod 3; S, telson, dorsal. Scale bars = 0.1 mm.
Figure 5 in New gammaroid family, genera and species from subterranean waters of Japan, and their phylogenetic relationships (Crustacea: Amphipoda)
Figure 5. Eoniphargus kojimai (Uéno, 1955), male, 4.3 mm, NSMT-Cr 16652; female, 4.6 mm, NSMT-Cr 16653. A–C, dorsal margins of pleonites 1–3; D–F, dorsal margins of urosomites 1–3; G, pleopod 1 (plumose setae on rami are omitted); H, retinacula of pleopod 1; I, bifid setae of pleopod 1; J, pleopod 2 (plumose setae on rami are omitted); K, pleopod 3 (plumose setae on rami are omitted); L, pleopod 1 (female, rami are omitted); M, pleopod 2 (female, rami are omitted); N–P, epimeral plates 1–3; Q, epimeral plate 2 (female); R, uropod 1; S, uropod 2; T, uropod 2 (female); U, uropod 3; V, terminal article of outer ramus of uropod 3; W, uropod 3 (female); X, telson, dorsal; Y, telson, dorsal (female). L, M, Q, T, W, Y, female; others, male. Scale bars = 0.1 mm unless indicated otherwise.
Figure 13 in New gammaroid family, genera and species from subterranean waters of Japan, and their phylogenetic relationships (Crustacea: Amphipoda)
Figure 13. Lucioblivio kozaensis gen. nov., sp. nov., holotype, female, 6.3 mm, NSMT-Cr 16662. Habitus, left, appendages omitted. A1, antenna 1; A2, antenna 2.
Figure 9 in New gammaroid family, genera and species from subterranean waters of Japan, and their phylogenetic relationships (Crustacea: Amphipoda)
Figure 9. Octopupilla felix gen. nov., sp. nov., holotype, female, 7.7 mm, NSMT-Cr 16655. A, gnathopod 1; B, palmar margin of propodus of gnathopod 1 (some setae are omitted); C, dactylus of gnathopod 1; D, gnathopod 2; E, palmar margin of propodus of gnathopod 2 (some setae are omitted); F, dactylus of gnathopod 2. Scale bars = 0.1 mm.
Figure 12 in New gammaroid family, genera and species from subterranean waters of Japan, and their phylogenetic relationships (Crustacea: Amphipoda)
Figure 12. Octopupilla felix gen. nov., sp. nov., holotype, female, 7.7 mm, NSMT-Cr 16655. A–C, dorsal margins of pleonites 1–3; D–F, dorsal margins of urosomites 1–3; G–I, epimeral plates 1–3; J, uropod 1; K, uropod 2; L, inner ramus of uropod 2; M, outer ramus of uropod 2; N, uropod 3; O, distal part of inner ramus of uropod 3; P, terminal article of outer ramus of uropod 3. Scale bars = 0.1 mm.
Figure 21 in New gammaroid family, genera and species from subterranean waters of Japan, and their phylogenetic relationships (Crustacea: Amphipoda)
Figure 21. Two patterns of character evolution for one clade of the strict consensus tree obtained by maximum parsimony analysis. Solid bars indicate character states common to Lucioblivio, Octopupilla and Eoniphargus, indicated by numbers: 1, eyes reduced or lacking; 2, coxal gills pedunculate; 3, coxae 1–4 reduced in size; 4, pereopods feeble; 5, pereonites with numerous fine setae. White bars indicate alternative character states.
Figure 1 in New gammaroid family, genera and species from subterranean waters of Japan, and their phylogenetic relationships (Crustacea: Amphipoda)
Figure 1. Known distributions of Eoniphargus kojimai Uéno, 1955, Octopupilla felix sp. nov. and Lucioblivio kozaensis sp. nov. Filled circles, E. kojimai; filled triangles, O. felix; open circles, L. kozaensis.
The Church as the Family of Trinity: The Identity and Mission of the Laity
<p><i>The Church as a communion of believers is rooted in Jesus Christ, the founder. The Holy Trinity is the source of the communion of the Church. The Church grows through missionary activities conducted by different ministries (clergy, laity and other ministries). Important questions arise from this premise; what is the role and place of the lay people in the Church's missionary activities? Is the presence of the lay people recognized in the Church? If yes, in what which ways? By virtue of the sacrament of baptism all faithful share a responsibility for the Church's mission. All baptized faithful share common priesthood through baptism. However, what is the limitation between the lay faithful and the Orders by the Holy Spirit in terms of participating in missionary activities? Upon this reflection, it is anticipated that it is better to balance and harmonize this problem by researching on the Church as the Family of Trinity. This paper therefore discusses the identity and mission of the laity in the Church by showing the position of the lay faithful to the Church's apostolate. In this paper, I recognize that, the common priesthood of the faithful and that of ministerial or hierarchical priesthood are nonetheless interrelated. This implies that, each of them in its own special way participates in one priesthood of Christ. Therefore, equality does not cancel the diversity in the ministries. This diversity is due to the Holy Spirit through which the Church is ordered and governed by a wonderful diversity. The model taken is of the Church as the Family of Trinity. That is, the communion of the Father, the Son and the Holy Spirit as the model to the earthly Church. The aim of the Church as family of Trinity is to restore the correct balance and relationship between the institutional aspects of the Church and mystical. The two realities are inseparable and need each other. However, the whole purpose of the visible society is to proclaim and draw its members into the mystery of communion. This paper is primarily contextual to Africa. Its reflection is that; because of pyramidal Catholic Church in Africa, many lay Catholic faithful do not feel at home in the Catholic Church. The researcher believes that, fraternity has been wiped away because of the institutional model. Basing on the Trinitarian ecclesiology therefore, the Church as family of Trinity places all faithful as equal despite the hierarchical organization of the Church. Ultimately, this will lead to a life of brotherhood and sisterhood. The recognition and the awareness of the laity of their mission in the Church and in the world, makes the lay people to witness their believe in words and deeds especially in the education of the young generation. </i></p>
Fig. 2 in A new species Chrysotus hubenovi and new data on the family Dolichopodidae (Diptera) of Bulgaria
Fig. 2. Chrysotus hubenovi sp. nov., male. A, head; B, antenna; C, wing; D, fore leg; E, mid leg; F, hind leg. Scale bars: 0.3 mm (B, D–F), 0.5 mm (C). Photos by M. Kechev.
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.