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5,312 results for “New Zealand”

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Fig. 4 in On Powellithecidae fam. nov., a new Pliocene to Recent bryozoan family endemic to New Zealand, with the description of Powellitheca gen. nov. (Bryozoa, Cheilostomata)

Fig. 4. Powellitheca waipukurensis (Waters, 1887) comb. nov. NHMUK BZ 7744, Nukumaruan, Pleistocene, Nukumaru Limestone, Waiinu Beach. Two colonies of P. waipukurensis encrusting a bivalve shell, competing with other bryozoan species for space. Note the band of fertile zooids with large, globular ovicells.

opencc-by-4.0Dec 2016View details →
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Fig. 6 in On Powellithecidae fam. nov., a new Pliocene to Recent bryozoan family endemic to New Zealand, with the description of Powellitheca gen. nov. (Bryozoa, Cheilostomata)

Fig. 6. Powellitheca waipukurensis (Waters, 1887) comb. nov. Nukumaruan, Pleistocene, Nukumaru Limestone, Waiinu Beach. A–F. NHMUK BZ 7744. A. General view of two colonies encrusting a bivalve shell. B. Fusion of the two colonies shown in A and formation of kenozooids along the encountering edge. C. Group of fertile zooids and autozooids. D. Ancestrula and early ontogeny. E. Close-up of the minimally calcified ancestrula. F. Autozooidal orifice and avicularium. — G–H. NHMUK BZ 7745. G. Internal view of the proximal, convex, orificial rim lacking a lyrula. H. Multiporous septula on the zooidal vertical walls. Scale bars: A = 1 mm; B = 500 µm; C–D = 200 µm; E–F = 100 µm; G–H = 20 µm.

opencc-by-4.0Dec 2016View details →
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Fig. 3 in On Powellithecidae fam. nov., a new Pliocene to Recent bryozoan family endemic to New Zealand, with the description of Powellitheca gen. nov. (Bryozoa, Cheilostomata)

Fig. 3. Powellitheca labiosa gen. et sp. nov. NIWA 98320 (A–C, E–F), 98229 (D), Recent, Three King Islands, New Zealand. A. Group of fertile zooids and autozooids. B. Tilted view of the primary orifice of an autozooid. Note the lack of a lyrula. C. Close-up of the frontal, multiporous septula on the distolateral corners and the funnel-shaped pseudopores on the frontal shield. D. Lateral, multiporous septula on the zooidal vertical walls. E–F. Tilted view of the orifice of fertile zooids. Scale bars: A = 500 µm; B–C = 100 µm; D = 200 µm; E = 250 µm; F = 150 µm.

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Fig. 2 in On Powellithecidae fam. nov., a new Pliocene to Recent bryozoan family endemic to New Zealand, with the description of Powellitheca gen. nov. (Bryozoa, Cheilostomata)

Fig. 2. Powellitheca terranovae gen. et sp. nov. NIWA 98983, Recent, Stephens Hole, NZOI Station Q686, New Zealand. A. Group of fertile zooids and autozooids. B. Close-up of an autozooid showing frontal, multiporous septula on the distolateral corners. C. Lateral, multiporous septula on the vertical walls of a maternal zooid. Note also the prominent, suboral umbo. D. Avicularium. E. Tilted view of an autozooidal orifice to show the anvil-shaped, downwardly directed lyrula. F. Orifice of a maternal zooid and incomplete ooecium. Scale bars: A = 250 µm; B–C = 100 µm; D–E = 50 µm; F = 150 µm.

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Fig. 1 in On Powellithecidae fam. nov., a new Pliocene to Recent bryozoan family endemic to New Zealand, with the description of Powellitheca gen. nov. (Bryozoa, Cheilostomata)

Fig. 1. Emballotheca quadrata (MacGillivray, 1880), NHMUK 1897.5.1.830, Recent, Port Phillip Heads, Victoria, Australia. A. General view of the colony. B. Autozooidal orifice and avicularia. C. Close-up of a condyle with scaled tip. D. Fertile zooid and surrounding autozooids. E. Large, spatulate, frontal avicularium and lateral pore-chamber windows in the vertical walls. Scale bars: A = 500 µm; B = 40 µm; C = 10 µm; D = 200 µm; E = 100 µm.

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Fig. 5 in On Powellithecidae fam. nov., a new Pliocene to Recent bryozoan family endemic to New Zealand, with the description of Powellitheca gen. nov. (Bryozoa, Cheilostomata)

Fig. 5. Powellitheca waipukurensis (Waters, 1887) comb. nov. Specimen figured by Brown (1952: fig. 203), NHMUK D36986, Mangapanian, Early Pliocene, Hawkes Bay, Waipukurau Gorge. A. General view of the colony. B. Group of autozooids and fertile zooids showing the dimorphic orifices. C. Group of zooids with avicularia. D. Autozooids. Scale bars: A = 500 µm; B–C = 200 µm; D = 100 µm.

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Fig. 7 in On Powellithecidae fam. nov., a new Pliocene to Recent bryozoan family endemic to New Zealand, with the description of Powellitheca gen. nov. (Bryozoa, Cheilostomata)

Fig. 7. Powellitheca terranovae gen. et sp. nov. Underwater photograph taken by Dr. Vincent Zintzen (Department of Conservation, NZ) at the Poor Knights Islands, off the NE coast of North Island, north of Auckland, New Zealand. Note the band of yellow pigment at the colony's growing edges and the 19 yellow tentacles of the autozooids.

opencc-by-4.0Dec 2016View details →
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Non-Poissonian Forecast and Hazard source files - New Zealand National Seismic Hazard Model 2022

<h3>This repository contains:</h3><ul><li>The forecast's files for the Distributed Seismicity Model of the NZNSHM2022, as well as figures, and the Paraview files to explore them in the software interactively. (https://www.paraview.org/)</li><li>The Openquake source files (https://github.com/gem/oq-engine) to run the NZ-NSHM2022 model using the non-Poisson forecasts as single branches.</li></ul><h3>Installation instructions</h3><p>For reproducibility, this package should install OpenQuake (https://github.com/gem/oq-engine) in its version v3.16.4. However, Openquake should remain backward compatible for the Negative Binomial formulation in the future. To install the version 3.16.4, a virtual environment can be created used Anaconda/Miniconda/Micromamba (the latter is recommended, see installation instructions https://mamba.readthedocs.io/en/latest/installation.html) by using:</p><blockquote><p><i>conda env create -f environment.yml</i></p></blockquote><p>This environment should already contain the Openquake version. If the Openquake software should be installed manually into an environment created by the user:</p><blockquote><p><i>source activate {user_env}</i></p><p><i>git clone https://github.com/gem/oq-engine --depth=1 --branch=v3.16.4</i></p><p><i>cd oq-engine</i></p><p>pip install -e .</p></blockquote><p>For additional information, please see the README.md file, or visit <a href="https://github.com/pabloitu/nz_nshm2022_nonpoisson">https://github.com/pabloitu/nz_nshm2022_nonpoisson</a></p>

opencc-by-4.0Nov 2023View details →
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Figure 5 in New taxa of Japanese and New Zealand Eurystomellidae (Phylum Bryozoa) and their phylogenetic relationships

Figure 5. The strict consensus of 39 final trees. Synapomorphies for each clade in the ingroups are indicated by solid bars: lunulitiform colony (1), encrusting colony (1¢), ancestrular attachment without cementation (2), subtatiform ancestrular frontal wall (3), gymnocystal foramina (6), lack of well-formed costae (8), zooid deeper than length (12), undifferentiated proximal corners of orificial anter (13), indented proximolateral corners of orificial poster (15), vestigial excavations in gymnocystal surface (16), small excavations in gymnocystal surface (16¢), lack of medial suture in proximal rim or orifice (18), maternal orifice slightly dimorphic (19), endozooidal brooding of embryos (20), two kenozooidal foramina (22), one central plus two small kenozooidal foramina (22¢), interzooidal communications with pore-chambers (25).

opencc-by-4.0Oct 2002View details →
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Figure 4 in New taxa of Japanese and New Zealand Eurystomellidae (Phylum Bryozoa) and their phylogenetic relationships

Figure 4. One of the 39 most parsimonious trees obtained from the final analysis carried out by PAUP*. The transformations of all 25 skeletal characters are mapped (cf. Character List).

opencc-by-4.0Oct 2002View details →
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Figure 3. A–C in New taxa of Japanese and New Zealand Eurystomellidae (Phylum Bryozoa) and their phylogenetic relationships

Figure 3. A–C, Integripeltra shirayamai sp. nov. Saiki-wan, Honshu. A, autozooids, x, 70. B, maternal zooids with foraminate kenozooids distally, ¥116. C, autozooidal orifice with proximal rim partly removed to show how the long crescentic slits are merely the frontal expressions of the proximolateral embayments of the orifice, ¥201. D, E, Integripelta umbonata sp. nov. NZOI Stn Z9697. F, autozooids and a maternal zooid with foraminate distal kenozooid, ¥106. G, prox-

opencc-by-4.0Oct 2002View details →
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Figure 2. A, B in New taxa of Japanese and New Zealand Eurystomellidae (Phylum Bryozoa) and their phylogenetic relationships

Figure 2. A, B. Integripelta novella sp. nov. Hokkaido, intertidal. A, autozooids and two maternal zooids, the kenozooid distal to the one at left lacking a foramen, ¥89. B, maternal zooid with distal foraminate kenozooid, ¥121. C, D, Integripelta japonica sp. nov. Mi-shimi, Honshu. C, autozooids and maternal zooids, ¥53. D, maternal orifice and kenozooid, ¥211. E, F, Integripelta sextaria sp. nov. NZOI Stn Z9700. E, autozooids and maternal zooids, ¥48. F, autozooidal orifice, ¥181.

opencc-by-4.0Oct 2002View details →
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Figure 1. A, B in New taxa of Japanese and New Zealand Eurystomellidae (Phylum Bryozoa) and their phylogenetic relationships

Figure 1. A, B, Eurystomella foraminigera. Greta Point, Wellington, intertidal. A, group of zooids, ¥65. B, suboral rim, showing triradiate suture, ¥803. C-E, Eurystomella biperforata sp. nov. C,E, NZOI Stn Z9700. C, group of autozooids, ¥53. D, NZOI Stn Z9677, maternal zooid with distal foraminate kenozooid, ¥95. E, rare zooid with a single foramen, ¥163. F, Eurystomella aupouria sp. nov. NZOI Stn Z9716, ¥63.

opencc-by-4.0Oct 2002View details →
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Late Quaternary activity of the NW Cardrona Fault, Otago, New Zealand - Supplements S1 and S2

<p>Supplementary material to accompany: van den Berg, E. J., Williams, J. N.*, Stirling, M. W., Barrell, D. J. A., Griffin, J. D., Litchfield, N. J., &amp; Wang, N. (2024). Late Quaternary activity of the NW Cardrona Fault, Otago, New Zealand. <em>New Zealand Journal of Geology and Geophysics</em>, 1&ndash;21. https://doi.org/10.1080/00288306.2023.2297962</p> <p>This dataset includes:</p> <ul> <li>Supplement S1: Supplementary figures S1-S3</li> <li>Supplement S2: Code used to generate the OxCal models for the Macdonalds Creek and Gibbston trenches</li> </ul> <p>*Corresponding author: jack.williams@otago.ac.nz</p>

opencc-by-4.0Dec 2023View details →
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Figure 7 in Amathillopsidae (Crustacea: Amphipoda) from New Zealand, Including the Description of a New Species

Figure 7. In situ image of three specimens of Amathillopsis lowry sp. nov. on sponge tubes, ROV Kiel 6000, Geomar, 4159 m depth, abyssal basin between Three Kings Ridge and Colville Ridge, Pacific Ocean.

opencc-by-4.0Dec 2023View details →
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Figure 3 in Amathillopsidae (Crustacea: Amphipoda) from New Zealand, Including the Description of a New Species

Figure 3. Amathilliopsis lowry sp. nov.: holotype male, 34.5 mm, NIWA 127043; paratype female, 29.5 mm, NIWA 156301 (A1 only). Scale 1 mm.

opencc-by-4.0Dec 2023View details →
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Figure 6 in Amathillopsidae (Crustacea: Amphipoda) from New Zealand, Including the Description of a New Species

Figure 6. Amathilliopsis lowry sp. nov.: (A) holotype male 34.5 mm, NIWA 127043; (B) paratype female, 29.5 mm, NIWA 156301. Photographed immediately after capture. Scale 5 mm.

opencc-by-4.0Dec 2023View details →
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Figure 9 in Amathillopsidae (Crustacea: Amphipoda) from New Zealand, Including the Description of a New Species

Figure 9. Amathillopsis cf. charlottae Coleman, 1998, male, 21.5 mm, NIWA 84392. Scale: Hb, U1–3 1 mm, T 0.2 mm.

opencc-by-4.0Dec 2023View details →
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Figure 8 in Amathillopsidae (Crustacea: Amphipoda) from New Zealand, Including the Description of a New Species

Figure 8. In situ image of paratype Amathillopsis lowry sp. nov., NIWA 156301, 4159 m abyssal basin between Three Kings Ridge and Colville Ridge, Pacific Ocean.

opencc-by-4.0Dec 2023View details →
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Figure 1 in Amathillopsidae (Crustacea: Amphipoda) from New Zealand, Including the Description of a New Species

Figure 1. Distribution of the three species of Amathillopis known from New Zealand waters: Amathillopis lowry sp.

opencc-by-4.0Dec 2023View details →

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