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1,188 results for “DELTA”
Fig. 8. Holocene ostracods from Samut Sakhon Province, Central Thailand. A–I in Holocene ostracods (Crustacea) from a whale-fall excavation site from the Chao Phraya delta, Central Thailand
Fig. 8. Holocene ostracods from Samut Sakhon Province, Central Thailand. A–I. Keijella multisulcus Whatley & Zhao, 1988. A. Valve, juvenile, right lateral view, SUT-20SS-C254. B. Valve, female, left lateral view, SUT-20SS-C269. C. Carapace, juvenile, left lateral view, SUT-20SS-C270. D. Valve, juvenile, right lateral view, SUT-20SS-C267. E. Valve, juvenile, left lateral view, SUT-20SS-C286. F. Valve, juvenile, right lateral view, SUT-20SS-C253. G. Valve, juvenile, right lateral view, SUT- 20SS-C272. H. Valve, juvenile, left lateral view, SUT-20SS-C273. I. Valve, female, right lateral view, SUT-20SS-C257. – J–L. Ammonia tepida (Cushman, 1926), spiral side, SUT-20SS-F001. – M. Spiroloculina sp., side view, SUT-20SS-F002. – N. Quinqueloculina sp., side view, SUT-20SS-F003. – O–Q. Asterorotalia pulchella (d'Orbigny, 1839), side view, SUT-20SS-F004-6. Scale bars = 0.1 mm.
Fig. 5. Holocene ostracods from Samut Sakhon Province, Central Thailand. A–C. Aglaiocypris pellucida Mostafawi, 2003. A in Holocene ostracods (Crustacea) from a whale-fall excavation site from the Chao Phraya delta, Central Thailand
Fig. 5. Holocene ostracods from Samut Sakhon Province, Central Thailand. A–C. Aglaiocypris pellucida Mostafawi, 2003. A. Carapace, right lateral view, SUT-20SS-C003. B. Carapace, left lateral view, SUT-20SS-C007. C. Carapace, left lateral view, SUT-20SS-C003. – D–H. Propontocypris bengalensis Maddocks, 1969. D. Carapace, left lateral view, SUT-20SS-C012. E. Carapace, left lateral view, SUT- 20SS-C020. F. Carapace, left lateral view, SUT-20SS-C014. G. Carapace, right lateral view, SUT- 20SS-C027. H. Carapace, left lateral view, SUT-20SS-C022. – I–O. Sinocytheridea impressa (Brady, 1869). I. Carapace, female, right lateral view, SUT-20SS-C063. J. Carapace, male, right lateral view, SUT-20SS-C040. K. Internal view of right valve, male, SUT-20SS-C049. L. Carapace, female, left lateral view, SUT-20SS-C071. M. Carapace, male, left lateral view, SUT-20SS-C071. N. Internal view of left valve, male, SUT-20SS-C048. O. Internal view of left valve, female, SUT-20SS-C064. Scale bars = 0.1. mm.
Fig. 4 in Holocene ostracods (Crustacea) from a whale-fall excavation site from the Chao Phraya delta, Central Thailand
Fig. 4. Distribution of Holocene ostracods below and above the whale skeleton level at the whale-fall excavation site in Samut Sakhon Province, north of Gulf of Thailand.
Fig. 3 in Holocene ostracods (Crustacea) from a whale-fall excavation site from the Chao Phraya delta, Central Thailand
Fig. 3. Lithostratigraphy of the studied section at whale-fall excavation site in Samut Sakhon Province. A. Lithologic log modified after Nuamnim et al. (2021). B. Lithologic log of the studied section (this study).
Fig. 2 in Holocene ostracods (Crustacea) from a whale-fall excavation site from the Chao Phraya delta, Central Thailand
Fig. 2. Map of the studied section. A–B. Position of the study area at the northern coast of the Gulf of Thailand. C. Location of the whale-fall excavation site in Samut Sakhon Province (Google Map, 2021).
Fig. 1 in Holocene ostracods (Crustacea) from a whale-fall excavation site from the Chao Phraya delta, Central Thailand
Fig. 1. Whale-fall excavation site, fifteen kilometers away from recent shoreline in Samut Sakhon Province, north of the Gulf of Thailand. A. First appearance of large skeletons eroded off the pit wall. B. The excavation during November–December 2020. C. Nearly complete, well preserved whale skeleton. All photos from ThaiWhales (https://www.facebook.com/thaiwhales/photos/?ref=page_internal).
Adsorption of the WT, delta and omicron variants onto hydrophobic and hydrophilic surfaces
<p>Adsorption of the WT, delta and omicron variants onto hydrophobic and hydrophilic surfaces. This contains 3 replicas of each.</p>
Figs 23–24 in Gulella salpinx sp. n., a new critically endangered holoendemic species from the limestone deposits of the Marble Delta, KwaZulu- Natal, South Africa (Mollusca: Gastropoda: Streptaxidae)
Figs 23–24. Gulella salpinx sp. n. Distal reproductive tract and internal penial armature. 23. Distal reproductive tract. 24. Dissection of penis to reveal internal armature; the wall of the penis has been cut longitudinally in the dorso-lateral area and the cut walls spread apart. ap, annular pilaster; atr, atrium; emb, embryo; fov, free oviduct; fst, fibrous spinule tuft; gp, genital pore; gsp, granular spinules; pen, penis; pgl, prostate gland; prm, penial retractor muscle; spc, spermatheca; spcd, spermathecal duct; tsp, trigonal spinules; ute, uterus; vag, vagina; vd, vas deferens; vpr, ventral pilaster ridge.
Fig. 1 in Gulella salpinx sp. n., a new critically endangered holoendemic species from the limestone deposits of the Marble Delta, KwaZulu- Natal, South Africa (Mollusca: Gastropoda: Streptaxidae)
Fig. 1. Map of Port Shepstone area and coastal hinterland, showing location of Marble Delta (stippled area). The type locality of Gulella salpinx sp. n. is marked with a black triangle; the cross hatched area indicates the built-up coastal strip.
Figs 12–15 in Gulella salpinx sp. n., a new critically endangered holoendemic species from the limestone deposits of the Marble Delta, KwaZulu- Natal, South Africa (Mollusca: Gastropoda: Streptaxidae)
Figs 12–15. Gulella salpinx sp. n. 12. Paratype, granular microsculpture inside aperture, scale bar = 50 m. 13. Intervals between axial ribs, scale bar = 200 m. 14. Paratype, embryonic shell, scale bar = 0.5 mm. 15. Paratype, first whorl of embryonic shell, scale bar = 200 m.
Figs 19–22 in Gulella salpinx sp. n., a new critically endangered holoendemic species from the limestone deposits of the Marble Delta, KwaZulu- Natal, South Africa (Mollusca: Gastropoda: Streptaxidae)
Figs 19–22. Gulella salpinx sp. n. radula. 19. Active zone of radula at anterior odontophoral flexure, scale bar = 75 m. 20. Half-row of preceding edge of radula folded under and outermost 2–4 teeth not visible, scale bar = 25 m. 21. Zone of lateral maximum, showing basal attachment and elongate shaft/cusp, scale bar = 20 m. 22. Rachidian and shorter, innermost lateral teeth, scale bar = 10 m.
Figs 2–7 in Gulella salpinx sp. n., a new critically endangered holoendemic species from the limestone deposits of the Marble Delta, KwaZulu- Natal, South Africa (Mollusca: Gastropoda: Streptaxidae)
Figs 2–7. Gulella salpinx sp. n. 2–4. Holotype, length = 7.14mm. 5. Paratype, cylindrical specimen, length = 6.97mm. 6. Paratype, squat, obovate specimen, length = 6.56mm. 7. Paratype, oblique basal view to show umbilicus.
Figs 16–17 in Gulella salpinx sp. n., a new critically endangered holoendemic species from the limestone deposits of the Marble Delta, KwaZulu- Natal, South Africa (Mollusca: Gastropoda: Streptaxidae)
Figs 16–17. Gulella salpinx sp. n. 16. Axial microsculpture on base of juvenile, scale bar = 100 m. 17. Embryo ex utero, scale bar = 0.5 mm.
Adsorption patterns of the WT, delta and omicron variants onto hydrophobic and hydrophilic surfaces
<p>Adsorption of the WT, delta and omicron variants onto hydrophobic and hydrophilic surfaces. This contains 3 replicas of each.</p>
EEG Dataset for 'Decoding of selective attention to continuous speech from the human auditory brainstem response' and 'Neural Speech Tracking in the Theta and in the Delta Frequency Band Differentially Encode Clarity and Comprehension of Speech in Noise'.
<p>The repository contains the unprocessed EEG data recorded for the publications [1, 2]. For convenience, the onsets of the EEG data provided here are time-aligned with the onsets of the audio books in the 'audiobooks' folder, and the EEG data are provided in HDF5 format. Please refer to the original version of this dataset for more details.</p> <p>More details, as well as the original data files, are available at the original repository <a href="https://doi.org/10.5281/zenodo.7086209">here</a>.</p> <p>Examples of using these data (preprocessing, fitting linear models) can be found <a href="https://github.com/Mike-boop/trf-examples">here</a>.</p> <p>The English conditions (clean, lb, mb, hb, fM, fW) comprised a single recording session. The Dutch conditions (cleanDutch, lbDutch, mbDutch, hbDutch) comprised a separate recording session. You see which participants took part in each session in session_info.json.</p> <p>Please note some details about the stimulus presentation for the various listening conditions:</p> <ul> <li>English speech-in-babble-noise (lb, mb, hb): babble noise was played by itself for one second before the audiobook track began. The babble noise was also played for one second after the audiobook track ended. Therefore, you should discard the first second and the last second from these trial during your analysis.</li> <li>Dutch speech-in-babble-noise (lbDutch, mbDutch, hbDutch): the story (narrated in Dutch) was played by itself for one second before the babble noise track began. Then, the babble noise was increased linearly in amplitude for one second. Therefore, you should discard the first two seconds from these trials during your analysis.</li> <li>Dutch in quiet, and Dutch-in-babble-noise (cleanDutch, lbDutch, mbDutch, hbDutch): some English sentences were embedded in the Dutch narratives in order to encourage attention. You should crop these from your analysis. The onsets and offsets of the English sentences (in samples, at 44100Hz) are provided in the audiobooks/*Dutch/english_onsets_info.json files.</li> <li>Competing-speakers conditions (fM, fW): sometimes the attended track is longer than the unattended track, or vice-versa. The onsets of both tracks are aligned. You should crop the trial to the length of the shortest track for your analysis.</li> </ul> <p>If you use this data, please cite the original publications, as well as this repository [1,2,3].</p> <p>[1] Etard O, Kegler M, Braiman C, Forte A E and Reichenbach T. “Decoding of selective attention to continuous speech from the human auditory brainstem response” 2019. <em>NeuroImage</em> <strong>200</strong> 1–11</p> <p>[2] Etard O and Reichenbach T. “Neural speech tracking in the theta and in the delta frequency band differentially encode clarity and comprehension of speech in noise” 2019. <em>J. Neurosci.</em> <strong>39</strong> 5750–9</p> <p>[3] Etard O and Reichenbach T. "EEG Dataset for 'Decoding of selective attention to continuous speech from the human auditory brainstem response' and 'Neural Speech Tracking in the Theta and in the Delta Frequency Band Differentially Encode Clarity and Comprehension of Speech in Noise". Doi: 10.5281/zenodo.7086208</p>
Dataset used in "Comment on "Soil salinity assessment by using near-infrared channel and Vegetation Soil Salinity Index derived from Landsat 8 OLI data: a case study in the Tra Vinh Province, Mekong Delta, Vietnam" by Kim-Anh Nguyen, Yuei-An Liou, Ha-Phuong Tran, Phi-Phung Hoang and Thanh-Hung Nguyen"
<p>The Excel file provides all the data included in Tab.4 of Nguyen et al. 2020 plus reflectances extracted from the Landsat 8 OLI image acquired on 14 February 2017 and downloaded from the USGS Earth Explorer website. Observations on the number of pixels falling of water, land and mixed water/land surfaces are provided as well as water percentage cover estimated using regular spaced points. </p> <p>The dataset includes vector files (kml format) of the grids corresponding to the selected L8 pixels as well as the regularly spaced points generated within the selected pixels. These files can be imported in QGIS, Google Earth Pro and other free GIS software.</p>
Fig. 2 in New records of digenean parasites of Clarias gariepinus (Pisces: Clariidae) from the Okavango Delta, Botswana, with description of Thaparotrema botswanensis sp. n. (Plathelminthes: Trematoda)
Fig. 2. Light and scanning electron micrographs of Clinostomoides brieni Dollfus, 1950 (A–E) and Neodiplostomum type 1 metacercaria (F–H) from Clarias gariepinus in the Okavango Delta: (A) excysted metacercariae; (B) whole mount; (C) spines on body surface; (D) reproductive system; (E) excretory pore; (F) metacercariae encysted in muscle; (G) oral sucker and pharynx; (H) holdfast organ. Scale bars: A, B – 1 mm; C – 2 µm, D, F – 0.1 mm; E – 20 µm; G – 0.05 mm; H – 0.01 mm.
Fig. 1 in New records of digenean parasites of Clarias gariepinus (Pisces: Clariidae) from the Okavango Delta, Botswana, with description of Thaparotrema botswanensis sp. n. (Plathelminthes: Trematoda)
Fig. 1. Light microscope projection drawings of digeneans from Clarias gariepinus in the Okavango Delta: (A) Clinostomoides brieni Dollfus, 1950; (B) Neodiplostomum Railliet, 1919 type 1 metacercaria; (C) Phyllodistomum bavuri Boomker, 1984; (D) Phyllodistomum vanderwaali Prudhoe & Hussey, 1977; (E) Glossidium pedatum Looss, 1899; (F) Thaparotrema botswanensis sp. n. Scale bars: A, C – 1 mm; D – 0.3 mm; B, E – 0.1 mm; F – 0.2 mm.
Fig. 4 in New records of digenean parasites of Clarias gariepinus (Pisces: Clariidae) from the Okavango Delta, Botswana, with description of Thaparotrema botswanensis sp. n. (Plathelminthes: Trematoda)
Fig. 4. Light micrographs of Thaparotrema botswanensis sp. n. collected from Clarias gariepinus in the Okavango Delta: (A) whole mount; (B) pharynx; (C) anterior and posterior testes; (D) seminal vesicle; (E) genital opening; (F) ovary and seminal receptacle; (G) vitellaria and uterus filled with eggs; (H) excretory bladder. Scale bars: A – 1 mm; B, C, E, F, H – 0.1 mm; D, G – 0.05 mm.
Figures 1–2 in Mites of the genus Prozercon (Acari: Zerconidae) in Dilek Peninsula-Büyük Menderes Delta National Park (Turkey), with description of a new species
Figures 1–2. Prozercon didimensis sp. nov. (female) 1. Dorsal view, 2. Ventral views. Abbreviations: (r1 and r3) peritremal setae, (Pr) peritreme, (Pes) peritremal shield, (Ts) tritosternum, (C I–C IV) endopodal shields, (st1–5) sternal setae, (Ges) genital shield, (Vas) ventrianal shield, (JV1– JV3, ZV2–ZV4 and JV4) ventrianal setae, (Ad) adanal setae and (Pa) postanal seta. Scale bar 100.
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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.