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102 results for “interstitial water”
IODP Expedition 361 Interstitial water composite report
<p>This composite report includes data from numerous interstitial water (IW) analyses (e.g., ICP-LIQUIDS and IONCHROM) in a variable set of columns. Each row combines the data from several tests (groups of measurements made on the same sample at the same time) for a particular IW sample. If data do not exist for a particular expedition, the column does not appear. To identify individual samples and tests, see each separate analysis (ALKALINITY, ICP-LIQUIDS, IONCHROM, SALINITY, SPECTRO, TITRATOR, and potentially others). Major and minor elements were determined by inductively coupled plasma-atomic emission spectrocsopy (ICP-LIQUIDS). Cations and anions were measured by ion chromatography (IONCHROM). Complex ions were measured by colorimetric measurements using a UV-VIS spectrometer (SPECTRO). Alkalinity and chloride was measured by titration (ALKALINITY and TITRATOR). Dissolved carbon (DC), dissolved inorganic carbon (DIC), and dissolved organic carbon (DOC) were measured by combustion in a total organic carbon (TOC) analyzer. Salinity was measured by refractometer (SALINITY). pH was measured by ion-selective electrode as part of the alkalinity procedure and is reported in the ALKALINITY analysis.</p>
IODP Expedition 362 ICP-AES elemental analysis (interstitial water)
<p>Elemental concentration in interstitial water samples was measured by inductively coupled plasma - atomic emission spectroscopy (ICP-AES). Data are presented by element-wavelength pair (e.g., more than one calcium line may be reported). Elemental lines for which data do not exist for a particular expedition will not appear.</p>
FIGURE 13. Neoacarus hibernicus, larva. A. IL, B. IIL, C in Larval morphology of benthic and interstitial water mites (Acari: Hydrachnidia) from a Luxembourgian stream
FIGURE 13. Neoacarus hibernicus, larva. A. IL, B. IIL, C. IIIL. Scale bar: 50µm.
FIGURE 9. Feltria motasi. A. IL, B. IIL, C in Larval morphology of benthic and interstitial water mites (Acari: Hydrachnidia) from a Luxembourgian stream
FIGURE 9. Feltria motasi. A. IL, B. IIL, C. IIIL, Scale bar: 100µm.
FIGURE 8. Feltria motasi, larva. A. dorsal idiosoma, B in Larval morphology of benthic and interstitial water mites (Acari: Hydrachnidia) from a Luxembourgian stream
FIGURE 8. Feltria motasi, larva. A. dorsal idiosoma, B. ventral idiosoma. Scale bar: 100µm.
FIGURE 6. Atractides pumilus, larva. A. dorsal idiosoma, B. ventral idiosoma. Scale bar 100 in Larval morphology of benthic and interstitial water mites (Acari: Hydrachnidia) from a Luxembourgian stream
FIGURE 6. Atractides pumilus, larva. A. dorsal idiosoma, B. ventral idiosoma. Scale bar 100µm.
FIGURE 10. Ljania macilenta, larva. A. dorsal idiosoma, B in Larval morphology of benthic and interstitial water mites (Acari: Hydrachnidia) from a Luxembourgian stream
FIGURE 10. Ljania macilenta, larva. A. dorsal idiosoma, B. ventral idiosoma. Scale bar: 100µm.
Figure 6 from: Kim J, Lee W, Karanovic I (2017) A new species of Microcharon from marine interstitial waters, Shizuoka, Japan (Isopoda, Lepidocharontidae). ZooKeys 680: 13-31. https://doi.org/10.3897/zookeys.680.12048
Figure 6 - Microcharon tanakai sp. n., holotype, female. A pereopod 6, lateral B pereopod 7, lateral C operculum, dorsal. Scale bars 50µm.
Figure 9 from: Kim J, Lee W, Karanovic I (2017) A new species of Microcharon from marine interstitial waters, Shizuoka, Japan (Isopoda, Lepidocharontidae). ZooKeys 680: 13-31. https://doi.org/10.3897/zookeys.680.12048
Figure 9 - Scanning electron microscope images of Microcharon tanakai sp. n., G pereonite 7 and free pleonite, ventral, paratype male H penial papillae, ventral, I pleopod 1, dorsal, J distal part of male pleopod 1, dorsal K proximal part of male pleopod 1, dorsal L distolateral view of male pleopod 1. Scale bar unit µm.
Figure 5 from: Kim J, Lee W, Karanovic I (2017) A new species of Microcharon from marine interstitial waters, Shizuoka, Japan (Isopoda, Lepidocharontidae). ZooKeys 680: 13-31. https://doi.org/10.3897/zookeys.680.12048
Figure 5 - Microcharon tanakai sp. n., holotype, female. A pereopod 3, lateral B pereopod 4, lateral C pereopod 5, lateral. Scale bars 50µm.
Figure 4 from: Kim J, Lee W, Karanovic I (2017) A new species of Microcharon from marine interstitial waters, Shizuoka, Japan (Isopoda, Lepidocharontidae). ZooKeys 680: 13-31. https://doi.org/10.3897/zookeys.680.12048
Figure 4 - Microcharon tanakai sp. n., holotype, female. A pereopod 1, lateral B pereopod 2, lateral C Maxilla, ventral D Maxillula, ventral. Scale bars 50µm.
Figure 3 from: Kim J, Lee W, Karanovic I (2017) A new species of Microcharon from marine interstitial waters, Shizuoka, Japan (Isopoda, Lepidocharontidae). ZooKeys 680: 13-31. https://doi.org/10.3897/zookeys.680.12048
Figure 3 - Microcharon tanakai sp. n., holotype, female. A antennal articles 4-6 with flagellum, dorsal B antennal articles 1-3, dorsal C maxilliped dorsal D paragnaths dorsal E left mandible, dorsal F right mandible, dorsal G mandibular palp, ventral. A–B scale bars 100µm, C–G scale bars 50 µm.
Figure 2 from: Kim J, Lee W, Karanovic I (2017) A new species of Microcharon from marine interstitial waters, Shizuoka, Japan (Isopoda, Lepidocharontidae). ZooKeys 680: 13-31. https://doi.org/10.3897/zookeys.680.12048
Figure 2 - Microcharon tanakai sp. n., holotype, female. A habitus, dorsal B cephalon, dorsal C pereonite 1, dorsal D pleotelson, dorsal E antennula, dorsal. Scale bars 100 µm.
Figure 10 from: Kim J, Lee W, Karanovic I (2017) A new species of Microcharon from marine interstitial waters, Shizuoka, Japan (Isopoda, Lepidocharontidae). ZooKeys 680: 13-31. https://doi.org/10.3897/zookeys.680.12048
Figure 10 - Scanning electron microscope images of Microcharon tanakai sp. n., M lateral view of male pleopod 1 N protopod of male pleopod 2, ventral O pleopod 3, dorsal, female J distal tip of pleopod 3 exopod. Scale bar unit µm.
Figure 8 from: Kim J, Lee W, Karanovic I (2017) A new species of Microcharon from marine interstitial waters, Shizuoka, Japan (Isopoda, Lepidocharontidae). ZooKeys 680: 13-31. https://doi.org/10.3897/zookeys.680.12048
Figure 8 - Scanning electron microscope images of Microcharon tanakai sp. n., A female antennal scale, lateral, B female mandibular palp, lateral C female pereopod 1-3, lateral, D female coxal plate of perepod 2, ventral E female bifurcate seta of pereopod 4, lateral, F female articular plate of pereopod 5, lateral. Scale bar unit µm.
Figure 7 from: Kim J, Lee W, Karanovic I (2017) A new species of Microcharon from marine interstitial waters, Shizuoka, Japan (Isopoda, Lepidocharontidae). ZooKeys 680: 13-31. https://doi.org/10.3897/zookeys.680.12048
Figure 7 - Microcharon tanakai sp. n., male. A pleopod 1, dorsal B pleopod 2, dorsal C pleopod 3, dorsal D pleopod 4, dorsal E female right uropod, dorsal. Scale bars 50µm.
Figure 1 from: Kim J, Lee W, Karanovic I (2017) A new species of Microcharon from marine interstitial waters, Shizuoka, Japan (Isopoda, Lepidocharontidae). ZooKeys 680: 13-31. https://doi.org/10.3897/zookeys.680.12048
Figure 1 - Sampling site. The arrow indicating the type locality of Microcharon tanakai sp. n. (Miho-Uchihama beach, Shizuoka, Japan).
FIGURES 1416. Neoacarus hibernicus Halbert, 1944 in Water mites (Acari: Hydrachnidia) from interstitial waters of Iran, with the description of one new species
FIGURES 1416. Neoacarus hibernicus Halbert, 1944, deutonymph: 14 = parts of idiosoma, ventral view; 15 = palp, medial view; 16 = palp, lateral view. Scale bars = 0.1 mm
FIGURES 1–6 in Water mites (Acari: Hydrachnidia) from interstitial waters of Iran, with the description of one new species
FIGURES 1–6. Atractides cf. denticulatus (Walter, 1947), female: 1 = idiosoma, dorsal view; 2 = genital field; 3 = IL5/6; 4 = palp, medial view; 5 = palp, lateral view; 6 = IL5. Scale bars = 0.1 mm.
FIGURE 6 in Two new species of Halicyclops (Copepoda, Cyclopoida) from the estuarine interstitial waters in South Korea*
FIGURE 6. Halicyclops pumilus sp. nov., female. A, A1; B, A2; C, mandible; D, maxillule; E, maxilla; F, maxilliped. Scales: 50 µm.
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International Brain Laboratory public data
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OpenNeuro
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