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Fig 4 in A mountain of millipedes III: A new genus for three new species from the Udzungwa Mountains and surroundings, Tanzania, as well as several 'orphaned' species previously assigned to Odontopyge Brandt, 1841 (Diplopoda, Spirostreptida, Odontopygidae)
Fig 4. Geotypodon millemanus gen. et sp. nov., paratype from Kiranzi-Kitungulu FR. A–E: Right gonopod. A. Posterior view. B. Anterior view, telomere in red oval. C. (Posterior-)mesal view, solenomere (yellow) and proximal telomeral spine (green) coloured. D. (Anterior-)mesal view. E. Telomere (part of coxa at lower left), basal (dorsal) view. F. Limbus. Abbreviations: atl = anterior distal lobe of telomere; bl = basal lamella of telomere; itl = intermediate distal lamella of telomere; ll = longitudinal lamella; mf = anteriad metaplical flange; mla = metaplical lamella; mp = metaplica; msp = metaplical spine-like process; pn = posttorsal narrowing; pp = proplica; ptl = posterior distal lobe of telomere; pts = proximal telomeral spine; slm = solenomere; tt = torsotope. Scales: A–E = 0.1 mm, F = 0.01 mm.
Fig. 1 in A mountain of millipedes III: A new genus for three new species from the Udzungwa Mountains and surroundings, Tanzania, as well as several 'orphaned' species previously assigned to Odontopyge Brandt, 1841 (Diplopoda, Spirostreptida, Odontopygidae)
Fig. 1. Map of the Udzungwa Mountains, showing the collecting sites for the three new Geotypodon species, as well as names of the Forest Reserves in question and names of individual mountains in West Kilombero FR. Red diamonds = G. millemanus gen. et sp. nov., yellow dot: G. submontanus gen. et sp. nov., blue triangle: G. iringensis gen. et sp. nov. Based on fig. 1 in Marshall et al. (2010) and information in Doody et al. (2001).
Fig. 8 in Two atypical new species of the genus Sectonema Thorne, 1930 (Nematoda, Dorylaimida, Aporcelaimidae) from Vietnam
Fig. 8. Sectonema vietnamense sp. nov. (LM, type population). A. ♁, entire. B–C. Anterior region in lateral, median view. D. ♀, anterior genital branch. E. ♁, posterior body region. F. Oviduct-uterus junction. G. Lip region in lateral, surface view. H. Vagina. I. ♁, caudal region. J–K. Spicules. L. ♀, caudal region. Scale bars: A = 500 μm; B–C, H = 10 μm; D = 100 μm; E–F = 50 μm; G = 5 μm; I–L = 20 μm.
Fig. 7 in Two atypical new species of the genus Sectonema Thorne, 1930 (Nematoda, Dorylaimida, Aporcelaimidae) from Vietnam
Fig. 7. Sectonema vietnamense sp. nov. (Line). A. Anterior region in median, lateral view. B. Lip region in surface, lateral view. C. Neck region. D. Vagina. E. ♀, anterior genital branch. F. ♁, entire. G. ♀, entire. H. ♁, posterior body region. I. ♀, posterior body region. J. Spicule. K. Lateral guiding piece.
Fig. 5. Bayesian 50 in Two atypical new species of the genus Sectonema Thorne, 1930 (Nematoda, Dorylaimida, Aporcelaimidae) from Vietnam
Fig. 5. Bayesian 50% majority rule consensus trees as inferred from D2–D3 expansion segments of 28S rRNA gene sequence alignments under the GTR + I + G model. Posterior probabilities are given for appropriate clades. Newly obtained sequences are indicated by bold letters.
Fig. 3 in Two atypical new species of the genus Sectonema Thorne, 1930 (Nematoda, Dorylaimida, Aporcelaimidae) from Vietnam
Fig. 3. Sectonema tropicum sp. nov. (LM). A. ♁, posterior body region. B. ♀, posterior body region. C. ♀, caudal region. D. ♁, caudal region. E–G. Spicules, E–F also showing the lateral guiding piece. Scale bars: A–B = 20 μm; C–G = 10 μm.
Fig. 2 in Two atypical new species of the genus Sectonema Thorne, 1930 (Nematoda, Dorylaimida, Aporcelaimidae) from Vietnam
Fig. 2. Sectonema tropicum sp. nov. (LM). A, C, E. Anterior region in lateral, median view. B. Lip region in lateral, surface view. D. Neck region. F. Pharyngo-intestinal junction. G. Vagina. H. ♀, anterior genital branch. I. Vagina and anterior uterus containing sperm cells inside. J. Uterine egg. Scale bars: A–B, E, G = 10 μm; C, F, I–J = 20 μm; D, H = 50 μm.
Fig. 1 in Two atypical new species of the genus Sectonema Thorne, 1930 (Nematoda, Dorylaimida, Aporcelaimidae) from Vietnam
Fig. 1. Sectonema tropicum sp. nov. (Line). A. Lip region in lateral surface view. B. Anterior region in mid-optical level, lateral view. C. Neck region. D. ♀, anterior genital branch. E. Vagina. F. ♁, posterior body region. G. ♀, posterior body region. H. ♀, entire. I. ♁, entire. J. Lateral guiding piece. K. Spicule.
Fig. 2 in A mountain of millipedes III: A new genus for three new species from the Udzungwa Mountains and surroundings, Tanzania, as well as several 'orphaned' species previously assigned to Odontopyge Brandt, 1841 (Diplopoda, Spirostreptida, Odontopygidae)
Fig. 2. Geotypodon millemanus gen. et sp. nov., paratype from West Kilombero Scarp FR after nine years in alcohol. Photograph by N. Ioannou.
Fig. 3 in A mountain of millipedes III: A new genus for three new species from the Udzungwa Mountains and surroundings, Tanzania, as well as several 'orphaned' species previously assigned to Odontopyge Brandt, 1841 (Diplopoda, Spirostreptida, Odontopygidae)
Fig. 3. Body size of males of Geotypodon spp. Bold symbols indicate numbers of podous rings and midbody vertical diameter of the new species described here. Small circles and shaded areas indicate published measurements for other Geotypodon species.
Fig. 6 in Two atypical new species of the genus Sectonema Thorne, 1930 (Nematoda, Dorylaimida, Aporcelaimidae) from Vietnam
Fig. 6. Maximum Likelihood tree as inferred from D2–D3 expansion segments of 28S rRNA gene sequence alignments under the GTR + I + G model. Bootstrap values are given for appropriate clades. Newly obtained sequences are indicated by bold letters.
Fig. 4 in Two atypical new species of the genus Sectonema Thorne, 1930 (Nematoda, Dorylaimida, Aporcelaimidae) from Vietnam
Fig. 4. Sectonema tropicum sp. nov. (SEM, ♁). A. Lip region in ventral view. B. Lip region in frontal view. C. Lip region in lateral view. D. Lip region in sublateral view. E. Posterior body region in ventral view. F. Posterior body region in lateral view. G. Caudal region in sublateral view. Scale bars: A–D = 5 μm; E–F = 20 μm; G = 10 μm
Fig. 5 in A mountain of millipedes III: A new genus for three new species from the Udzungwa Mountains and surroundings, Tanzania, as well as several 'orphaned' species previously assigned to Odontopyge Brandt, 1841 (Diplopoda, Spirostreptida, Odontopygidae)
Fig. 5. Geotypodon submontanus gen. et sp. nov., holotype. A–E. Left gonopod. A. Anterior view. B. Posterior view. C. Apical part of coxa and proximal part of telopodite, anterior view. D. (Anterior-) mesal view. E. Posterior distal lobe of telomere; insertion highlights spine-like process. F. Limbus. Abbreviations: atl = anterior distal lobe of telomere; itl = intermediate distal lamella of telomere; ll = longitudinal lamella; mla = metaplical lamella; msp = metaplical spine-like process; ptl = posterior distal
Fig. 6 in A mountain of millipedes III: A new genus for three new species from the Udzungwa Mountains and surroundings, Tanzania, as well as several 'orphaned' species previously assigned to Odontopyge Brandt, 1841 (Diplopoda, Spirostreptida, Odontopygidae)
Fig. 6. Geotypodon iringensis gen. et sp. nov. A–D. Holotype, left gonopod. A. Anterior view. B. Posterior view. C. Mesal-ventral view. D. Telomere and solenomere, basal (dorsal) view. — E. Paratype, limbus. Abbreviations: atl = anterior distal lobe of telomere, bl = basal lamella of telomere, cx = coxa (seen from the basis, with remains of muscles); itl = intermediate distal lamella of telomere; lc = lateral concavity of coxa; lfl = longitudinally folded lamella; mf = anteriad metaplical flange; mp = metaplica; msp = metaplical spine-like process; pn = posttorsal narrowing; pp = proplica; ptl = posterior distal lobe of telomere; pts = proximal telomeral spine; slm = solenomere; tl = terminal lobe of telomere; tt = torsotope. Scales: A–D = 0.2 mm, E = 0.01 mm.
Fig. 4. Subpsaltria yangi Chen, 1943 in Review of the cicada genus Paharia Distant (Hemiptera, Cicadidae), with the description of a new species and its allied species
Fig. 4. Subpsaltria yangi Chen, 1943 (♂, exuvia). A. Dorsal view of body. B. Lateral view of body. C. Right fore leg, outer view. D. Spines at the apex of mid tibia. E. Spines at the apex of hind tibia. Abbreviations: apt = apical tooth of tibia; bt = blade of tibia; f = femur; fc = femoral comb; itf = intermediate tooth of femur; pbt = point of blade of tibia; ptf = posterior tooth of femur; t = trochanter; ti = tibia.
Fig. 3 in Review of the cicada genus Paharia Distant (Hemiptera, Cicadidae), with the description of a new species and its allied species
Fig. 3. Paharia putoni (Distant, 1892) (♂, adult), Turkey, Van, Kurubas Geçidi. A. Habitus, dorsal view. B. Habitus, ventral view. C. Head and thorax, dorsal view. D. Head and thorax, ventral view. E. Abdomen, ventral view. F. Pygofer, ventral view. G. Pygofer, lateral view. H. Left fore leg, showing the spines on fore femur.
Fig. 5 in Review of the cicada genus Paharia Distant (Hemiptera, Cicadidae), with the description of a new species and its allied species
Fig. 5. Distribution of the species of Paharia. Red square = Pa. lacteipennis (Walker, 1850); green triangle = Pa. putoni (Distant, 1892); purple circle = Pa. semenovi (Oshanin, 1906); brown pentagon = Pa. zevara (Kusnezov, 1931); yellow hexagon = Pa. insidiosa (Boulard, 1977) comb. nov.; black circle = Pa. oorschoti sp. nov.
Fig. 2 in Review of the cicada genus Paharia Distant (Hemiptera, Cicadidae), with the description of a new species and its allied species
Fig. 2. Paharia oorschoti sp. nov. (♂, exuvia, holotype). A. Dorsal view of body. B. Lateral view of body. C. Right fore leg, outer view. D. Spines at the apex of mid tibia. E. Spines at the apex of hind tibia. Abbreviations: acf = accessory tooth of femur; apt = apical tooth of tibia; bt = blade of tibia; f = femur; fc = femoral comb; itf = intermediate tooth of femur; pbt = point of blade of tibia; ptf = posterior tooth of femur; t = trochanter; ti = tibia.
Fig. 1 in Review of the cicada genus Paharia Distant (Hemiptera, Cicadidae), with the description of a new species and its allied species
Fig. 1. Paharia oorschoti sp. nov. (♂, adult, holotype). A. Habitus, dorsal view. B. Habitus, ventral view. C. Head and thorax, dorsal view. D. Head and thorax, ventral view. E. Abdomen, ventral view. F. Male pygofer, ventral view. G. Male pygofer, lateral view. H. Left fore leg, showing the spines on fore femur.
Fig. 10. A in The genus Diplommatina Benson, 1849 (Gastropoda: Caenogastropoda: Diplommatinidae) in Nepal, with the description of seven new species
Fig. 10. A. Scanning electron micrograph of Diplommatina folliculus (L. Pfeiffer, 1846) collected by T. Hutton at Simla, India (NHMUK no. 1856.9.15.22), scale bar 1 mm (Naggs 1997, fig. 10). B. Shell collected by W. Boys at Landour, India, showing the columellaris, the operculum and the inner parietalis (Prt1) (NHMUK no. 1842.7.4.492), scale bar 1 mm (Naggs 1997: fig. 11). C. T. Hutton's shell from Simla, India (NHMUK no. 1856.9.15.22), showing the columellaris.
ScienceDex guides
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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.