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53 results for “Shandong Province”
Landsat-derived annual maps of agricultural greenhouse in Shandong province, China from 1989 to 2018
<p>Using 8,450 Landsat images on the Google Earth Engine, we built the first Landsat-derived annual maps of agricultural greenhouse (AG) in Shandong province, China from 1989 to 2018. Two types of reference datasets, including AG and Non-AG, were labeled via visual inspection of high-resolution imagery available in Google Earth or Landsat imagery based on a 10 km grid sampling structure. The mapping window for each year was selected based on the vegetation growth and the phenological information. Classification for each year was carried out initially based on the random forest classifier after the feature optimization. A temporal consistency correction algorithm based on classification probability was then proposed to the classified AG maps for further improvement.</p>
FIG. 10. — Aeshna shanwangensis n in New discoveries of Neogene hawker dragonflies (Insecta, Odonata, Aeshnidae) from Shandong province in China
FIG. 10. — Aeshna shanwangensis n. sp., photograph of specimen CNU-ODO-SS2011011. Scale bar: 10 mm.
FIGURE 3 in A new species, Microphysogobio wulonghensis (Teleostei: Cypriniformes: Cyprinidae), from Shandong Province, China
FIGURE 3. Distribution of Microphysogobio wulonghensis sp. nov. and similar species. Hollow cross, M. hsinglungshanensis; solid square M. anudarini; solid circle, M. chinssuensis; solid star, M. wulonghensis sp. nov.; solid triangle, M. linghensis; hollow square, M. rapidus; hollow circle, M. yaluensis; asterisk M. amurensis.
FIGURE 2 in A new species, Microphysogobio wulonghensis (Teleostei: Cypriniformes: Cyprinidae), from Shandong Province, China
FIGURE 2. Lateral and ventral views of Microphysogobio wulonghensis sp. nov. Holotype, ASIZB 176476, 41.2 mm SL: a, lateral and ventral views; b1, photograph of upper and lower lips; b2, illustration of upper and lower lips.
FIGURE 1 in A new species, Microphysogobio wulonghensis (Teleostei: Cypriniformes: Cyprinidae), from Shandong Province, China
FIGURE 1. Principal measurements taken on Microphysogobio species. The picture is based on the type species of Microphysogobio, M. hsinglungshanensis. Standard length (SL), from tip of snout to last half-centrum (point A to point H); body depth, from insertion of dorsal-fin vertically to ventral midline (D–T); pre-dorsal length, from tip of snout to origin of dorsal fin (A– D); head to dorsal-fin origin, from nape (point between head and body, dorsal scales start here) to dorsal-fin origin (C–D); dorsal-fin length, from origin of dorsal fin to tip of longest ray (D–F); dorsal-fin base length, from anterior to posterior end of dorsal-fin base (D–E); pre-anal length, from tip of snout to origin of anal fin (A–K); anal-fin length, from origin of anal fin to tip of longest ray (K–L); anal-fin base length, from anterior to posterior end of anal-fin base (K–J); pre-pectoral length, from tip of snout to base of anterior pectoral-fin ray (A–Q); pectoral-fin length, from base of anterior pectoral-fin ray to tip of the longest ray (Q-R); pectoral-fin base length, from anterior to posterior end of pectoral-fin base (Q–P); pre-pelvic length, from tip of snout to base of anterior pelvic-fin ray (A–N); pelvic-fin length, from base of anterior pelvic-fin ray to tip of longest ray (N–O); pelvic-fin base length, from anterior to posterior end of pelvic-fin base (N–M); caudal peduncle length, from end of anal-fin base to last half-centrum (J–H); caudal peduncle depth, at approximately middle of caudal peduncle (G–I); head length, from tip of snout to most posterior point of operculum (including skin flap, 1; A–S); head depth, from nape vertically to the venter (C–B); head width, distance between most posterior margins of opercles; snout length, from tip of snout to anterior margin of circumorbital series (2); eye diameter, from anterior to posterior margins of circumorbital series (3), pressing tips of calipers to firm points (bony rim); rictal barbel length, from anterior to posterior end of rictal barbel.
FIGURE 4 in A new species, Microphysogobio wulonghensis (Teleostei: Cypriniformes: Cyprinidae), from Shandong Province, China
FIGURE 4. Comparison of lip shapes of species in the "incompletely scaled" group. a, M. linghensis, ASIZB 184871, 42.7 mm SL; b, M. chinssuensis, ASIZB 168078, 45.9 mm SL; c, M. yaluensis, ASIZB 184660, 40.7 mm SL; d, M. amurensis, printed in the light of IBH 12208735-0382, 44.8 mm SL; e, M. rapidus, CUNC 37898, 56.2 mm SL; f1, f2: M. wulonghensis sp. nov., ASIZB 176476, 41.2 mm SL.
Distribution. Disjunct locations in NE China (Liaoning, Inner Mongolia [= Nei Mongol], Hebei, Beijing, and Shandong), N & C Laos, and NE Thailand (Loei Province). There are three vagrant records in Japan, on Amami-Oshima, Kuchinoerabujima, and Yoronjima Is. in Molossidae
Distribution. Disjunct locations in NE China (Liaoning, Inner Mongolia [= Nei Mongol], Hebei, Beijing, and Shandong), N & C Laos, and NE Thailand (Loei Province). There are three vagrant records in Japan, on Amami-Oshima, Kuchinoerabujima, and Yoronjima Is.
FIGURE 2 in Coniella castanea sp. nov. on Castanea mollissima from Shandong Province, China
FIGURE 2. Coniella castanea (SAUCC 200313). a Leaves of host plant. b Surface view of colony after 7 days on PDA. c Reverse view of colony after 7 days on PDA. d Conidiomata sporulating on PDA. e–k Conidiogenous cells with developing Conidia. l Conidia. Scale bars: e–l= 10 μm.
FIGURE 1 in Coniella castanea sp. nov. on Castanea mollissima from Shandong Province, China
FIGURE 1. Phylogram of Coniella based on combined ITS, LSU, RPB2 and TEF1-α genes. The ML and BI bootstrap support values above 70 % and 0.90 BYPP are shown at the first and second position above nodes. Strains from the current study are in red. Tree is rooted with [out group]. Some branches were shortened to fit them to the page – these are indicated by two diagonal lines with the number of times a branch was shortened indicated next to the lines.
The dataset of "Characteristics of Urban Interaction Network in Shandong Province from the Perspective of Traffic Flow and Information Flow"
<p>There are the datasets of the research named "Characteristics of Urban Interaction Network in Shandong Province from the Perspective of Traffic Flow and Information Flow".</p>
FIGURES 36–40 in A new freshwater species Achnanthes licunese sp. nov. (Achnanthaceae, Bacillariophyta) from pebbles of Licun River, Shandong Province, China
FIGURES 36–40. Achnanthes licunese sp. nov. SEM, the internal view of araphid valve (ARV). 36. internal view of the whole valve. 37. central area of ARV. 38. detailed internal view of virgae and areolae 39–40. apices of ARV. Scale bars: 10 µm (36); 2 µm (37); 1 µm (38–40).
FIGURES 21–23 in A new freshwater species Achnanthes licunese sp. nov. (Achnanthaceae, Bacillariophyta) from pebbles of Licun River, Shandong Province, China
FIGURES 21–23. Achnanthes licunese sp. nov. SEM, girdle view. 21. a complete girdle view of the frustule and the cone-shaped spines (arrows). 22–23. middle detail of 21, showing the areolae and silica granules on the girdle bands (wavy arrows). Scale bar: 10 µm (21); 2 µm (22–23).
FIGURES 28–31 in A new freshwater species Achnanthes licunese sp. nov. (Achnanthaceae, Bacillariophyta) from pebbles of Licun River, Shandong Province, China
FIGURES 28–31. Achnanthes licunese sp. nov. SEM, the internal view of raphid valve (RV). 28. internal view of the whole valve. 29. central area of the valve, showing the proximal raphe ends, and central raphe endings are hookshaped. 30. detail of the internal areolae, showing the areolae is not occluded by the complex cribra. 31. apices of the valve, showing the detail view of areolae (arrows), terminal raphe fissure, helictoglossae, and margin of valve. Scale bars: 10 µm (28); 2 µm (29); 1 µm (31); 0.5 µm (30).
FIGURES 24–27 in A new freshwater species Achnanthes licunese sp. nov. (Achnanthaceae, Bacillariophyta) from pebbles of Licun River, Shandong Province, China
FIGURES 24–27 Achnanthes licunese sp. nov. SEM, the external view of raphid valve (RV). 24. external view of the whole valve. 26. central area of RV, showing the proximal raphe ends. 25, 27. apices of the valve, showing the terminal raphe fissure and areolae. Scale bars: 10 µm (24); 2 µm (26); 1 µm (25, 27).
FIGURES 32–35 in A new freshwater species Achnanthes licunese sp. nov. (Achnanthaceae, Bacillariophyta) from pebbles of Licun River, Shandong Province, China
FIGURES 32–35. Achnanthes licunese sp. nov. SEM, the external view of araphid valve (ARV). 32. external view of the whole valve. 34. central area of ARV. 33, 35. details of the apices of the valve, showing areolae and spines on the valve. Scale bars: 10 µm (32); 2 µm (34); 1 µm (33, 35).
FIGURES 3–20 in A new freshwater species Achnanthes licunese sp. nov. (Achnanthaceae, Bacillariophyta) from pebbles of Licun River, Shandong Province, China
FIGURES 3–20. Achnanthes licunese sp. nov. LM. 3–8. frustule in girdle view. 9–14. size diminution series of raphe valve. 15–20. size diminution series of rapheless valve. Scale bar: 10 μm.
FIGURES 1–2 in A new freshwater species Achnanthes licunese sp. nov. (Achnanthaceae, Bacillariophyta) from pebbles of Licun River, Shandong Province, China
FIGURES 1–2. Achnanthes licunses sp. nov. LM, the live cells 1. An unprocessed cell in girdle view. 2. Two unprocessed cells in girdle view. Scale bar: 10 μm.
TABLE 1 in A new freshwater species Achnanthes licunese sp. nov. (Achnanthaceae, Bacillariophyta) from pebbles of Licun River, Shandong Province, China
<p><b>TABLE 1.</b> Comparison of morphological characteristics of <i>Acnanthes licunese sp.nov.</i> and closely related taxa.</p><table><tbody><tr><th>Species/feature</th><th>Dimension Length(µm)</th><th>Width(µm)</th><th>Valve outline</th><th>center</th><th>Apices</th><th>Striae in 10 µm on RV</th><th>Striae in 10 µm on ARV</th><th>Spines</th><th>Marginal ridge</th><th>Terminal orbiculi on ARV</th><th>Habitat</th><th>Sources</th></tr></tbody><tbody><tr><th><i>A. licunese sp.nov.</i></th><td>38.0–53.5</td><td>10.0–12.5</td><td>linear to linear-lanceolate</td><td>slightly constricted</td><td>obtuse</td><td>9–10</td><td>9–10</td><td>cone-shaped, distributed along the margin on the ARV</td><td>absent</td><td>absent</td><td>Freshwater</td><td>This study</td></tr><tr><th><i>A. secretitaeniata</i> K.Toyoda & Ji. Tanaka</th><td>18.0–67.0</td><td>9.0–13.0</td><td>lanceolate to linear-lanceolate</td><td>slightly constricted</td><td>broadly rounded</td><td>9–11</td><td>8–10</td><td>plate-like, at each apex</td><td>present</td><td>absent</td><td>Brackish water</td><td>Heudre <i>et al.</i>, 2020</td></tr><tr><th><i>A. sinaensis</i> (Hustedt) Levkov, Tofilovska & Wetzel</th><td>32.5–43.0</td><td>8.5–11.5</td><td>linear to linear-lanceolate</td><td>slightly broad</td><td>broadly rounded to trunctate</td><td>10–11</td><td>10–11</td><td>absent</td><td>present</td><td>present</td><td>Freshwater</td><td>Tofilovska <i>et al.</i>, 2014</td></tr><tr><th><i>A. prominula</i> Levkov & Tofilovska</th><td>18.5–43.0</td><td>8.5–10.5</td><td>linear-lanceolate or elliptic-lanceolate</td><td>slightly broad</td><td>attenuated and narrowly rounded</td><td>11–12</td><td>10–12</td><td>absent</td><td>present</td><td>present</td><td>Freshwater</td><td>Tofilovska <i>et al.</i>, 2014</td></tr><tr><th><i>A</i>. <i>coarctata</i> (Brébisson & Smith) Grunow</th><td>29.0–44.5</td><td>7.0–9.5</td><td>biundulate</td><td>constricted</td><td>attenuated and narrowly rounded or rostrate and rounded</td><td>12–14</td><td>12–14</td><td>absent</td><td>present</td><td>present</td><td>Freshwater</td><td>Tofilovska <i>et al.</i>, 2014</td></tr></tbody></table>
Gust data for Qingdao City, Shandong Province, China from April 27 to June 8, 2021
<p>This data set shows gust parameters calculated using Doppler Lidar deployed in Qingdao, Shandong Province, China from April 27 to June 8, 2021.</p>
FIGURE 2 in A new species of Mutinus (Phallaceae, Phallales) from Shandong Province, China
FIGURE 2. Basidiomata and microstructures of Mutinus taishanensis (holotype, EFHAAU2894). a Basidiomata of Mutinus taishanensis, bar = 10 mm; b Basidiospores, bar = 5 μm; c Pseudoparenchymatous cells of the pseudostipe, bar = 50 μm; d Hyphae of the volva, clamp connection shown in the upper left corner, bar = 10 μm; e. Hyphae of the rhizomorphs, clamp connection shown in the upper left corner, bar = 10 μm. Drawings by Panmeng Wang
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.
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.
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.