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Text-fig. 13. Macrophotographs of the fossil stems from Mhengere. a: large (90 cm diameter) palm tree trunk in situ; b: external view of the outer roots at the base of the trunk; average diameter of single root is 7 mm; c, d: cross-sections of a fragment of trunk showing the random distribution of equal-sized fibre vascular bundles throughout the trunk, the so-called Coccos-type. in Stratigraphy, Chronology And Palaeontology Of The Tertiary Rocks Of The Cheringoma Plateau, Mozambique

Text-fig. 13. Macrophotographs of the fossil stems from Mhengere. a: large (90 cm diameter) palm tree trunk in situ; b: external view of the outer roots at the base of the trunk; average diameter of single root is 7 mm; c, d: cross-sections of a fragment of trunk showing the random distribution of equal-sized fibre vascular bundles throughout the trunk, the so-called Coccos-type.

opencc-by-4.0Dec 2021View details →
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Text-fig. 14. Photomicrographs of thin sections of specimen BP/16/1732 Palmoxylon dutoitii from Mhengere Hill, Gorongosa, Mozambique. a: transverse section (TS) with four fibre vascular bundles (fvb) and poorly preserved parenchyma between; b: diagram of one of the fvbs in (a) of the reniform type (f – fibres, mx – metaxylum, p – phloem, px – protoxylum); c: close up of the vascular part of a fvb with 2 metaxylem elements and the collapsed cells to the lower left represents the phloem; d: fvb with 2 metaxylem elements, fibrous part to the left and parencymarous ground tissue to the right; e: lower magnification of fvb in (c); f: fvb with three metaxylem elements and phloem patch below; g: longitudinal section (LS) showing the vascular sections alternating with the fibrous sections; h: LS showing the horizontal thickening on the walls of the metaxylem vessels and a patch of parenchyma to the right (darker cells); i: spheroid echinate phytoliths that are typical of Hyphaene and Borassus. in Stratigraphy, Chronology And Palaeontology Of The Tertiary Rocks Of The Cheringoma Plateau, Mozambique

Text-fig. 14. Photomicrographs of thin sections of specimen BP/16/1732 Palmoxylon dutoitii from Mhengere Hill, Gorongosa, Mozambique. a: transverse section (TS) with four fibre vascular bundles (fvb) and poorly preserved parenchyma between; b: diagram of one of the fvbs in (a) of the reniform type (f – fibres, mx – metaxylum, p – phloem, px – protoxylum); c: close up of the vascular part of a fvb with 2 metaxylem elements and the collapsed cells to the lower left represents the phloem; d: fvb with 2 metaxylem elements, fibrous part to the left and parencymarous ground tissue to the right; e: lower magnification of fvb in (c); f: fvb with three metaxylem elements and phloem patch below; g: longitudinal section (LS) showing the vascular sections alternating with the fibrous sections; h: LS showing the horizontal thickening on the walls of the metaxylem vessels and a patch of parenchyma to the right (darker cells); i: spheroid echinate phytoliths that are typical of Hyphaene and Borassus.

opencc-by-4.0Dec 2021View details →
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Text-fig. 3. Juglandaceae. Carya (a–x). Scale bars = 1 cm. a–e: USNM PAL 772346. Micro-CT scan surface rendering. a, b: Lateral, c: apical, d: basal views. e: Virtual equatorial transverse section. f–n: USNM PAL 772347. f: Lateral view, reflected light, showing path of saw cut for transverse section of (i). g: Basal view, reflected light. h: Apical view, micro-CT surface rendering. i: Physical transverse section displaying locule and cellular preservation of parts of wall. j–n: Virtual sections from micro-CT scan data. j: Transverse section at apical 1/3 of nut. Note narrow lacunae (arrows). k: Longitudinal section parallel to primary septum, traversing one of the cotyledon lobes and showing secondary septum at base. l: Longitudinal section in plane at right angles to (k) in plane of primary septum, showing divergent placental bundles arising from base of nut (arrows). m: Equatorial transverse section showing two lobes of locule separated by primary septum. n: Transverse section near base of nut showing primary and secondary septa, creating four basal lobes of locule; note diverging placental bundles (arrows). o–x: USNM PAL 772351. o: Lateral view of broken nut with exposed locule cast, reflected light. p: Same orientation of nut, micro-CT surface rendering. q: Same specimen lateral view, rotated 90° from (p), micro-CT surface rendering. r: Apical view, reflected light. s–x: Virtual sections from micro-CT in The Early Middle Eocene Wagon Bed Carpoflora Of Central Wyoming, U.S.A.

Text-fig. 3. Juglandaceae. Carya (a–x). Scale bars = 1 cm. a–e: USNM PAL 772346. Micro-CT scan surface rendering. a, b: Lateral, c: apical, d: basal views. e: Virtual equatorial transverse section. f–n: USNM PAL 772347. f: Lateral view, reflected light, showing path of saw cut for transverse section of (i). g: Basal view, reflected light. h: Apical view, micro-CT surface rendering. i: Physical transverse section displaying locule and cellular preservation of parts of wall. j–n: Virtual sections from micro-CT scan data. j: Transverse section at apical 1/3 of nut. Note narrow lacunae (arrows). k: Longitudinal section parallel to primary septum, traversing one of the cotyledon lobes and showing secondary septum at base. l: Longitudinal section in plane at right angles to (k) in plane of primary septum, showing divergent placental bundles arising from base of nut (arrows). m: Equatorial transverse section showing two lobes of locule separated by primary septum. n: Transverse section near base of nut showing primary and secondary septa, creating four basal lobes of locule; note diverging placental bundles (arrows). o–x: USNM PAL 772351. o: Lateral view of broken nut with exposed locule cast, reflected light. p: Same orientation of nut, micro-CT surface rendering. q: Same specimen lateral view, rotated 90° from (p), micro-CT surface rendering. r: Apical view, reflected light. s–x: Virtual sections from micro-CT

opencc-by-4.0Aug 2022View details →
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Text-fig. 7. Cornacaeae (a–j), Icacinaceae (k–o). a–e: Mastixia. USNM PAL 772364. Scale bar = 1 cm. a: Lateral view of eroded endocarp – the opposite side being missing and the endocarp broken near its mid point, reflected light, palladium coated. b–e: Micro-CT scan surface renderings. b: Rotated 90° from the view in (a). c: Rotated 90° from the view in (b). d: Rotated 90° from (c), exhibiting the damaged "back" face of the endocarp. e: Axillary view of the endocarp; the opposite end missing as apparent in (d). f–j: Cf. Nyssa. DMNH EPI.47808. Scale bar = 1 cm. Micro-CT scan surface renderings. f: Intact face of the endocarp; note ridges and "apical" point. g: Eroded (?gnawed; note horizontal grooving) opposite face of the endocarp. h: Lateral view of the endocarp, eroded/gnawed face to left. i: Apical view, eroded/gnawn portion below. j: Basal view of endocarp. k–o: Iodes DMNH-EPI.47807. Micro-CT scan surface renderings. Scale bar = 1 cm. k: Face view of endocarp. l: Opposite face of endocarp. m: Lateral view demonstrating the compressed nature of the endocarp, note thickened suture marking the probable track of the primary bundle. n: Apical view, primary bundle trace to right. o: Basal view, primary bundle trace to right. in The Early Middle Eocene Wagon Bed Carpoflora Of Central Wyoming, U.S.A.

Text-fig. 7. Cornacaeae (a–j), Icacinaceae (k–o). a–e: Mastixia. USNM PAL 772364. Scale bar = 1 cm. a: Lateral view of eroded endocarp – the opposite side being missing and the endocarp broken near its mid point, reflected light, palladium coated. b–e: Micro-CT scan surface renderings. b: Rotated 90° from the view in (a). c: Rotated 90° from the view in (b). d: Rotated 90° from (c), exhibiting the damaged "back" face of the endocarp. e: Axillary view of the endocarp; the opposite end missing as apparent in (d). f–j: Cf. Nyssa. DMNH EPI.47808. Scale bar = 1 cm. Micro-CT scan surface renderings. f: Intact face of the endocarp; note ridges and "apical" point. g: Eroded (?gnawed; note horizontal grooving) opposite face of the endocarp. h: Lateral view of the endocarp, eroded/gnawed face to left. i: Apical view, eroded/gnawn portion below. j: Basal view of endocarp. k–o: Iodes DMNH-EPI.47807. Micro-CT scan surface renderings. Scale bar = 1 cm. k: Face view of endocarp. l: Opposite face of endocarp. m: Lateral view demonstrating the compressed nature of the endocarp, note thickened suture marking the probable track of the primary bundle. n: Apical view, primary bundle trace to right. o: Basal view, primary bundle trace to right.

opencc-by-4.0Aug 2022View details →
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Reading the Poetry of António Ramos Rosa from a Distance: Bird's-Eye View, Kingdoms of Nature, The Four Elements (datasets-bundle-2)

<div> <p>Datasets created by Patr&iacute;cia Esteves Reina with contributions from Bruno Ministro and Helena Costa Carvalho</p> <p>&nbsp;</p> <p>Corpus: Ant&oacute;nio Ramos Rosa's complete poetry<br>Language: Portuguese (Portugal)</p> <p>&nbsp;</p> <p><strong>Contents</strong></p> <ul> <li>Vis&atilde;o Panor&acirc;mica (Bird&rsquo;s-Eye View)</li> <li>Reinos Animal, Vegetal e Mineral (Kingdoms of Nature)</li> <li>Quatro Elementos (The Four Elements)</li> </ul> <p>&nbsp;</p> <p><strong>Data analysis and extraction using R language in RStudio<br></strong></p> <ul> <li>Timeframe: October 2023 - June 2024</li> <li>Work Package 2</li> <li>datasets-bundle-2</li> </ul> <p>Timestamps of the .csv files attached here: 29-06-2024</p> <p>&nbsp;</p> <p>Exploratory research project (2022.08122.PTDC)<br><strong>To See the Tree and the Forest. Reading the Poetry of Ant&oacute;nio Ramos Rosa from a Distance<br></strong>https://doi.org/10.54499/2022.08122.PTDC<br>Funding: Funda&ccedil;&atilde;o para a Ci&ecirc;ncia e a Tecnologia, Portugal<br>PI: Bruno Ministro<br>Host: Institute for Comparative Literature - Faculty of Arts and Humanities of the University of Porto<br><a href="https://arvore.ilcml.com/en/home-en/" rel="nofollow">https://arvore.ilcml.com/en/home-en/</a></p> </div>

openmit-licenseJun 2024View details →
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Рис. 2. Invetrix bifaria gen. nov., sp. nov.: A, B — генитаΛии самца, общий виΔ снизу и сбоку, C — стернит и тергит 8-го сегмента брюшка, D — пучки анΔрокониаΛьных чешуек на 2-м сегменте брюшка, E — генитаΛии самки Fig. 2. Invetrix bifaria gen. nov., sp. nov.: A, B — male genitalia (ventral view and lateral view), C — sternite and tergite of the 8th segment of the abdomen, D — bundles of androconial scales on the 2nd segment of the abdomen, E — female genitalia in A New Genus Of Gelechiid Moths Of The Tribe Litini (Lepidoptera, Gelechiidae: Gelechiinae) From Malaysia

Рис. 2. Invetrix bifaria gen. nov., sp. nov.: A, B — генитаΛии самца, общий виΔ снизу и сбоку, C — стернит и тергит 8-го сегмента брюшка, D — пучки анΔрокониаΛьных чешуек на 2-м сегменте брюшка, E — генитаΛии самки Fig. 2. Invetrix bifaria gen. nov., sp. nov.: A, B — male genitalia (ventral view and lateral view), C — sternite and tergite of the 8th segment of the abdomen, D — bundles of androconial scales on the 2nd segment of the abdomen, E — female genitalia

opencc-by-4.0Dec 2020View details →
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Fig. 7. Connection between UABM and ulnerve nerve. A in The Nerve Bundle via the Median Nerve Innervating the Ulnar Intrinsic Muscles of the Hand in a Gorilla Equivalent to the Deep Branch of the Ulnar Nerve in the Human

Fig. 7. Connection between UABM and ulnerve nerve. A. In the proximal forearm, a thin branch from the ulnar nerve meets a branch from the UABM to make a neural arch that gives off motor branches to the flexor digitorum profundus (FDP) of the ring and little fingers. B. A thin proximal branch (hollow arrow) from the ulnar nerve unites with the radial bundle (motor fasciculi) of the UABM and the other thicker distal one (solid arrow) unites with its ulnar bundle (sensory fasciculi).

opencc-by-4.0Nov 2023View details →
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Fig. 3. Brachial plexus. A in The Nerve Bundle via the Median Nerve Innervating the Ulnar Intrinsic Muscles of the Hand in a Gorilla Equivalent to the Deep Branch of the Ulnar Nerve in the Human

Fig. 3. Brachial plexus. A. The brachial plexus is composed of the upper trunk·C4, C5 and C6 roots, the middle trunk·C7 root and the lower trunk·C8 root. B. The subclavian artery was found to split the middle trunk into two bundles: upper and lower. The upper bundle consists of the anterior and posterior divisions, and the lower bundle is the medial division (Eisler) going to the medial cord.

opencc-by-4.0Nov 2023View details →
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Fig. 4 in The Nerve Bundle via the Median Nerve Innervating the Ulnar Intrinsic Muscles of the Hand in a Gorilla Equivalent to the Deep Branch of the Ulnar Nerve in the Human

Fig. 4. Components of UABM. A. The UABM is composed of ᶃfasciculi from the medial division of the middle trunk·C7 root and ᶄfasciculi from the lower trunk·C8 root, and some from ᶅthe lateral cord. B. Intraneural dissection of the medial cord revealed that one half of fasciculi going to UABM come from the medial division of the middle trunk·C7 root (Eisler) and the other half from the lower trunk·C8 root.

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Fig. 6 in The Nerve Bundle via the Median Nerve Innervating the Ulnar Intrinsic Muscles of the Hand in a Gorilla Equivalent to the Deep Branch of the Ulnar Nerve in the Human

Fig. 6. Motor branches to FCU of the ulnar nerve. Three motor branches to the flexor carpi ulnaris (FCU); two to the proximal and middle portion of the muscle, and another to its distal portion. A thin branch is also seen to meet with a branch from UABM to make a neural arch.

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Fig. 2 in The Nerve Bundle via the Median Nerve Innervating the Ulnar Intrinsic Muscles of the Hand in a Gorilla Equivalent to the Deep Branch of the Ulnar Nerve in the Human

Fig. 2. Innervation of all ulnar intrinsic muscles by the radial bundle of UABM. The radial bundle (motor branch) first gives off branches to the hypothenar muscles and to the lumbrical muscles of the little and ring fingers (marked with asterisks), and then to interossei (4th DI, 3rd PI and 3rd DI, 2nd PI). It goes further radially to give branches to both heads of ADP.

opencc-by-4.0Nov 2023View details →
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Fig. 5 in The Nerve Bundle via the Median Nerve Innervating the Ulnar Intrinsic Muscles of the Hand in a Gorilla Equivalent to the Deep Branch of the Ulnar Nerve in the Human

Fig. 5. The route of fasciculi composing the UABM. Several fasciculi of C8 root going to the UABM pass anterior or posterior to the ulnar nerve, two thick fasciculi anterior, and two thick and one thin fasciculi posterior. Three fasciculi from the lateral cord join the UABM.

opencc-by-4.0Nov 2023View details →
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Fig. 1 in The Nerve Bundle via the Median Nerve Innervating the Ulnar Intrinsic Muscles of the Hand in a Gorilla Equivalent to the Deep Branch of the Ulnar Nerve in the Human

Fig. 1. Ulnar antebrachial branch of the median nerve (UABM). It branched off the median nerve at the anterior aspect of the elbow and ran ulno-distally in the forearm toward the wrist. The ulnar artery is seen to come out from under the ulnar head of the pronator teres and to run distally along but about one cm apart from UABM.

opencc-by-4.0Nov 2023View details →
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◂Fig. 6 Gynoecial development, fruit and seedling of C. crenata %yellow frames), C. cf. grandicalyx %blue frames) and C. sinensis %pink frames; A–F light microscopy, G–K stereo microscopy of endocarp, mesocarp removed; L–O field images; TS in horizontal orientation). A, B TS of anthetic flower %note two to three abortive ovules and strongly stained, peripheral tissue). C, D TS of anthetic flower %note two to three abortive ovules and lignifying portions of prospective mesocarp). E Young fruit %note developing endocarp and flashily pink portions of the mesocarp). F TS of postanthetic flower %note three abortive ovules and lignifying portions of prospective mesocarp). G TS of endocarp, with three developed embryos removed %note scanty endosperm). H Endocarp. J TS of endocarp. K Endocarp. L Immature fruits. M Mature fruits. N Seedlings %note short hypocotyl and long petioles of cotyledons). O Seedlings %note long hypocotyl and short petioles of cotyledons; image taken from cultivated plant, accession number 2012–0005, in the Botanical Garden Munich) %LS, longisection; TS, transverse section; ao, abortive ovule; cot, cotyledon; db, dorsal bundle; c, calyx; ec, endocarp; ens, endosperm; ex, exocarp; fr, fruit; h, hypocotyl; int, integument; lb, lateral bundle; mc, mesocarp; o, ovule; pet, petiolus; sty, style; ut, peripheral tissue; vs, ventral slit) in Observations on flower and fruit anatomy in dioecious species of Cordia (Cordiaceae, Boraginales) with evolutionary interpretations

◂Fig. 6 Gynoecial development, fruit and seedling of C. crenata %yellow frames), C. cf. grandicalyx %blue frames) and C. sinensis %pink frames; A–F light microscopy, G–K stereo microscopy of endocarp, mesocarp removed; L–O field images; TS in horizontal orientation). A, B TS of anthetic flower %note two to three abortive ovules and strongly stained, peripheral tissue). C, D TS of anthetic flower %note two to three abortive ovules and lignifying portions of prospective mesocarp). E Young fruit %note developing endocarp and flashily pink portions of the mesocarp). F TS of postanthetic flower %note three abortive ovules and lignifying portions of prospective mesocarp). G TS of endocarp, with three developed embryos removed %note scanty endosperm). H Endocarp. J TS of endocarp. K Endocarp. L Immature fruits. M Mature fruits. N Seedlings %note short hypocotyl and long petioles of cotyledons). O Seedlings %note long hypocotyl and short petioles of cotyledons; image taken from cultivated plant, accession number 2012–0005, in the Botanical Garden Munich) %LS, longisection; TS, transverse section; ao, abortive ovule; cot, cotyledon; db, dorsal bundle; c, calyx; ec, endocarp; ens, endosperm; ex, exocarp; fr, fruit; h, hypocotyl; int, integument; lb, lateral bundle; mc, mesocarp; o, ovule; pet, petiolus; sty, style; ut, peripheral tissue; vs, ventral slit)

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◂Fig. 4 Gynoecium of C. crenata %yellow frames), C. cf. grandicalyx %blue frames) and C. sinensis %pink frames; A–R light microscopy; TS in horizontal orientation). A Secantial section. B, C TS %note cellular organisation). D Secantial section. E, F TS %note cellular organisation). G Secantial section of young gynoecium showing cellular organisation. H–J TS %note lacking cellular organisation, localisation in K–M). K–M LS at different levels from outside to inside of the same specimen %note strongly stained peripheral tissue; asterisks indicate tissue illustrated in H–J). N TS %note dehiscence lines of the prospective endocarp). O, P TS showing transmission tissue and dorsal bundles at top of style. Q vascularisation at base of gynoecium %note strongly stained peripheral tissue). R Vascularisation at base of flower %LS, longisection; TS, transverse section; db, dorsal bundle; dl, dehiscent line; ep, epidermis; lb, lateral bundle; tt, transmission tissue; ut, peripheral tissue; vb, ventral bundle; vs, ventral slit) in Observations on flower and fruit anatomy in dioecious species of Cordia (Cordiaceae, Boraginales) with evolutionary interpretations

◂Fig. 4 Gynoecium of C. crenata %yellow frames), C. cf. grandicalyx %blue frames) and C. sinensis %pink frames; A–R light microscopy; TS in horizontal orientation). A Secantial section. B, C TS %note cellular organisation). D Secantial section. E, F TS %note cellular organisation). G Secantial section of young gynoecium showing cellular organisation. H–J TS %note lacking cellular organisation, localisation in K–M). K–M LS at different levels from outside to inside of the same specimen %note strongly stained peripheral tissue; asterisks indicate tissue illustrated in H–J). N TS %note dehiscence lines of the prospective endocarp). O, P TS showing transmission tissue and dorsal bundles at top of style. Q vascularisation at base of gynoecium %note strongly stained peripheral tissue). R Vascularisation at base of flower %LS, longisection; TS, transverse section; db, dorsal bundle; dl, dehiscent line; ep, epidermis; lb, lateral bundle; tt, transmission tissue; ut, peripheral tissue; vb, ventral bundle; vs, ventral slit)

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◂Fig. 3 Gynoecium of C. crenata %yellow frames), C. cf. grandicalyx %blue frames) and C. sinensis %pink frames; A, B stack shot images; C–K light microscopy; G polarised light; TS in horizontal orientation). A, B Anthetic female flower, calyx and corolla partly removed. B LS of gynoecium. C LS of functionally female flower %note strongly stained peripheral tissue of corolla, anther and gynoecium). D LS of gynoecium. E, F TS of functionally female flower %note strongly stained, peripheral tissue). G TS of functionally female flower %note crystal deposition). H LS of ovule %note stalked embryo sac). J TS of functionally male flower with non-functional ovules. K LS of functionally male flower %style lacking, original position indicated by an asterisk) %LS, longisection; TS, transverse section; a,anther; bs, basal septum; c, calyx; car, carpel; co, corolla; db, dorsal bundles; es, embryo sac; fs, false septum; lb, lateral bundles; o, ovule; stg, stigma; sty, style; t, trichomes; tt, transmission tissue; ut, peripheral, strongly stained tissue; vb, ventral bundles; vs, ventral slit) in Observations on flower and fruit anatomy in dioecious species of Cordia (Cordiaceae, Boraginales) with evolutionary interpretations

◂Fig. 3 Gynoecium of C. crenata %yellow frames), C. cf. grandicalyx %blue frames) and C. sinensis %pink frames; A, B stack shot images; C–K light microscopy; G polarised light; TS in horizontal orientation). A, B Anthetic female flower, calyx and corolla partly removed. B LS of gynoecium. C LS of functionally female flower %note strongly stained peripheral tissue of corolla, anther and gynoecium). D LS of gynoecium. E, F TS of functionally female flower %note strongly stained, peripheral tissue). G TS of functionally female flower %note crystal deposition). H LS of ovule %note stalked embryo sac). J TS of functionally male flower with non-functional ovules. K LS of functionally male flower %style lacking, original position indicated by an asterisk) %LS, longisection; TS, transverse section; a,anther; bs, basal septum; c, calyx; car, carpel; co, corolla; db, dorsal bundles; es, embryo sac; fs, false septum; lb, lateral bundles; o, ovule; stg, stigma; sty, style; t, trichomes; tt, transmission tissue; ut, peripheral, strongly stained tissue; vb, ventral bundles; vs, ventral slit)

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Рис. 3. Namlika orbiculatovalva M. Omelko et N. Omelko, sp. nov., генитаΛии (A–C — самец: A — общий виΑ, B — эΑеагус, C — стернит и тергит 8-го сегмента брюшка с пучками анΑрокониаΛьных чешуек; D, E — самка) Fig. 3. Namlika orbiculatovalva M. Omelko et N. Omelko, sp. nov., genitalia, (A–C — male: A — general side view, B — aedeagus, C — sternite, tergite and bundles of androconial scales on the 8th abdominal segment; D, E — female) in Two new species of gelechiid moths from the genus Namlika M. Omelko et N. Omelko (Lepidoptera: Gelechiidae, Gelechiinae) from Borneo

Рис. 3. Namlika orbiculatovalva M. Omelko et N. Omelko, sp. nov., генитаΛии (A–C — самец: A — общий виΑ, B — эΑеагус, C — стернит и тергит 8-го сегмента брюшка с пучками анΑрокониаΛьных чешуек; D, E — самка) Fig. 3. Namlika orbiculatovalva M. Omelko et N. Omelko, sp. nov., genitalia, (A–C — male: A — general side view, B — aedeagus, C — sternite, tergite and bundles of androconial scales on the 8th abdominal segment; D, E — female)

opencc-by-4.0Dec 2022View details →
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Рис. 2. Namlika aculeatovalva M. Omelko et N. Omelko, sp. nov., генитаΛии (A, B — самец: A — общий виΑ со стернитом, тергитом и пучком анΑрокониаΛьных чешуек, B — эΑеагус; C — самка) Fig. 2. Namlika aculeatovalva M. Omelko et N. Omelko, sp. nov., genitalia (A, B – male: A — general side view with sternite, tergite and bundle of androconial scales; B — aedeagus; C — female) in Two new species of gelechiid moths from the genus Namlika M. Omelko et N. Omelko (Lepidoptera: Gelechiidae, Gelechiinae) from Borneo

Рис. 2. Namlika aculeatovalva M. Omelko et N. Omelko, sp. nov., генитаΛии (A, B — самец: A — общий виΑ со стернитом, тергитом и пучком анΑрокониаΛьных чешуек, B — эΑеагус; C — самка) Fig. 2. Namlika aculeatovalva M. Omelko et N. Omelko, sp. nov., genitalia (A, B – male: A — general side view with sternite, tergite and bundle of androconial scales; B — aedeagus; C — female)

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Рис. 3. Semipsoricoptera longiaurita gen. nov., sp. nov., генитаΛии самца (A, B — снизу и сбоку; C — стернит, тергит и пучки анΑрокониаΛьных чешуек на 8-м сегменте брюшка) Fig. 3. Semipsoricoptera longiaurita gen. nov., sp. nov., male genitalia (A, B — ventral and lateral view; C — sternite, tergite and bundles of androconial scales on the 8th abdominal segment) in A new genus and two new species of gelechiid moths from the subfamily Gelechiinae (Lepidoptera, Gelechiidae) from Borneo

Рис. 3. Semipsoricoptera longiaurita gen. nov., sp. nov., генитаΛии самца (A, B — снизу и сбоку; C — стернит, тергит и пучки анΑрокониаΛьных чешуек на 8-м сегменте брюшка) Fig. 3. Semipsoricoptera longiaurita gen. nov., sp. nov., male genitalia (A, B — ventral and lateral view; C — sternite, tergite and bundles of androconial scales on the 8th abdominal segment)

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Рис. 2. Anicilla bicornuta M. Omelko et N. Omelko, nom. nov., sp. nov., генитаΛии (A, B — самец: A — общий виΑ сбоку; B — стернит, тергит и пучки анΑрокониаΛьных чешуек на 8-м сегменте брюшка; C — самка) Fig. 2. Anicilla bicornuta M. Omelko et N. Omelko nom. nov., sp. nov., genitalia (A, B — male: A — lateral view; B — sternite, tergite and bundles of androconial scales on the 8th abdominal segment; C — female) in A new genus and two new species of gelechiid moths from the subfamily Gelechiinae (Lepidoptera, Gelechiidae) from Borneo

Рис. 2. Anicilla bicornuta M. Omelko et N. Omelko, nom. nov., sp. nov., генитаΛии (A, B — самец: A — общий виΑ сбоку; B — стернит, тергит и пучки анΑрокониаΛьных чешуек на 8-м сегменте брюшка; C — самка) Fig. 2. Anicilla bicornuta M. Omelko et N. Omelko nom. nov., sp. nov., genitalia (A, B — male: A — lateral view; B — sternite, tergite and bundles of androconial scales on the 8th abdominal segment; C — female)

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ScienceDex guides

Understand access before you commit

These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.

Compare curated 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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record