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5,312 results for “New Zealand”

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FIGURE 5 in The six-spotted spider mite, Eotetranychus sexmaculatus (Riley) (Trombidiformes: Tetranychidae) in Australia, New Zealand, Japan and USA: a revised morphological and molecular-based concept, synonyms, and related species

FIGURE 5. Eotetranychus sexmaculatus (A–H) and E. queenslandicus (I). Genital and pregenital area of specimens—(A–C) from Citrus spp. and X Citroncirus sp. in Florida, USA (A: Alachua County, B: Dunnellon Co., C: Suwannee Co.); (D–F) from grape and avocado in southwestern Western Australia (D: grape, E–F: avocado); (G) from Citrus sp. in Taiwan; (H) of E. asiaticus paratype from Ficus sp. in Okinawa, Japan; (I) of E. queenslandicus paratype from Codaeium variegatum in Freshwater, Queensland, Australia. Legend: FL—Florida (USA), WA—Western Australia, CA—California (USA), TA—Taiwan, PT—paratype

opennotspecifiedApr 2024View details →
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FIGURE 2 in The six-spotted spider mite, Eotetranychus sexmaculatus (Riley) (Trombidiformes: Tetranychidae) in Australia, New Zealand, Japan and USA: a revised morphological and molecular-based concept, synonyms, and related species

FIGURE 2. Majority rule consensus tree of 19802 trees generated by Bayesian MCMC analysis (10 million generations) of 451 bp fragment of COI from 33 Eotetranychus specimens representing 17 species (ingroup), and two Bryobia species (outgroup). Bayesian posterior probabilities>50% / Maximum Likelihood (ML) bootstrap supports (1000 repl.)>50% shown above branches.

opennotspecifiedApr 2024View details →
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FIGURE 7. Eotetranychus sexmaculatus. Female leg I in The six-spotted spider mite, Eotetranychus sexmaculatus (Riley) (Trombidiformes: Tetranychidae) in Australia, New Zealand, Japan and USA: a revised morphological and molecular-based concept, synonyms, and related species

FIGURE 7. Eotetranychus sexmaculatus. Female leg I, tibia and tarsus (only tibia in D); dorsal aspect (A) and ventral aspect (B– D). Illustrations are based on specimens from Citrus sp. in Florida and from Ficus virgata in Okinawa, and are representative of all populations studied. Red arrow indicates seta l′2 that is not present in many other Tetranychinae (including the representative Tetranychus sp. illustrated in Lindquist (1985:17)).

opennotspecifiedApr 2024View details →
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FIGURE 1 in The six-spotted spider mite, Eotetranychus sexmaculatus (Riley) (Trombidiformes: Tetranychidae) in Australia, New Zealand, Japan and USA: a revised morphological and molecular-based concept, synonyms, and related species

FIGURE 1. Aedeagus of E. sexmaculatus, reproduced from the literature. (A) McGregor 1919:659, 682 (Plate 78, figure 8); (B) McGregor 1950:390 (Plate XVII, figure 8); (C) Pritchard & Baker 1955:199 (figure 156); (D) Pritchard & Baker 1955:140 (figure 104, bottom left).

opennotspecifiedApr 2024View details →
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FIGURE 4 in The six-spotted spider mite, Eotetranychus sexmaculatus (Riley) (Trombidiformes: Tetranychidae) in Australia, New Zealand, Japan and USA: a revised morphological and molecular-based concept, synonyms, and related species

FIGURE 4. Eotetranychus sexmaculatus. Female habitus; dorsal idiosomal setae labelled; specimen from Citrus sp. in Florida, USA.

opennotspecifiedApr 2024View details →
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FIGURE 6 in The six-spotted spider mite, Eotetranychus sexmaculatus (Riley) (Trombidiformes: Tetranychidae) in Australia, New Zealand, Japan and USA: a revised morphological and molecular-based concept, synonyms, and related species

FIGURE 6. Eotetranychus sexmaculatus. (A) female palp and (B) male palp, with photos showing slight variation of dimension of tarsal spinneret; (C) variation in peritremes.

opennotspecifiedApr 2024View details →
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FIGURE 3 in The six-spotted spider mite, Eotetranychus sexmaculatus (Riley) (Trombidiformes: Tetranychidae) in Australia, New Zealand, Japan and USA: a revised morphological and molecular-based concept, synonyms, and related species

FIGURE 3. Majority rule consensus tree of 9902 trees generated by Bayesian MCMC analysis (5 million generations) of 643 bp fragment of ITS2 from 25 Eotetranychus specimens representing six species (ingroup), and three Brevipalpus species (outgroup). Bayesian posterior probabilities>50% / Maximum Likelihood (ML) bootstrap supports (1000 repl.)>50% shown above branches.

opennotspecifiedApr 2024View details →
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Figures 25–29 in Two red macroalgae newly introduced into New Zealand: Pachymeniopsis lanceolata (K. Okamura) Y. Yamada ex S. Kawabata and Fushitsunagia catenata Filloramo et G. W. Saunders

Figures 25–29: Field images. (25) Pachymeniopsis lanceolata on a pontoon in Te Ana Marina (Lyttelton). (26) Pachymeniopsis lanceolata on a mooring rope in Port Taranaki. (27) Fushitsunagia catenata on a pontoon in Te Ana Marina. (28) Grateloupia turuturu attached to the keel of a boat moored in Te Ana Marina. (29) Grateloupia subpectinata on a pontoon in Te Ana Marina.

opennotspecifiedMar 2021View details →
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Figures 17–24 in Two red macroalgae newly introduced into New Zealand: Pachymeniopsis lanceolata (K. Okamura) Y. Yamada ex S. Kawabata and Fushitsunagia catenata Filloramo et G. W. Saunders

Figures 17–24: Fushitsunagia catenata. Habit, vegetative and reproductive morphology. (17) A tetrasporic specimen collected in Lyttelton harbour (WELT A034384). Scale bar = 2 cm. (18) Alternate clavate branches of a tetrasporangial specimen (WEL A034384). Scale bar = 1 mm. (19) The abrupt transition between sub isodiametric cells of the pseudoparenchymatous inner cortex and the two or three layered outer cortex (WELT A034384). Scale bar = 20 μm. (20) Irregular branching of a cystocarpic specimen (WELT A034383). Scale bar = 1 cm. (21) Clustered sessile and basally constricted globose cystocarps (WELT A034383). Scale bar = 1 mm. (22) Surface of an ostiolate pericarp (WELT A034383). Scale bar = 1 mm. (23) Alternate or opposite branching of a tetrasporic specimen (WELT A034382). Scale bar = 1 cm. (24) Tetrasporangia encircling the inside margins of wide sorus opening (WELT A034382). Scale bar = 1 mm.

opennotspecifiedMar 2021View details →
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Figures 3–16 in Two red macroalgae newly introduced into New Zealand: Pachymeniopsis lanceolata (K. Okamura) Y. Yamada ex S. Kawabata and Fushitsunagia catenata Filloramo et G. W. Saunders

Figures 3–16: Pachymeniopsis lanceolata. Habit, vegetative and reproductive morphology. (3–10) Morphological variation of samples collected in Lyttelton (WELT A034375–A034381) and Taranaki (WELT A034374) (Figure 6). Scale bar = 2 cm. (11) Cross-section through a young blade showing the thin anticlinal cortex and a lax medulla composed of sparse periclinal filaments (WELT A034376). Scale bar = 20 μm. (12) Cross-section through a mature blade showing a thick cortex and a medulla composed of densely aggregated filaments (WELT A034380). Scale bar = 20 μm. (13) Tetrasporangia (arrows) borne in and dislodged from the cortex (WELT A034377). Scale bar = 20 μm. (14) A carpogonial branch ampulla. Arrow shows trichogyne (WELT A034381). Scale bar = 20 μm. (15) An auxiliary cell ampulla. Arrow shows auxiliary cell (WELT A034381). Scale bar = 20 μm. (16) mature carposporophytes, the distal globular consolidated gonimolobes borne aloft on a columnar fusion cell into the central cystocarp chamber (WELT A034380). Scale bar = 20 µm.

opennotspecifiedMar 2021View details →
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Figure 1 in Two red macroalgae newly introduced into New Zealand: Pachymeniopsis lanceolata (K. Okamura) Y. Yamada ex S. Kawabata and Fushitsunagia catenata Filloramo et G. W. Saunders

Figure 1: Statistical parsimony network of cox3 haplotype sequences of Pachymeniopsis lanceolata from GenBank (Kim et al. 2014). Haplotypes marked (C1–C10, C17); samples from New Zealand had haplotype C9 and C17. Cross line indicates a 1 bp mutational step between haplotypes (circles).

opennotspecifiedMar 2021View details →
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Figure 2 in Two red macroalgae newly introduced into New Zealand: Pachymeniopsis lanceolata (K. Okamura) Y. Yamada ex S. Kawabata and Fushitsunagia catenata Filloramo et G. W. Saunders

Figure 2: Maximum-likelihood phylogeny (−log Ln = 4394.6502) of rbcL sequences of Fushitsunagia catenata and related sequences from GenBank. Genera from the family Lomentariaceae added. Gloiocladia laciniata (Faucheaceae) used as an outgroup. Model used for codons (first = TN + F + I_G4; second = TN + F + I + G4; third = TPM3 + F + I). Scale bar = substitution/site.

opennotspecifiedMar 2021View details →
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FIGURE 13 in Two new species of Petalophthalmus and Ipirophthalmus (Crustacea: Mysida: Petalophthalmidae), from New Zealand

FIGURE 13. Petalophthalmus lobatus sp. nov., holotype female NIWA 135622. Telson and uropod, dorsal view.

opennotspecifiedNov 2021View details →
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FIGURE 14 in Two new species of Petalophthalmus and Ipirophthalmus (Crustacea: Mysida: Petalophthalmidae), from New Zealand

FIGURE 14. Ipirophthalmus crusulus sp. nov., holotype female NIWA 135618 (4.9 mm CL, preserved in ethanol), top. Petalophthalmus lobatus sp. nov., adult female NIWA 10754 (7.2 mm CL, preserved in formalin), bottom.

opennotspecifiedNov 2021View details →
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FIGURE 12 in Two new species of Petalophthalmus and Ipirophthalmus (Crustacea: Mysida: Petalophthalmidae), from New Zealand

FIGURE 12. Petalophthalmus lobatus sp. nov., A–E, paratype female NIWA 147401. F, adult female NIWA 147403. G–K, allotype male NIWA 147408. L–P, juvenile male NIWA 135623. A, F, G, L, first pleopod. B, H, M, second pleopod. C, I, N, third pleopod. D, J, O, fourth pleopod. E, K, P, fifth pleopod.

opennotspecifiedNov 2021View details →
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FIGURE 11 in Two new species of Petalophthalmus and Ipirophthalmus (Crustacea: Mysida: Petalophthalmidae), from New Zealand

FIGURE 11. Petalophthalmus lobatus sp. nov., A–D, G, paratype female NIWA 147401, E, F, allotype male NIWA 147408. A, fifth thoracopod (exopod not drawn). B, sixth thoracopod. C, seventh thoracopod. D, eighth thoracopod. E, third thoracopod. F, eight thoracopod and penis. G, ventilation lobe of seventh oostegite.

opennotspecifiedNov 2021View details →
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FIGURE 9 in Two new species of Petalophthalmus and Ipirophthalmus (Crustacea: Mysida: Petalophthalmidae), from New Zealand

FIGURE 9. Petalophthalmus lobatus sp. nov., paratype female NIWA 147401. A, mandibular palp, lateral view. B, right mandible, ventral view. C, left mandible, ventral view. D, labrum. E, maxilla. F, maxillule.

opennotspecifiedNov 2021View details →
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FIGURE 7 in Two new species of Petalophthalmus and Ipirophthalmus (Crustacea: Mysida: Petalophthalmidae), from New Zealand

FIGURE 7. Ipirophthalmus crusulus sp. nov., holotype female NIWA 135618. Telson and uropod, dorsal view.

opennotspecifiedNov 2021View details →
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FIGURE 6 in Two new species of Petalophthalmus and Ipirophthalmus (Crustacea: Mysida: Petalophthalmidae), from New Zealand

FIGURE 6. Ipirophthalmus crusulus sp. nov., A–E, paratype female NIWA 135619; F–J, allotype male NIWA 135620. K–O, paratype juvenile male NIWA 157310. A, F, K, first pleopod. B, G, L, second pleopod. C, H, M, third pleopod. D, I, N, fourth pleopod. E, J, O, fifth pleopod.

opennotspecifiedNov 2021View details →
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FIGURE 5 in Two new species of Petalophthalmus and Ipirophthalmus (Crustacea: Mysida: Petalophthalmidae), from New Zealand

FIGURE 5. Ipirophthalmus crusulus sp. nov., paratype female NIWA 135619. A, fifth thoracopod. B, sixth thoracopod. C, seventh thoracopod. D, eighth thoracopod.

opennotspecifiedNov 2021View details →

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Allen Brain Atlas

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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.

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electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
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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.

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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
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Last verified 2026-04-29Open record