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477 results for “Myriapoda”
Figs. 180–191 in New species of Pauropoda (Myriapoda) from Tasmanian temperate rainforests
Figs. 180–191. Pauropus vandiemeni sp.nov., holotype 180–185, 187–191, paratype 186: 180, head, median and right part, tergal view; 181, temporal organ, posterior part, lateral view; 182, right antenna, sternal view; 183, collum segment, median and left part, sternal view; 184, tergite VI, posteromedian part; 185, genital papillae and seta on coxa of 2nd pair of legs, anterior view; 186, genital papillae and seta of coxa of 2nd pair of legs in subad. 8; 187, seta on coxa of 9th pair of legs; 188, seta on trochanter of 9th pair of legs; 189, tarsus of 9th pair of legs; 190, pygidium, sternal view; 191, anal plate, lateral view. Scale line a for figures 180, 181, 183–191; b for figure 182.
Figs. 25–38 in New species of Pauropoda (Myriapoda) from Tasmanian temperate rainforests
Figs. 25–38. Decapauropus heis sp.nov., holotype 25–31, 33–38; paratype 32: 25, head, median and right part, tergal view; 26, posterior part of temporal organ; 27, right antenna, sternal view; 28, collum segment, median and left part, sternal view; 29, tergite VI, posterior part; 30, T; 31, 1 T; 32, genital papillae and seta on coxa of 2nd pair of legs, anterior view; 33, seta on coxa of 9th pair of legs, 34, seta on trochanter of 9th pair 3 of legs; 35, tarsus of 9th pair of legs; 36, pygidium, posterior part, sternal view; 37, anal plate, lateral view; 38, anal plate, tergal view. Scale line a for figures 30–35; b for figures 25, 28; c for figures 26, 27, 29, 36–38.
Figs. 1–11 in New species of Pauropoda (Myriapoda) from Tasmanian temperate rainforests
Figs. 1–11. Allopauropus fraterculus sp.nov., holotype 1–6, 8–11; paratype 7: 1, head, median and right part, tergal view; 2, right antenna, sternal view; 3, collum segment, median and left part, sternal view; 4, tergite VI, posterior part; 5, T; 6, T; 7, right genital papilla and seta on coxa of 1 3 2nd pair of legs, anterior view; 8, seta on trochanter of 9th pair of legs; 9, tarsus of 9th pair of legs; 10, pygidium, posterior and left part, sternal view; 11, anal plate, lateral view. Scale line a for figures 5, 6, 8, 9; b for figures 1–3, 4, 7; c for figures 10, 11.
Figs. 12–24 in New species of Pauropoda (Myriapoda) from Tasmanian temperate rainforests
Figs. 12–24. Allopauropus inusitatus sp.nov., holotype 12–19; 21–24, paratype 20: 12, head, median and right part, tergal view; 13, left temporal organ, sternal view; 14, temporal organ, posterior part; 15, left antenna, sternal view; 16, collum segment, median and left part, sternal view; 17, tergite VI, posterior part; 18, T; 19, T; 20, genital papillae and seta on coxa of 2nd pair of legs; 21, seta on coxa of 9th pair of legs; 22, tarsus of 1 3 9th pair of legs; 23, pygidium, posteromedian and left part, sternal view, to the right setae a (above) and st; 24, anal plate, lateral view. Scale line 1 a for figure 20; b for figures 18,19; c for figures 12–14, 16, 17, 21, 22; d: 15, 23, 24.Figs. 39–43.
Figs. 51–61 in New species of Pauropoda (Myriapoda) from Tasmanian temperate rainforests
Figs. 51–61. Decapauropus ungulatus sp.nov., holotype: 51, head, median and right part, tergal view; 52, temporal organ, posterolateral part, lateral view; 53, left antenna, sternal view; 54, collum segment, median and left part, sternal view; 55, T; 56, T; 57, seta on coxa of 9th pair of 1 3 legs; 58, seta on trochanter of 9th pair of legs; 59, tarsus of 9th pair of legs; 60, pygidium, posterior and left part, sternal view; 61, anal plate, lateral view. Scale line a for figures 55, 56; b for figures 51, 52, 54, 57–59; c for figures 60, 61; d: 53.
Figs. 128–141 in New species of Pauropoda (Myriapoda) from Tasmanian temperate rainforests
Figs. 128–141. Stylopauropoides quadripartitus sp.nov., holotype 128–135, 137–141; paratype 136: 128, head, median and right part, tergal view; 129, temporal organ, posterior part with pistil, lateral view; 130, right antenna, tergal view; 131, 3rd antennal segment, tergal view; 132, collum segment, median and left part, sternal view; 133, tergite VI, posterior part; 134, T; 135, T; 136, genital papillae and seta on coxa of 2nd pair of 1 3 legs, anterior view; 137, seta on coxa of 9th pair of legs; 138, seta on trochanter of 9th pair of legs; 139, tarsus of 9th pair of legs; 140, pygidium, median and left part, sternal view; 141, anal plate, lateral view. Scale line a for figures 133–136; b for figures 128, 129, 132, 137–139; c for figures 130, 131, 140, 141.
Figs. 94–104 in New species of Pauropoda (Myriapoda) from Tasmanian temperate rainforests
Figs. 94–104. Nesopauropus tasmaniensisr sp.nov., holotype: 94, head, median and right part, tergal view; 95, right antenna, sternal view; 96, collum segment, median and left part, sternal view; 97, tergite VI, posterior part; 98, T; 99, T; 100, seta on coxa of 9th pair of legs; 101, seta on 1 3 trochanter of 9th pair of legs; 102, tarsus of 9th pair of legs; 103, pygidium, posterior part, sternal tergal view; 104, anal plate, lateral view. Scale line a for figures 98, 99; b for figures 100–102; c for figures 94–97, 103, 104.
Figs. 169–179 in New species of Pauropoda (Myriapoda) from Tasmanian temperate rainforests
Figs. 169–179. Stylopauropoides eximiusr sp.nov., holotype: 169, head, median and right part, tergal view; 170, temporal organ, posterior part with pistil, lateral view; 171, left antenna, sternal view; 172, collum segment, median and left part, sternal view; 173, tergite VI, posterior part; 174, T; 175, T; 176, seta on trochanter of 9th pair of legs; 177, tarsus of 9th pair of legs; 178, pygidium, sternal view; 179, anal plate, lateral view. 1 3 Scale line a for figures 174–177; b for figures 169, 170, 172, 173, 178, 179; c for figure 171.
Figs. 72–81 in New species of Pauropoda (Myriapoda) from Tasmanian temperate rainforests
Figs. 72–81. Decapauropus saltuariusr sp.nov., holotype: 72, head, median and right part, tergal view; 73, temporal organ, posterior part, lateral view; 74, left antenna, sternal view; 75, collum segment, median and left part, sternal view; 76, tergite VI, posterior part; 77, T; 78, genital 3 papillae and seta on coxa of 2nd pair of legs; 79, seta on trochanter of 9th pair of legs; 80, tarsus of 9th pair of legs; 81, pygidium, posterior and left part, sternal view: Scale line a for figures 77, 80; b for figures 72, 73, 75, 76, 78, 79; c for figures 74, 81.
Figs. 39–43 in New species of Pauropoda (Myriapoda) from Tasmanian temperate rainforests
Figs. 39–43. Decapauropus attenuatus sp.n., holotype: 39, head, median and right part, tergal view; 40, right temporal organ, posterior part, lateral view; 41, left antenna, tergal view; 42, collum segment, median and left part, sternal view; 43, tergite VI, posterior part. Scale line a for figures 39, 40, 42; b for figures 41, 43.
figure 10 in Morphology and mating behaviour in the millipede Megaphyllum unilineatum (C.L. Koch, 1838) (Myriapoda, Diplopoda, Julida) under laboratory conditions
figure 10 Canonical variate analysis (cva) of differences in promere shape between males with different mating status (bars: grey – mated males; white –non-mated males).
figure 9 in Morphology and mating behaviour in the millipede Megaphyllum unilineatum (C.L. Koch, 1838) (Myriapoda, Diplopoda, Julida) under laboratory conditions
figure 9 Canonical variate analysis (cva) of differences in walking leg shape between males and females with different mating status (rectangles: black – mated males, white – non-mated males; circles: black – mated females, white – non-mated females).
figure 7 in Morphology and mating behaviour in the millipede Megaphyllum unilineatum (C.L. Koch, 1838) (Myriapoda, Diplopoda, Julida) under laboratory conditions
figure 7 Canonical variate analysis (cva) of differences in antennal shape between males and females with different mating status (rectangles: black – mated males, white – non-mated males; circles: black – mated females, white – non-mated females).
figure 8 in Morphology and mating behaviour in the millipede Megaphyllum unilineatum (C.L. Koch, 1838) (Myriapoda, Diplopoda, Julida) under laboratory conditions
figure 8 Canonical variate analysis (cva) of differences in head shape between males and females with different mating status (rectangles: black – mated males, white – non-mated males; circles: black – mated females, white – non-mated females). Downloaded from Brill.com 06/24/2024 12:52:58AM via Open Access. This is an open access article distributed under the terms of the CC-BY 4.0 license. https://creativecommons.org/licenses/by/4.0/
figure 3 in Morphology and mating behaviour in the millipede Megaphyllum unilineatum (C.L. Koch, 1838) (Myriapoda, Diplopoda, Julida) under laboratory conditions
figure 3 Individuals of both sexes and sequences of sexual behaviour in M. unilineatum. A – male; B – female; C, D, E – contact; F, G, H, I, J, K – extrusion of gonopods (arrows); L, M, N – copulation. photo by B. Ilić
figure 2 in Morphology and mating behaviour in the millipede Megaphyllum unilineatum (C.L. Koch, 1838) (Myriapoda, Diplopoda, Julida) under laboratory conditions
figure 2 Digitalized landmarks on antenna (A) and leg (C) of the species M. unilineatum are shown, as well as digitalized landmarks and semi-landmarks on its head (B), promere (D), and opisthomere (E). See supplementary text S1 for descriptions of landmarks and Downloaded semi-landmarksfrom.Brill.com 06/24/2024 12:52:58AM via Open Access. This is an open access article distributed under the terms of the CC-BY 4.0 license. https://creativecommons.org/licenses/by/4.0/
figure 6 in Morphology and mating behaviour in the millipede Megaphyllum unilineatum (C.L. Koch, 1838) (Myriapoda, Diplopoda, Julida) under laboratory conditions
figure 6 Morphological variation in centroid size (CS) of antennae (A), head (B), walking legs (C), promeres (D), and opisthomeres (E) between individuals with different mating status. The median with the first and the third quartiles is shown (in boxes), together with the range of variation and outliers.
figure 5 in Morphology and mating behaviour in the millipede Megaphyllum unilineatum (C.L. Koch, 1838) (Myriapoda, Diplopoda, Julida) under laboratory conditions
figure 5 Morphological variation of body mass (A), body length (B), antennal length (C), walking leg length (D), trunk width (E), and trunk height (F) between males and females with different mating status. Morphological variation of flagellum length (FL) between mated and non-mated males (G) is also depicted. The median with the first and the third quartiles is shown (in boxes), together with the range of variation and outliers.
figure 4 in Morphology and mating behaviour in the millipede Megaphyllum unilineatum (C.L. Koch, 1838) (Myriapoda, Diplopoda, Julida) under laboratory conditions
figure 4 Percentage of copulations in female and male choice tests (grey bars – mating with previous partner; white bars – mating with new partner).
Figura 13. A in Catálogo de los milpiés (Myriapoda: Diplopoda) de Chile
Figura 13. A. Vista general de Puerto Montt. Cuadrado blanco = Zona de interés. B. Estero Pichi Pilluco en 1966 (modificado de SHOA 1966). Se puede observar que la urbanización todavÍa no alcanza el estero. C. Estero Pichi Pilluco en la actualidad. Se aprecia urbanización alrededor del estero (mapa/plano de calles para mejor visualización del estero). LÍneas rojas = Curso del estero.
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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.