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5,312 results for “New Zealand”
Figure 12 in New records of notoaturine water mites from New Zealand, with the description of five new species (Acari: Hydrachnidia: Notoaturinae)
Figure 12 Zelandalbia thibaultin. sp., female, Simpson Creek. A – dorsal shield; B – idiosoma, ventral view (partly damaged); C – palp; D – chelicera; E – gnathosoma; F – IV-leg-3-6. Scale bars = 100 μm.
Figure 11 in New records of notoaturine water mites from New Zealand, with the description of five new species (Acari: Hydrachnidia: Notoaturinae)
Figure 11 Zelandalbiacf. hopkinsi (A-C male, D-H female), Simpson Creek. A – idiosoma, dorsal view; B – idiosoma, ventral view; C – gnathosoma and palp; D – anterodorsal part of ventral shield; E – posterior part of ventral shield; F – palp; G – I-leg-3-6; H – IV-leg-4-6. Scale bars = 100 μm.
Figure 13 in New records of notoaturine water mites from New Zealand, with the description of five new species (Acari: Hydrachnidia: Notoaturinae)
Figure 13 Zelandalbia thibaultin. sp., male, Simpson Creek. A – idiosoma, dorsal view; B – idiosoma, ventral view (partial view); C – posteromedial plate and excretory pore; D – palp; E – I-leg-3-6; F – IV-leg. Scale bars = 100 μm.
Figure 10 in New records of notoaturine water mites from New Zealand, with the description of five new species (Acari: Hydrachnidia: Notoaturinae)
Figure 10 Tryssaturus longwoodn. sp., female, Caution Creek. A – idiosoma, dorsal view; B – idiosoma, ventral view; C – palp; D – IV-leg- 2-6. Scale bars = 100 μm.
Figure 9 in New records of notoaturine water mites from New Zealand, with the description of five new species (Acari: Hydrachnidia: Notoaturinae)
Figure 9 Tryssaturus longwoodn. sp., male, stream crossing road to Bald Hill. A – idiosoma, dorsal view; B – idiosoma, ventral view; C – palp; D-E – IV-leg-2-6; F – I-leg-5 and -6. Scale bars = 100 μm.
Figure 6 Planaturus pileatus Smit, 2017 in New records of notoaturine water mites from New Zealand, with the description of five new species (Acari: Hydrachnidia: Notoaturinae)
Figure 6 Planaturus pileatus Smit, 2017, Shag River (A-D, F-I, male; E, female). A – idiosoma, dorsal view; B – hood-like structure on anterodorsal part of ventral shield; C idiosoma, ventral view; D – photograph of ejaculatory complex; E – anterodorsal part of ventral shield; F – gnathosoma and palpal segments P1 and P2; G-H – palp; I – IV-leg-2-6. Scale bars = 100 μm.
Figure 5 Paratryssaturus zodelusCook, 1983 in New records of notoaturine water mites from New Zealand, with the description of five new species (Acari: Hydrachnidia: Notoaturinae)
Figure 5 Paratryssaturus zodelusCook, 1983, female, Six Mile Creek. A – idiosoma, dorsal view; B – Idiosoma, ventral view; C – palp; D – gnathosoma and chelicera; E – I-leg-2-6; F – IV-leg-4-6. Scale bars = 100 μm.
Figure 4 Kritaturus longipalpis n in New records of notoaturine water mites from New Zealand, with the description of five new species (Acari: Hydrachnidia: Notoaturinae)
Figure 4 Kritaturus longipalpis n. sp., (A-C, female, stream crossing road to Bald Hill; D, male, upper course Waikawa River). A – idiosoma, dorsal view; B – idiosoma, ventral view; C – palp, D – IV-leg-4-6. Scale bars = 100 μm.
Figure 8 Taintaturus accidensCook, 1983 in New records of notoaturine water mites from New Zealand, with the description of five new species (Acari: Hydrachnidia: Notoaturinae)
Figure 8 Taintaturus accidensCook, 1983, Janice Creek (A-B, E-G, female; C-D, male). A – idiosoma, dorsal view; B – idiosoma, ventral view; C-E – hood-like structure on anterodorsal part of ventral shield; F – palp; G – IV-leg-2-6. Scale bars = 100 μm.
Figure 1 in New records of notoaturine water mites from New Zealand, with the description of five new species (Acari: Hydrachnidia: Notoaturinae)
Figure 1 Evidaturus longiscutatusn. sp., male, Janice Creek. A – idiosoma, dorsal view; B – Idiosoma, ventral view; C – palp; D – gnathosoma; E – I-leg-4-6; F – IV-leg. Scale bars = 100 μm.
Figure 2 Kritaturus sornus Cook, 1983 in New records of notoaturine water mites from New Zealand, with the description of five new species (Acari: Hydrachnidia: Notoaturinae)
Figure 2 Kritaturus sornus Cook, 1983, female, Longbeach Creek. A – idiosoma, dorsal view; B – idiosoma, ventral view; C – palp. Scale bars = 100 μm.
Figure 7 Planaturus simpsonensis n in New records of notoaturine water mites from New Zealand, with the description of five new species (Acari: Hydrachnidia: Notoaturinae)
Figure 7 Planaturus simpsonensis n. sp., male, Simpson Creek. A – idiosoma, dorsal view; B idiosoma, ventral view; C – photograph of ejaculatory complex; D-E – palp; F – gnathosoma; G – I-leg-2-6; H – IV-leg-2-6. Scale bars = 100 μm.
Figure 2 Zelandatonia orion Cook, 1992 in New records of rare water mites from New Zealand, with the description of a new genus (Acari: Hydrachnidia)
Figure 2 Zelandatonia orion Cook, 1992, male, Camp Creek. A – idiosoma, dorsal view (inset: glandularium, 2x enlarged); B – idiosoma, ventral view; C-D – palp; E – chelicera; F – I-leg-4-6; G – IV-leg-5 and -6; H – terminal part of IV-leg-6. Scale bars = 100 μm.
Figure 1 Zelandostygolimnochares curtipalpis n in New records of rare water mites from New Zealand, with the description of a new genus (Acari: Hydrachnidia)
Figure 1 Zelandostygolimnochares curtipalpis n. sp., holotype female, Simpson Creek. A – idiosoma, dorsal view (inset: glandularium, 2x enlarged); B – frontal plate; C – palp; D – terminal palp segments (P-4 and P5); E – gnathosoma and anterior coxal group; F – posterior coxal group, genital field and excretory sclerite; G – I-leg-4-6. Scale bars = 100 μm.
Figure 3 Aciculacarus amalis Cook, 1983 in New records of rare water mites from New Zealand, with the description of a new genus (Acari: Hydrachnidia)
Figure 3 Aciculacarus amalis Cook, 1983, female, stream crossing track to Fox Glacier. A – palp; B – gnathosoma; C – chelicera; D – idiosoma, dorsal view (inset: glandularium, 2x enlarged); E – idiosoma, ventral view; F – I-leg. Scale bars = 100 μm.
Composition-based estimates of the thermal properties of New Zealand basement rocks: data used for calculations and figures
<p>This archive contains four files with compositional data (mineralogical and geochemical) used to estimate thermal conductivity and heat production in New Zealand basement terranes (Kirkby et al., 2024).</p> <p><br>HPR_source_data.csv - contains K, Th, and U concentrations and calculated heat production rates.</p> <p>Longitude - longitude (New Zealand Geodetic Datum)<br>Latitude - latitude(New Zealand Geodetic Datum)<br>K_wtpct - K concentration in weight percent<br>Th_ppm - Th concentration in ppm<br>U_ppm - U concentration in ppm<br>Heat_production_uW/m3 - heat production calculated from K, Th and U concentrations, in microWatts per meter cubed<br>Terrane - name of basement terrane that sample has been assigned to<br>Source - source of data, either PetLAB (Strong et al. 2016), PMAP (Turnbull ref) or separate compilation for this study<br>Reference - Reference citation for data as listed in PetLAB/PMAP or added for this study</p> <p> </p> <p>TC_from_majors_PMAP.csv - contains thermal conductivity estimated from major element geochemistry (Kirkby et al., 2024) using method of, Jennings et al. (2019).<br>Columns are as follows:</p> <p>Collection - collection that sample is contained in within the PetLAB database (Strong et al., 2016)<br>Collection_Number - sample number within the collection above<br>Sample_ID - unique sample ID in PetLAB<br>Analysis_ID - unique analysis ID in PetLAB<br>Longitude - longitude (New Zealand Geodetic Datum)<br>Latitude - latitude(New Zealand Geodetic Datum)<br>**_wtpct - major oxide concentration in weight percent (normalised to non-volatile component)<br>Terrane - name of basement terrane that sample has been assigned to<br>Analysis_Method - analysis method for major oxide concentrations<br>Thermal_conductivity_pred - calculated estimate of thermal conductivity based on major oxide composition, W/mK<br>Bib_ref - analysis source reference, direct copy of Bib_ref field in PetLAB<br>Reference - analysis source reference, direct copy of Reference field in PetLAB</p> <p><br>TC_from_modal_mineralogy.csv - contains thermal conductivity estimated from modal mineralogy (Kirkby et al., 2024).<br>Columns are as follows:</p> <p>Longitude - longitude (New Zealand Geodetic Datum)<br>Latitude - latitude(New Zealand Geodetic Datum)<br>Analysis_ID - unique analysis ID in PetLAB<br>Collection - collection that sample is contained in within the PetLAB database (Strong et al., 2016)<br>Collection_ID - sample number within the collection above<br>Subsample - in the case of thermal conductivity, sometimes two samples were measured. This column distinguishes the two measurements<br>Mineralogy_method - method of determining mineralogy, either point count or QEMSCAN<br>Quartz - percentage of quartz in sample<br>Olivine - percentage of olivine in sample<br>Pyroxene - percentage of pyroxene in sample<br>Other - percentage of other minerals in sample<br>Thermal_conductivity_grain_pred - estimated thermal conductivity (W/mK) from mineralogy (Kirkby et al, 2024), W/mK<br>Thermal_conductivity_dry_measured - measured dry thermal conductivity (W/mK) for samples reported by Sanders et al (2024), W/mK<br>Porosity_measured_pct - measured porosity (percent) for samples reported by Sanders et al (2024)<br>Thermal_conductivity_grain_measured - grain thermal conductivity (W/mK) calculated from measured dry thermal conductivity and porosity<br>Terrane - name of basement terrane that sample has been assigned to<br>Bib_ref - analysis source reference, direct copy of Bib_ref field in PetLAB<br>Reference - analysis source reference, direct copy of Reference field in PetLAB</p> <p><br>TC_from_normative_mineralogy.csv</p> <p>Longitude - longitude (New Zealand Geodetic Datum)<br>Latitude - latitude(New Zealand Geodetic Datum)<br>Analysis_ID - unique analysis ID in PetLAB<br>Collection - collection that sample is contained in within the PetLAB database (Strong et al., 2016)<br>Collection_ID - sample number within the collection above<br>Mineralogy_method - method of determining mineralogy, either Mesonorm or CIPWnormhb (CIPW norm with hornblende)<br>Quartz - percentage of quartz in sample<br>Olivine - percentage of olivine in sample<br>Pyroxene - percentage of pyroxene in sample<br>Other - percentage of other minerals in sample<br>Thermal_conductivity_grain_pred - estimated thermal conductivity (W/mK) from mineralogy (Kirkby et al, 2024)<br>Thermal_conductivity_dry_measured - measured dry thermal conductivity (W/mK) for samples reported by Sagar et al (2022)<br>Porosity_measured_pct - measured porosity (percent) for samples reported by Sagar et al (2024)<br>Thermal_conductivity_grain_measured - grain thermal conductivity (W/mK) calculated from measured dry thermal conductivity and porosity<br>Terrane - name of basement terrane that sample has been assigned to<br>Bib_ref - analysis source reference, direct copy of Bib_ref field in PetLAB<br>Reference - analysis source reference, direct copy of Reference field in PetLAB</p> <p> </p> <p>tc_by_terrane.csv</p> <p>Contains thermal conductivity, standard deviation, and standard error of thermal conductivity estimates by terrane as shown in Figure 7 of Kirkby et al (2024)</p> <p> </p> <p>hpr_by_terrane.csv</p> <p>Contains thermal conductivity, standard deviation, and standard error of thermal conductivity estimates by terrane as shown in Figure 7 of Kirkby et al (2024).</p> <p> </p> <p><br>References</p> <p>Jennings, S., Hasterok, D., & Payne, J. (2019). A new compositionally based thermal conductivity model for plutonic rocks. Geophysical Journal International, 219(2), 1377-1394. https://doi.org/10.1093/gji/ggz376<br>Kirkby, A., N. Mortimer, R. Funnell, M. Sagar, A. Seward, K. Faure and F. Sanders (2024). Composition-based estimates of the thermal properties of New Zealand basement rocks, New Zealand Journal of Geology and Geophysics.<br>Sagar, M. W., Funnell, R., Randell, K., Faure, K., Seward, A., Sanders, F., & Stratford, W. R. (2022). Physical properties of Te Riu-a-Māui / Zealandia crustal rocks: Reconnaissance study and future research. (GNS Science Internal Report 2022/05. <br>Sanders, F., Seward, A., Sagar, M., & Faure, K. (2024). Thermal Properties of Zealandia Basement Rocks: results of Thermal Conductivity Scanner measurements 2023. Lower Hutt. (GNS Science Report. <br>Strong, D. T., Turnbull, R. E., Haubrock, S., & Mortimer, N. (2016). Petlab: New Zealand’s national rock catalogue and geoanalytical database. New Zealand Journal of Geology and Geophysics, 59(3), 475-481. https://doi.org/10.1080/00288306.2016.1157086 </p>
Figure 13 in New species of Brucerolis (Crustacea: Isopoda: Serolidae) from seas around New Zealand and Australia
Figure 13. Brucerolis hurleyi sp. nov. Holotype male (NIWA 27424): pereopods 6, 7, pleopods 1, 2, 4, 5. Paratype female (NIWA 27423): pereopod 7.
Figure 8 in New species of Brucerolis (Crustacea: Isopoda: Serolidae) from seas around New Zealand and Australia
Figure 8. Brucerolis howensis sp. nov. Holotype male (NIWA 27431): pereopods 3–7, pleopods 4, 5. Paratype female (NIWA 27428): pereopods 2, 7.
Figure 8 in New species of Brucerolis (Crustacea: Isopoda: Serolidae) from seas around New Zealand and Australia
Figure 8. Brucerolis howensis sp. nov. Holotype male (NIWA 27431): pereopods 3–7, pleopods 4, 5. Paratype female (NIWA 27428): pereopods 2, 7.
Figure 5 in New species of Brucerolis (Crustacea: Isopoda: Serolidae) from seas around New Zealand and Australia
Figure 5. Brucerolis brandtae sp. nov. Holotype male (NIWA 27415): pereopods 6, 7, pleopods 1–5. Paratype male (NIWA 27414): pleopod 2 endopod and appendix masculina.
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