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274 results for “East China Sea”

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zenodo32/100

FIGURE 2 in One new species and one new combination of the family Xyalidae (Nematoda: Monhysterida) from the East China Sea

FIGURE 2. Elzalia bifurcata sp. nov. (A–B) lateral vIeW of female anterIor end; (C) lateral vIeW of male posterIor end, shoWIng spICules; (D) lateral vIeW of male CloaCal regIon, shoWIng spICules and gubernaCulum.

opennotspecifiedDec 2017View details →
zenodo32/100

FIGURE 1 in One new species and one new combination of the family Xyalidae (Nematoda: Monhysterida) from the East China Sea

FIGURE 1. Elzalia bifurcata sp. nov. (A) entIre vIeW of female, shoWIng vulva and ovary; (B) lateral vIeW of male anterIor end, shoWIng buCCal CavIty, CephalIC seta and pharynX; (C) lateral vIeW of female anterIor end, shoWIng buCCal CavIty and amphIdIal fovea; (D) lateral vIeW of male posterIor end, shoWIng spICules and gubernaCulum.

opennotspecifiedDec 2017View details →
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FIGURE 4 in One new species and one new combination of the family Xyalidae (Nematoda: Monhysterida) from the East China Sea

FIGURE 4. Paragnomoxyala macrostoma (Huang & Xu, 2013) comb. nov. (A) lateral vIeW of female anterIor end; (B) lateral vIeW of male anterIor end; (C) lateral vIeW of male posterIor end; (D) lateral vIeW of male CloaCal regIon (From Huang & Xu, 2013).

opennotspecifiedDec 2017View details →
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Figure 4 in Two new species of Lauratonema (Nematoda: Lauratonematidae) from the intertidal zone of the East China Sea

Figure 4. Lauratonema dongshanense sp. nov. (A) lateral view of female anterior part; (B) lateral view of female tail; (C) lateral view of spicule; (D) lateral view of male tail and spicule; (E) full view of female, showing reproductive system; (F) lateral view of male anterior part. Scale bar: 25 µm.

opennotspecifiedFeb 2015View details →
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Figure 2 in Two new species of Lauratonema (Nematoda: Lauratonematidae) from the intertidal zone of the East China Sea

Figure 2. Lauratonema macrostoma sp. nov. (A) lateral view of male head end, showing amphids and bacteria; (B) lateral view of male body part, showing spicule; (C) lateral view of female body part, showing eggs; (D) lateral view of female head end, showing buccal cavity; (E) lateral view of female tail. Scale bar: A–D = 10 µm; E = 25 µm.

opennotspecifiedFeb 2015View details →
zenodo32/100

Figure 1 in Two new species of Lauratonema (Nematoda: Lauratonematidae) from the intertidal zone of the East China Sea

Figure 1. Lauratonema macrostoma sp. nov. (A) lateral view of male anterior part; (B) lateral view of female tail; (C) lateral view of male tail; (D) lateral view of female posterior part, showing reproductive system; (E) lateral view of female anterior part. Scale bar: A, B, C, E = 20 µm; D = 50 µm.

opennotspecifiedFeb 2015View details →
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Figure 3 in Two new species of Lauratonema (Nematoda: Lauratonematidae) from the intertidal zone of the East China Sea

Figure 3. Lauratonema dongshanense sp. nov. (A) lateral view of male head end, showing amphid and cephalic setae; (B) lateral view of female head end, showing buccal cavity; (C) lateral view of female head end, showing amphid and bacteria; (D) lateral view of female body part, showing eggs; (E, F) lateral view of male body part, showing spicules; (G) lateral view of male tail. Scale bar: A–F = 10 µm; G = 25 µm.

opennotspecifiedFeb 2015View details →
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Subspecies and Distribution. U. a. arctos Linnaeus, 1758 — Europe and W Russia. U. a. alascensis Merriam, 1896 — most of Alaska (excluding Alaska Peninsula, SE panhandle & Kodiak Island group). U. a. beringianus Middendorff, 1853 — NE Russia (Kamchatka Peninsula & N Kuril Islands northward through the Koryak Autonomous District, and along W coast of the Sea of Okhotsk). U. a. collaris Cuvier, 1824 — Russia (Siberia, from E of the Yenisey River to the Bering Sea, but excluding Kamchatka and more southern parts of the Russian Far East), N Mongolia. U. a. dalli Merriam, 1896 — SE Alaska (N of Alexander Archipelago). U. a. gyas Merriam, 1902 — Alaska peninsula. U. a. horribilis Ord, 1815 —W Canada (Yukon, North-West Territories, British Columbia & Alberta), inland W USA (extirpated from S Wyoming to Mexico). U. a. isabellinus Horsfield, 1826 — N India, Pakistan, Afghanistan, N to Kazakhstan and Mongolia (Gobi Desert). U. a. lasiotus Gray, 1867 — Russia (Southern Kuril Islands, Sakhalin, Ussuri/Amur river region of the Russian Far East), NE China, North Korea, and Japan (Hokkaido). U. a. middendorffi Merriam, 1896 — Alaska (Kodiak Island & nearby islands). U. a. pruinosus Blyth, 1853 — Tibetan Plateau, China, N Nepal. U. a. sitkensis Merriam, 1896 — SE Alaska (Alexander Archipelago & adjacent coastal area). U. a. stikeenensis Merriam, 1914 — W Canada (W British Columbia), and formerly W USA (W Washington and Oregon). U. a. syriacus Hemprich & Ehrenberg, 1828 — Middle East, from Turkey to Iran (extirpated in Syria), Caucasus mountains of Russia, Georgia, Armenia and Azerbaijan. in Ursidae

Subspecies and Distribution. U. a. arctos Linnaeus, 1758 — Europe and W Russia. U. a. alascensis Merriam, 1896 — most of Alaska (excluding Alaska Peninsula, SE panhandle & Kodiak Island group). U. a. beringianus Middendorff, 1853 — NE Russia (Kamchatka Peninsula & N Kuril Islands northward through the Koryak Autonomous District, and along W coast of the Sea of Okhotsk). U. a. collaris Cuvier, 1824 — Russia (Siberia, from E of the Yenisey River to the Bering Sea, but excluding Kamchatka and more southern parts of the Russian Far East), N Mongolia. U. a. dalli Merriam, 1896 — SE Alaska (N of Alexander Archipelago). U. a. gyas Merriam, 1902 — Alaska peninsula. U. a. horribilis Ord, 1815 —W Canada (Yukon, North-West Territories, British Columbia & Alberta), inland W USA (extirpated from S Wyoming to Mexico). U. a. isabellinus Horsfield, 1826 — N India, Pakistan, Afghanistan, N to Kazakhstan and Mongolia (Gobi Desert). U. a. lasiotus Gray, 1867 — Russia (Southern Kuril Islands, Sakhalin, Ussuri/Amur river region of the Russian Far East), NE China, North Korea, and Japan (Hokkaido). U. a. middendorffi Merriam, 1896 — Alaska (Kodiak Island & nearby islands). U. a. pruinosus Blyth, 1853 — Tibetan Plateau, China, N Nepal. U. a. sitkensis Merriam, 1896 — SE Alaska (Alexander Archipelago & adjacent coastal area). U. a. stikeenensis Merriam, 1914 — W Canada (W British Columbia), and formerly W USA (W Washington and Oregon). U. a. syriacus Hemprich & Ehrenberg, 1828 — Middle East, from Turkey to Iran (extirpated in Syria), Caucasus mountains of Russia, Georgia, Armenia and Azerbaijan.

opennotspecifiedJan 2009View details →
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Emission and Deposition of Atmospheric Dust from Continental Shelf of the East China Sea: Evidence from Shengshan Island Loess

<p>The dataset for supporting the paper &quot;Emission and Deposition of Atmospheric Dust from Continental Shelf of the East China Sea: Evidence from Shengshan Island Loess&quot;.</p>

opencc-by-4.0Nov 2021View details →
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contribution of atmospheric transport to phosphorus in the East China Sea in summer

<p>For the analysis of the main sources of phosphate in the&nbsp;East China Sea&nbsp;during summer, we choose the area between 120.93 ˚ E-125.9 ˚ E and 26.08˚ N-32.35 ˚ N as research sites . The samples were all from the voyage of the research ship (Xiangyanghong 18). Surface seawater was collected at 49 stations for &delta;<sup>18</sup>O<sub>p</sub> analysis by a conductivity-temperature-depth profiler. Then we utilized &delta;<sup>18</sup>O<sub>p</sub> to trace the source of phosphate in the&nbsp;East China Sea.&nbsp;</p> <p>The &delta;<sup>18</sup>O<sub>p</sub> values in seawater are affected by water masses with different phosphate concentrations.We need the two-component mixing model for the analysis of water masses that control phosphate.In this research, atmospheric deposition and adjacent sea transportation were used as terrestrial and seawater end-members respectively to construct the &delta;<sup>18</sup>O<sub>p</sub> end-member mixing model.</p> <p>In order to quantify the source of phosphate in the sea, a Bayesian isotope mixing model run in the R software package (Stable Isotope Analysis in R, SIAR) was selected for analysis.</p>

opencc-by-4.0May 2022View details →
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Distribution. Shallow, coastal waters of tropical and subtropical S & E Asia, from the Persian Gulf E to the S East China Sea and S to the Sunda Is. There are no records from Oman and the Philippines, although the species is expected eventually to be found in both locations. in Phocoenidae

Distribution. Shallow, coastal waters of tropical and subtropical S &amp; E Asia, from the Persian Gulf E to the S East China Sea and S to the Sunda Is. There are no records from Oman and the Philippines, although the species is expected eventually to be found in both locations.

opennotspecifiedJul 2014View details →
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Subspecies and Distribution. L.t.tolaiPallas,1778—InnerMongolia(=NeiMongol),andGansu(NCChina). L.t.buchariensisOgnev,1922—TajikistanandNEAfghanistan. L.t.cheybaniBaloutch,1978—SWIran(ZagrosMts). L.t.cinnamomeusShamel,1940—SWSichuan,andNYunnan(SCChina). L.t.filchneriMatschie,1908—Shaanxi(CChina). L.t.lehmanniSevertzov,1873—SKazakhstan,Turkmenistan,andextremeN&NEIran,EtoSSiberia,Mongolia,andXinjiang(NWChina). L. t. swinhoei Thomas, 1894 — from Heilongjiang, Jilin, Liaoning, Inner Mongolia S to Hebei, Beijing, Henan, Shaanxi, Shanxi, and Shandong (NE & E China). The Tolai Hare occurs in the steppes E of the Caspian Sea, S to NE & SW Iran, E through the Middle Asian republics to Afghanistan, and from Kazakhstan and S Siberia to Mongolia, S Russian Far East, NW, C & NE China; an isolated population lives in S Iraq and SW Iran. A single specimen in South Asia might extend the distribution of the Tolai Hare as far S as Jammu and Kashmir, N India. in Leporidae

Subspecies and Distribution. L.t.tolaiPallas,1778—InnerMongolia(=NeiMongol),andGansu(NCChina). L.t.buchariensisOgnev,1922—TajikistanandNEAfghanistan. L.t.cheybaniBaloutch,1978—SWIran(ZagrosMts). L.t.cinnamomeusShamel,1940—SWSichuan,andNYunnan(SCChina). L.t.filchneriMatschie,1908—Shaanxi(CChina). L.t.lehmanniSevertzov,1873—SKazakhstan,Turkmenistan,andextremeN&amp;NEIran,EtoSSiberia,Mongolia,andXinjiang(NWChina). L. t. swinhoei Thomas, 1894 — from Heilongjiang, Jilin, Liaoning, Inner Mongolia S to Hebei, Beijing, Henan, Shaanxi, Shanxi, and Shandong (NE &amp; E China). The Tolai Hare occurs in the steppes E of the Caspian Sea, S to NE &amp; SW Iran, E through the Middle Asian republics to Afghanistan, and from Kazakhstan and S Siberia to Mongolia, S Russian Far East, NW, C &amp; NE China; an isolated population lives in S Iraq and SW Iran. A single specimen in South Asia might extend the distribution of the Tolai Hare as far S as Jammu and Kashmir, N India.

opennotspecifiedJul 2016View details →
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FIGURE 9 in Four new species of Epacanthion Wieser, 1953 (Nematoda: Thoracostomopsidae) in intertidal sediments of the Nanji Islands from the East China Sea

FIGURE 9. The species of Epacanthion with a cervical circle of distinctly short and densely arranged setae.

opennotspecifiedMar 2016View details →
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FIGURE 7 in Four new species of Epacanthion Wieser, 1953 (Nematoda: Thoracostomopsidae) in intertidal sediments of the Nanji Islands from the East China Sea

FIGURE 7. Epacanthion fasciculatum sp. nov., the male holotype. A, B: different focal layers of mandibles, showing the mandibular columns close to each other, connected with a sheet of cuticle; C: the cervical circle of 18 bundles each composed of about 10 distinctly short setae (arrows) posterior to the nerve ring; D, E: precloacal supplement (arrow), spicules and gubernaculum; F: tail bearing sparse setae. Bar = 30 µm.

opennotspecifiedMar 2016View details →
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FIGURE 6 in Four new species of Epacanthion Wieser, 1953 (Nematoda: Thoracostomopsidae) in intertidal sediments of the Nanji Islands from the East China Sea

FIGURE 6. Epacanthion fasciculatum sp. nov. (A–D) and Epacanthion sparsisetae sp. nov. (E–H). A–D: the male holotype, showing the cervical circle of 18 bundles each composed of about 10 distinctly short setae posterior to the nerve ring, the mandibles, spicules and gubernaculum; E–H: the male holotype, showing the mandible, spicules and gubernaculum and the cervical circle of eight bundles each composed of about 10 short and densely arranged setae anterior to the nerve ring. Bars = 10 µm (C, G), 30 µm (A, B, D–F, H).

opennotspecifiedMar 2016View details →
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FIGURE 3 in Four new species of Epacanthion Wieser, 1953 (Nematoda: Thoracostomopsidae) in intertidal sediments of the Nanji Islands from the East China Sea

FIGURE 3. Epacanthion hirsutum sp. nov. A: head of the male holotype; B: female head; C: a cervical circle composed of a single row of distinctly short and densely arranged setae in the male holotype; D: lateral view of spicules and gubernaculum; E, F: tail with two short terminal setae and two long subterminal setae. Bars =30 µm.

opennotspecifiedMar 2016View details →
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FIGURE 8 in Four new species of Epacanthion Wieser, 1953 (Nematoda: Thoracostomopsidae) in intertidal sediments of the Nanji Islands from the East China Sea

FIGURE 8. Epacanthion sparsisetae sp. nov., the male holotype. A, B: mandibles and unequal-sized onchia, the long setae at the head region; C, D: the cervical circle of eight bundles each composed of about 10 distinctly short and densely arranged setae (arrows); E, F: spicules and tail. Bar = 30 µm.

opennotspecifiedMar 2016View details →
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FIGURE 2 in Four new species of Epacanthion Wieser, 1953 (Nematoda: Thoracostomopsidae) in intertidal sediments of the Nanji Islands from the East China Sea

FIGURE 2. Epacanthion hirsutum sp. nov. A, B: anterior and posterior portion of the male holotype; C, D: anterior and posterior portion of a female; E: anterior posterior portion of a male showing the numerous scattered cervical setae and the cervical circle composed of a single row of distinctly short and densely arranged setae posterior to the nerve ring. Bar = 30 µm.

opennotspecifiedMar 2016View details →
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FIGURE 5 in Four new species of Epacanthion Wieser, 1953 (Nematoda: Thoracostomopsidae) in intertidal sediments of the Nanji Islands from the East China Sea

FIGURE 5. Epacanthion longicaudatum sp. nov. A, C: head and tail of the male holotype; B, D: head and tail of a female; E, F: cervical circle of 16 bundles each composed of six distinctly short setae arranged in two rows (arrows); G, H: precloacal supplement (arrow), spicules and gubernaculum of the male holotype. Bars = 30 µm (D, G), 10 µm (H).

opennotspecifiedMar 2016View details →
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FIGURE 4 in Four new species of Epacanthion Wieser, 1953 (Nematoda: Thoracostomopsidae) in intertidal sediments of the Nanji Islands from the East China Sea

FIGURE 4. Epacanthion longicaudatum sp. nov. A–C: anterior portion of the male holotype, showing the mandibles and onchium, the narrow pharynx and the cervical circle of 16 bundles each composed of six distinctly short setae arranged in two longitudinal rows posterior to the nerve ring; D, E: posterior portion of the male holotype showing the spicules and gubernaculum and the long tail. Bars = 30 µm (A, D and E), 10 µm (C).

opennotspecifiedMar 2016View details →

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Last verified 2026-04-29Open record