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2,353 results for “channel”
FIGURE 30 in Sublittoral and bathyal sea cucumbers (Echinodermata: Holothuroidea) from the Northern Mozambique Channel with description of six new species
FIGURE 30. Molpadia africana Ludwig & Heding, 1935. A: Dorsal view of specimen IE-2007-781. B–C: SEM photos of ossicles from dorsal body wall (B) and tail (C). Scale bars: A = 1cm; B = 50µm; C = 20µm.
FIGURE 1. Bohadschia cousteaui Cherbonnier, 1954. A–B in Sublittoral and bathyal sea cucumbers (Echinodermata: Holothuroidea) from the Northern Mozambique Channel with description of six new species
FIGURE 1. Bohadschia cousteaui Cherbonnier, 1954. A–B: SEM photos of ossicles from ventral (A) and dorsal (B) body wall. Scale bars: 20µm.
FIGURE 28 in Sublittoral and bathyal sea cucumbers (Echinodermata: Holothuroidea) from the Northern Mozambique Channel with description of six new species
FIGURE 28. Psolus agulhasicus Ludwig & Heding, 1935. A: Ventral and dorsal views of one specimen from IE-2007-771. B– C: SEM photos of ossicles from the body wall. Scale bars: A = 1cm; B = 20µm; C = 200µm.
FIGURE 21 in Sublittoral and bathyal sea cucumbers (Echinodermata: Holothuroidea) from the Northern Mozambique Channel with description of six new species
FIGURE 21. Ypsilothuria cf. bitentaculata (Ludwig, 1893). A: different view of specimens IE-2007-780, B: lateral view of specimen IE-2007-765, C: SEM view of body wall thecal plates. Scale bares: A&B = 1cm, C = 500µm.
FIGURE 2. Schistura notasileum, ASIZB 204680 in A new river loach from the main channel of the upper Mekong in Yunnan (Cypriniformes: Nemacheilidae)
FIGURE 2. Schistura notasileum, ASIZB 204680, paratype, 51.5 mm SL, suborbital lobe. Scale bar 1 mm.
FIGURE 27. Psolidium acorbulum Thandar, 2006. A–D in Sublittoral and bathyal sea cucumbers (Echinodermata: Holothuroidea) from the Northern Mozambique Channel with description of six new species
FIGURE 27. Psolidium acorbulum Thandar, 2006. A–D: SEM photos of ossicles from dorsal body wall (A–C) and ventral body wall (D). Scale bars: A, B = 100µm; C = 10µm; D = 20µm.
FIGURE 10. Stichopus herrmanni Semper, 1868. A–C in Sublittoral and bathyal sea cucumbers (Echinodermata: Holothuroidea) from the Northern Mozambique Channel with description of six new species
FIGURE 10. Stichopus herrmanni Semper, 1868. A–C: SEM photos of ossicles from the body wall (A,B) and tube feet (C). Scale bars: A, B = 10µm; C = 50µm.
FIGURE 2 in Sternaspis chilensis n. sp., a new species from austral Chilean channels and fjords (Annelida, Sternaspidae)
FIGURE 2. Holotype (MNHNCL ANN-15024) paratypes 22 mm long (MNHNCL ANN-15029) ventral view (inset: A´close-up of body papillae from region indicated by arrow), B) anterior end, ventral view; C) close-up of mouth area showing papillae; D) close-up of genital papillae; E) chaetiger 1, left side, bronze chaetae; F) posterior region showing shield, chaetae and branchial region; G) left lateral marginal shield chaetae, showing distribution pattern; H) detail of chaetae from lateral shield; I) branchial plate detail, branchiae removed, paratype.
FIGURE 3. Sternaspis chilensis n in Sternaspis chilensis n. sp., a new species from austral Chilean channels and fjords (Annelida, Sternaspidae)
FIGURE 3. Sternaspis chilensis n. sp. A) paratype, 22 mm long, (MNHNCL- ANN-15025) interbranchial filamentous papillae; B) paratype, 22 mm long, lateral view (MNHNCL- ANN-15025); C) paratype (MNHNCL-ANN-15026); D) paratype (MNHNCL-ANN-15027); E) paratype (MNHNCL-ANN-15028); F) paratype (MNHNCL-ANN-15029), 15 mm long.
Natural river data and analysis code for the correlation of channel threads of the Brahmaputra-Jamuna River (v2)
<p>This is the archive of the data of processed water masks and channel-thread centerlines, code used for analyzing the coherent motion of channel threads, results of channel thread migration and numerical modeling for the braided Brahmaputra-Jamuna River, which is tied to the manuscript submitted to Journal of Geophysical Research: Earth Surface: Li, Y., and Limaye, A. B., Coherent motion of channel threads in the braided Brahmaputra-Jamuna River.</p> <p>Running the analyze code needs a MATLAB® software environment. The MATLAB script 'demo_dtw.m' in folder 'braided_dataRepo/Code' recreates the correlation for the braided channel threads in Figure 5 of the manuscript.</p>
Regime Channel Data
<p>Regime channel data for research on dynamic equilibrium of rivers. The dataset entails bankfull discharge, median particle size, bankfull width, bankfull depth and slope for sand and gravel bed channels.</p>
Data for "Coherent control of a few-channel hole type gatemon qubit"
<p>The files contain the raw and processed data used for the publication "Coherent control of a few-channel hole type gatemon qubit" in ASCII format. See readme.txt for details.</p><p> </p>
Atmospheric Absorption Tables for AMSU-A Channels 4 through 9, RSS oxygen model
Open the record for dataset details and reuse information.
A novel approach to low-cost, rapid and simultaneous colorimetric detection of multiple analytes using 3D printed microfluidic channels
<p>This research paper presents an inventive technique to swiftly create microfluidic channels on distinct membrane papers, enabling colorimetric drug detection. Using a modified DIY RepRap 3D printer with a syringe pump, microfluidic channels (µPADs) are crafted on a flexible nylon-based substrate. This allows simultaneous detection of four common drugs with a single reagent. An optimized blend of Polydimethylsiloxane (PDMS) dissolved in hexane is used to create hydrophobic channels on various filter papers. The PDMS-hexane mixture infiltrates the paper's pores, forming hydrophobic barriers that confine liquids within the channels. These barriers are cured on the printer's hot plate, controlling channel width and preventing spreading. Capillary action drives fluid along these paths without spreading. This novel approach provides a versatile solution for rapid microfluidic channel creation on membrane papers. The DIY RepRap 3D printer integration offers precise control and faster curing. The PDMS-hexane solution accurately forms hydrophobic barriers, containing liquids within desired channels. The resulting microfluidic system holds potential for portable, cost-effective drug detection and various sensing applications.</p>
Simulation Dataset: The antimicrobial fibupeptide lugdunin forms water-filled channel structures in lipid membranes
<p>The Zenodo repository contains data to the molecular dynamics simulations in the following manuscript: </p> <p><strong>The antimicrobial fibupeptide lugdunin forms water-filled channel structures in lipid membranes </strong></p> <p>by</p> <p>Dominik Ruppelt, Marius F. W. Trollmann, Taulant Dema, Sebastian N. Wirtz, Hendrik <br>Flegel, Sophia Mönnikes, Stephanie Grond, Rainer A. Böckmann*, Claudia Steinem*</p> <p>0) Lugdunin-parameterization</p> <p>1) Lugdunin-stack-stability</p> <p> - trans_configuration.gro: Artifical lugdunin stack in trans configuration (see SFig. 23 a).</p> <p> - gauche_configuration.gro: Artifical lugdunin stack in gauche configuration (see SFig. 23 b)</p> <p> - DMPC</p> <p> - DOPC</p> <p> - POPC</p> <p> - POPC_CHOL</p> <p>2) Partitioning-of-Lugdunin-in-Membranes</p> <p> - POPC</p> <p> - POPC_CHOL</p> <p> - GRAMPOS</p> <p>3) PMF-calculations</p> <p> - GRAMPOS_WT</p> <p> - POPC_CHOL_MUT</p> <p> - POPC_CHOL_WT</p> <p> - POPC_MUT</p> <p> - POPC_WT</p>
Bank erosion process and distribution along channel caused by multiple debris flow surges
<p>This dataset contains point cloud data and Excel table data, which together describe the bank retreat process of 5 types of bank soils caused by multiple debris flow surges</p>
The influence of flow electrode channel design on flow capacitive deionization performance: Experimental and CFD modelling insights
<p>Flow capacitive deionization (FCDI) is an emerging desalination technology at which flow electrodes (shearthinning<br>flowable carbon slurries) are used to remove ions from saline water. The geometry of flow electrode<br>channels, which provide the path and ensure the distribution and mixing of the flow electrodes, is one of the most<br>important aspects to be optimized. This work presents experimental and computational fluid dynamics (CFD)<br>modelling analysis of the influence of the geometry of flow electrode channels on FCDI performance. Flow<br>electrode gaskets (with open, serpentine (short) horizontal and serpentine (long) vertical channels) were 3D<br>printed using a polyethylene terephthalate glycol (PET-G) filament. The FCDI cell with a vertical serpentine flow<br>electrode channel exhibited the poorest performance due to channel blockage by carbon particles, while the best<br>results were achieved with a horizontal serpentine flow electrode channel. CFD simulations aided in understanding<br>this behaviour by showing that the channel geometry strongly affects the local shear rate, and thus the<br>local viscosity of flow electrodes. Thus, it is recommended to design channels that induce flow disturbance<br>aiming for increasing the shear rate and hence reducing flow electrode viscosity, therefore promoting their<br>flowability and reducing clogging chances.</p>
Molecular dynamics simulation of a pentameric ligand-gated ion channel DeCLIC
<p>Molecular dynamics simulation trajectories, parameter files for a bacterial pentameric ligand-gated ion channel DeCLIC, in the system with 150mM CaCl2 or NaCl2.</p>
FIGURE 6. a. Nesiocypraea teramachii neocaledonica Lorenz 2002 in Bouchetaria (Gastropoda: Cypraeidae), a new genus for the Riddle cowry, B. aenigma (Lorenz 2002), from the deep waters of the Mozambique Channel
FIGURE 6. a. Nesiocypraea teramachii neocaledonica Lorenz 2002 (58 mm) Southern New Caledonia, at 450 m. b. Nesiocypraea teramachii polyphemus Lorenz 2002 (60 mm) Davao, Philippines, at 200 m. c. Nesiocypraea midwayensis midwayensis AZUMA & KUROHARA 1967 (23 mm) Southern Japan, at 250 m. d. Nesiocypraea midwayensis kontiki Lorenz 2012 (15 mm) Kaukura, Tuamotu, at 450 m. Coll. MNHN. e. Nesiocypraea midwayensis var. (24 mm) Mindanao, Philippines, at 200 m. f. Nesiocypraea lisetae lisetae (KILBURN 1975) (16 mm) Durban, South Africa, at 400 m. Coll. CLSF. g. Nesiocypraea lisetae maricola (CATE 1976) (17 mm) Bohol, Philippines, at 200 m. Recent. h. Ipsa childreni (J.E. GRAY 1825) (25 mm) Mauritius, at 20 m. Recent.
FIGURE 5. a in Bouchetaria (Gastropoda: Cypraeidae), a new genus for the Riddle cowry, B. aenigma (Lorenz 2002), from the deep waters of the Mozambique Channel
FIGURE 5. a. Palaeocypraea spirata (VON SCHLOTHEIM 1820) (18 mm) Faxe Quarry, Denmark. Paleocene. b. Eopustularia balinka FEHSE 2010 (18 mm) Veszprém, Hungary. Bartonian, Upper Eocene. c. Eopustularia bartonensis (EDWARDS 1855) (22 mm) Arthon en Retz, France. Lutetian, Upper Eocene. d. Eopustularia sp. (26 mm) St. Aignan, France. Lutetian, Upper Eocene. Coll. MSF fs163. e. Eopustularia brackleshamensis (SCHILDER 1929) (28 mm) Chaumont en Vexin, France. Lutetian, Upper Eocene. f. Praerosaria biacuta (DOLIN & LOZOUET 2004) (16.8 mm) Saint-Paul-lès-Dax, France. Upper Oligocene. Holotype MNHN IM-2000-3764. Photos courtesy Recolnat, Lozouet. g. Propustularia surinamensis (PERRY 1811) (28 mm) Northern Brazil, at 80 m. Recent.
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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.