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zenodo40/100

Text-fig. 6. m2 of U. deningeri from Šandalja I (a: specimen G; 1– occlusal, 2 – lingual view) compared with Late Biharian U. deningeri from C 718 cave (b: NM-R 9740, c: NM-Ra 129; both occlusal view). Specimens coated by ammonium chloride; a reversed. in Šandalja I (Croatia) And

Text-fig. 6. m2 of U. deningeri from Šandalja I (a: specimen G; 1– occlusal, 2 – lingual view) compared with Late Biharian U. deningeri from C 718 cave (b: NM-R 9740, c: NM-Ra 129; both occlusal view). Specimens coated by ammonium chloride; a reversed.

opencc-by-4.0Dec 2017View details →
zenodo40/100

Text-fig. 4. m1 of U. t. mediterraneus from Šandalja I compared with other bear species. All teeth in occlusal view. a: Šandalja I (specimen C), b: U. t. mediterraneus, Mauer (SMNS 10166), c: U. t. mediterraneus, Azykh (ZIN 32549), d: U. etruscus, Olivola (IGF 4605), e: U. etruscus, Upper Valdarno (IGF 913), f: U. deningeri, Koněprusy caves (NM-Rv 20008). Specimens coated by ammonium chloride; a, d, f reversed. in Šandalja I (Croatia) And

Text-fig. 4. m1 of U. t. mediterraneus from Šandalja I compared with other bear species. All teeth in occlusal view. a: Šandalja I (specimen C), b: U. t. mediterraneus, Mauer (SMNS 10166), c: U. t. mediterraneus, Azykh (ZIN 32549), d: U. etruscus, Olivola (IGF 4605), e: U. etruscus, Upper Valdarno (IGF 913), f: U. deningeri, Koněprusy caves (NM-Rv 20008). Specimens coated by ammonium chloride; a, d, f reversed.

opencc-by-4.0Dec 2017View details →
zenodo40/100

Text-fig. 3. m2 and m3 of U. t. mediterraneus from Šandalja I compared with other bear species. a–e: m2, f–g: m3. a: Šandalja I (specimen A; 1 – occlusal, 2 – lingual, 3 – buccal view), b: Šandalja I (specimen B; occlusal view), c: U. t. mediterraneus, Grotta di Reale (IGF 4807V; 1 – occlusal, 2 – lingual view), d: U. etruscus, Olivola (IGF 4605; occlusal view), e: U. etruscus, Upper Valdarno (IGF 908; occlusal view), f: Šandalja I (specimen B; occlusal view), g: U. etruscus, Olivola (IGF 4588; occlusal view). Specimens coated by ammonium chloride; a, b, e, f, g reversed. in Šandalja I (Croatia) And

Text-fig. 3. m2 and m3 of U. t. mediterraneus from Šandalja I compared with other bear species. a–e: m2, f–g: m3. a: Šandalja I (specimen A; 1 – occlusal, 2 – lingual, 3 – buccal view), b: Šandalja I (specimen B; occlusal view), c: U. t. mediterraneus, Grotta di Reale (IGF 4807V; 1 – occlusal, 2 – lingual view), d: U. etruscus, Olivola (IGF 4605; occlusal view), e: U. etruscus, Upper Valdarno (IGF 908; occlusal view), f: Šandalja I (specimen B; occlusal view), g: U. etruscus, Olivola (IGF 4588; occlusal view). Specimens coated by ammonium chloride; a, b, e, f, g reversed.

opencc-by-4.0Dec 2017View details →
zenodo40/100

Text-fig. 1. Gastonispermum portugallicum gen. et sp. nov. seeds from the Early Cretaceous Famalicão locality (sample 025), Portugal; Synchrotron radiation X-ray tomographic microscopy (SRXTM, volume renderings). Note remains of mounting media on several seeds (¤). a) Seed in oblique view showing seed shape, the slightly raised raphal ridge and the position of hilum (hi) and micropyle (mi) on the raphal side of the seed (S170218). b, c) Seeds in lateral view (b, S170234; c, S175095). d–f) Holotype (S174820); seed in lateral view (d) and cut volume rendering (e, f) through the median plane of the seed showing palisade-shaped sclerenchyma cells of exotesta and remains of embryo (emb) and surrounding nutritive tissue (e, cut between yz0440-0530; f, cut between slices yz440-480). g) Hilum (hi) and micropyle (mi) of seed in (1a) showing the Y-shaped micropylar slit in the outer integument. h) Cut volume rendering through the median plane of the seed (cut at yz0492) showing seed coat mainly composed of palisade-shaped cells of the exotesta (S174435). i) Seed surface showing the raised outlines of the undulate anticlinal walls of the exotestal cells (S175045). Scale bars = 500 µm (a–e); 250 µm (g); 125 µm (f, i). in Extinct Taxa Of Exotestal Seeds Close To Austrobaileyales And Nymphaeales From The Early Cretaceous Of Portugal

Text-fig. 1. Gastonispermum portugallicum gen. et sp. nov. seeds from the Early Cretaceous Famalicão locality (sample 025), Portugal; Synchrotron radiation X-ray tomographic microscopy (SRXTM, volume renderings). Note remains of mounting media on several seeds (¤). a) Seed in oblique view showing seed shape, the slightly raised raphal ridge and the position of hilum (hi) and micropyle (mi) on the raphal side of the seed (S170218). b, c) Seeds in lateral view (b, S170234; c, S175095). d–f) Holotype (S174820); seed in lateral view (d) and cut volume rendering (e, f) through the median plane of the seed showing palisade-shaped sclerenchyma cells of exotesta and remains of embryo (emb) and surrounding nutritive tissue (e, cut between yz0440-0530; f, cut between slices yz440-480). g) Hilum (hi) and micropyle (mi) of seed in (1a) showing the Y-shaped micropylar slit in the outer integument. h) Cut volume rendering through the median plane of the seed (cut at yz0492) showing seed coat mainly composed of palisade-shaped cells of the exotesta (S174435). i) Seed surface showing the raised outlines of the undulate anticlinal walls of the exotestal cells (S175045). Scale bars = 500 µm (a–e); 250 µm (g); 125 µm (f, i).

opencc-by-4.0Aug 2018View details →
zenodo40/100

Text-fig. 6. Reyispermum parvum gen. et sp. nov. seeds from the Early Cretaceous Vale de Água locality, Portugal (a, b, d, e: sample 141, c: sample 300); Synchrotron radiation X-ray tomographic microscopy (SRXTM, orthoslices). a) Longitudinal orthoslice (yz0563) through the median plane of the seed (holotype, S174178) showing the palisade-shaped cells of exotesta and collapsed inner parts of seed coat, raised exotestal tissue (arrow head) immediately adjacent to the lower edge of the hilum (hi), micropyle (mi) and remains of cellular nutritive tissue. b) Longitudinal orthoslice (xz0659) through the micropylar region perpendicular to the median plane showing the exotestal tissue surrounding the transverse micropyle slit (mi). c) Longitudinal orthoslice (yz0500) through the median plane of the seed (S175095) showing raised tissue (arrow head) immediately adjacent to the lower edge of the hilum (hi), micropyle (mi) and poorly preserved cells of the seed coat. d) Longitudinal orthoslice (xz0810) through middle part of seed perpendicular to the median plane (S174178) showing seed coat and remains of cellular nutritive tissue. e) Tangential and longitudinal orthoslice (xz0162) through the seed coat of holotype (S174178) showing thickened, undulate cell walls of exotesta (ex) and the short, thin-walled cells of tegmen (te) with a finely striate wrinkled surface. Scale bars = 250 µm (a, c, d); 125 µm (b, e). in Extinct Taxa Of Exotestal Seeds Close To Austrobaileyales And Nymphaeales From The Early Cretaceous Of Portugal

Text-fig. 6. Reyispermum parvum gen. et sp. nov. seeds from the Early Cretaceous Vale de Água locality, Portugal (a, b, d, e: sample 141, c: sample 300); Synchrotron radiation X-ray tomographic microscopy (SRXTM, orthoslices). a) Longitudinal orthoslice (yz0563) through the median plane of the seed (holotype, S174178) showing the palisade-shaped cells of exotesta and collapsed inner parts of seed coat, raised exotestal tissue (arrow head) immediately adjacent to the lower edge of the hilum (hi), micropyle (mi) and remains of cellular nutritive tissue. b) Longitudinal orthoslice (xz0659) through the micropylar region perpendicular to the median plane showing the exotestal tissue surrounding the transverse micropyle slit (mi). c) Longitudinal orthoslice (yz0500) through the median plane of the seed (S175095) showing raised tissue (arrow head) immediately adjacent to the lower edge of the hilum (hi), micropyle (mi) and poorly preserved cells of the seed coat. d) Longitudinal orthoslice (xz0810) through middle part of seed perpendicular to the median plane (S174178) showing seed coat and remains of cellular nutritive tissue. e) Tangential and longitudinal orthoslice (xz0162) through the seed coat of holotype (S174178) showing thickened, undulate cell walls of exotesta (ex) and the short, thin-walled cells of tegmen (te) with a finely striate wrinkled surface. Scale bars = 250 µm (a, c, d); 125 µm (b, e).

opencc-by-4.0Aug 2018View details →
zenodo40/100

Text-fig. 7. Lusitanispermum choffatii gen. et sp. nov. seeds from the Early Cretaceous Famalicão locality (sample 025), Portugal; Synchrotron radiation X-ray tomographic microscopy (SRXTM, volume renderings). a) Holotype; seed in lateral view showing seed shape; note that the seed is broken near the lower surface of the hilum (S174345). b) Oblique apical view of micropylar-hilar region of holotype showing slightly ruptured micropylar slit (mi) in the outer integument and two bulging and abraded areas (arrow heads) close to hilum. c) Seed in oblique lateral-raphal view showing the two bulging structures (arrow heads) immediately adjacent to the lower edge of the hilum (S174472). d) Tangential, longitudinal cut (cut at yz0131) through the seed coat of seed in (7c) showing the undulate anticlinal cell walls of the exotesta cells that are thickest towards the outside and thinner towards the inside. Scale bars = 500 µm (a–c); 250 µm (d). in Extinct Taxa Of Exotestal Seeds Close To Austrobaileyales And Nymphaeales From The Early Cretaceous Of Portugal

Text-fig. 7. Lusitanispermum choffatii gen. et sp. nov. seeds from the Early Cretaceous Famalicão locality (sample 025), Portugal; Synchrotron radiation X-ray tomographic microscopy (SRXTM, volume renderings). a) Holotype; seed in lateral view showing seed shape; note that the seed is broken near the lower surface of the hilum (S174345). b) Oblique apical view of micropylar-hilar region of holotype showing slightly ruptured micropylar slit (mi) in the outer integument and two bulging and abraded areas (arrow heads) close to hilum. c) Seed in oblique lateral-raphal view showing the two bulging structures (arrow heads) immediately adjacent to the lower edge of the hilum (S174472). d) Tangential, longitudinal cut (cut at yz0131) through the seed coat of seed in (7c) showing the undulate anticlinal cell walls of the exotesta cells that are thickest towards the outside and thinner towards the inside. Scale bars = 500 µm (a–c); 250 µm (d).

opencc-by-4.0Aug 2018View details →
zenodo40/100

Text-fig. 6. Scanning electron microscope (SEM, a, g, h) and synchrotron radiation X-ray tomographic microscopy (SRXTM, b–f) images of fruits and pollen grains of Canrightiopsis crassitesta (a–c, g, h) and fruit of Canrightiopsis intermedia (d–f); Catefica locality, Portugal. a) Dorsal view of fruit showing rim of hypanthium (arrowheads); b) Surface rendering of longitudinal section in the median plane of fruit (cut between orthoslices yz0440-0510) showing the thin fruit wall, thick endotesta of the seed coat (en, dark blue) and the orthotropous, pendent seed with the chalaza (ch) near the fruit apex and the micropyle (mi) at the fruit base; note the tiny embryo (emb) adjacent to the micropyle at the base of the fruit; c) Longitudinal section (orthoslice xz0511) through the seed wall showing the thick, finely crystalliferous endotesta (en) surrounding the nutritive tissue of the seed; d) Surface rendering of fruit in dorsal view showing rim of the hypanthium (arrowheads) and apical stigmatic region (st); e) Surface rendering of longitudinal section of fruit in (d) (cut at orthoslice xz0560) showing the crystalliferous endotesta (en, dark blue) and the inner tissues of the seed; f) Longitudinal section (orthoslice xz0560) through fruit and seed showing the finely crystalliferous endotesta (en) and thin fruit wall (fr); g, h) Pollen grains from apical region of fruit showing poorly defined margin of the single colpus, reticulate tectum and muri ornamented by minute verrucae. Specimens, Catefica 343-S174311 (a), Catefica 49-S174159 (b, c), Catefica 50-S174905 (d–f), Catefica 342-S122089 (g, h). Scale bars = 300 Μm (a, b, d, e), 150 Μm (c, f), 6 Μm (g), 3 Μm (h). g, h published with permission from Grana. in The Early Cretaceous Mesofossil Flora Of Catefica, Portugal: Angiosperms

Text-fig. 6. Scanning electron microscope (SEM, a, g, h) and synchrotron radiation X-ray tomographic microscopy (SRXTM, b–f) images of fruits and pollen grains of Canrightiopsis crassitesta (a–c, g, h) and fruit of Canrightiopsis intermedia (d–f); Catefica locality, Portugal. a) Dorsal view of fruit showing rim of hypanthium (arrowheads); b) Surface rendering of longitudinal section in the median plane of fruit (cut between orthoslices yz0440-0510) showing the thin fruit wall, thick endotesta of the seed coat (en, dark blue) and the orthotropous, pendent seed with the chalaza (ch) near the fruit apex and the micropyle (mi) at the fruit base; note the tiny embryo (emb) adjacent to the micropyle at the base of the fruit; c) Longitudinal section (orthoslice xz0511) through the seed wall showing the thick, finely crystalliferous endotesta (en) surrounding the nutritive tissue of the seed; d) Surface rendering of fruit in dorsal view showing rim of the hypanthium (arrowheads) and apical stigmatic region (st); e) Surface rendering of longitudinal section of fruit in (d) (cut at orthoslice xz0560) showing the crystalliferous endotesta (en, dark blue) and the inner tissues of the seed; f) Longitudinal section (orthoslice xz0560) through fruit and seed showing the finely crystalliferous endotesta (en) and thin fruit wall (fr); g, h) Pollen grains from apical region of fruit showing poorly defined margin of the single colpus, reticulate tectum and muri ornamented by minute verrucae. Specimens, Catefica 343-S174311 (a), Catefica 49-S174159 (b, c), Catefica 50-S174905 (d–f), Catefica 342-S122089 (g, h). Scale bars = 300 Μm (a, b, d, e), 150 Μm (c, f), 6 Μm (g), 3 Μm (h). g, h published with permission from Grana.

opencc-by-4.0Dec 2022View details →
zenodo40/100

Text-fig. 3. Synchrotron radiation X-ray tomographic microscopy (SRXTM) images of fruits of Canrightia foveolata sp. nov.; Catefica locality, Portugal. a) Volume rendering of fruit showing prominent rim around the middle of the fruit with reduced tepals (arrowheads) and partly abraded fruit wall exposing the pitted endotesta surface of one of two seeds (arrow); note two of the vascular bundles (vb) extending from the base of the fruit to the tepals; b) Voltex of fruit showing prominent rim around the fruit (arrowhead) and dense precipitation of crystals in the endothelium cells of one of the two seeds in the fruit; c) Longitudinal section of fruit (orthoslice yz0520) showing the inferred hypanthium rim (arrow head) and two seeds, one with a dense precipitation of crystals; note the prominent endothelium cells (asterisks) of the inner integument and the well-developed fruit wall above the seeds; d) Transverse section through basal part of fruit and seeds close to the micropyle (orthoslice xy0312) showing partly abraded fruit wall with five vascular bundles (vb) and details of the seed coat with endotesta (oi-end) surrounding the tegmen consisting of an outer epidermis (ii-o), middle layer (ii-m) and a distinct inner epidermis (endothelium) consisting of radially elongated cells (asterisk); e) Transverse section (orthoslice xy1680) through apical part of the fruit close to chalaza showing the tips of two seeds; note the endotesta (oi-end) surrounded by thick-walled cells of the exotesta (oi-o); f) Transverse section (orthoslice xy1485) through fruit in the region of the hypanthium rim showing sections through the two seeds close to the chalazal region; note endotesta (oi-end) surrounded by larger cells of exotesta (oi-o) and fruit wall (fr). Specimen, Catefica 49-S174249 (holotype, a–f). Scale bars = 300 Μm (a–c, e, f), 100 Μm (d). in The Early Cretaceous Mesofossil Flora Of Catefica, Portugal: Angiosperms

Text-fig. 3. Synchrotron radiation X-ray tomographic microscopy (SRXTM) images of fruits of Canrightia foveolata sp. nov.; Catefica locality, Portugal. a) Volume rendering of fruit showing prominent rim around the middle of the fruit with reduced tepals (arrowheads) and partly abraded fruit wall exposing the pitted endotesta surface of one of two seeds (arrow); note two of the vascular bundles (vb) extending from the base of the fruit to the tepals; b) Voltex of fruit showing prominent rim around the fruit (arrowhead) and dense precipitation of crystals in the endothelium cells of one of the two seeds in the fruit; c) Longitudinal section of fruit (orthoslice yz0520) showing the inferred hypanthium rim (arrow head) and two seeds, one with a dense precipitation of crystals; note the prominent endothelium cells (asterisks) of the inner integument and the well-developed fruit wall above the seeds; d) Transverse section through basal part of fruit and seeds close to the micropyle (orthoslice xy0312) showing partly abraded fruit wall with five vascular bundles (vb) and details of the seed coat with endotesta (oi-end) surrounding the tegmen consisting of an outer epidermis (ii-o), middle layer (ii-m) and a distinct inner epidermis (endothelium) consisting of radially elongated cells (asterisk); e) Transverse section (orthoslice xy1680) through apical part of the fruit close to chalaza showing the tips of two seeds; note the endotesta (oi-end) surrounded by thick-walled cells of the exotesta (oi-o); f) Transverse section (orthoslice xy1485) through fruit in the region of the hypanthium rim showing sections through the two seeds close to the chalazal region; note endotesta (oi-end) surrounded by larger cells of exotesta (oi-o) and fruit wall (fr). Specimen, Catefica 49-S174249 (holotype, a–f). Scale bars = 300 Μm (a–c, e, f), 100 Μm (d).

opencc-by-4.0Dec 2022View details →
zenodo40/100

Modulating the Surface Properties of Lithium Niobate Nanoparticles by Multifunctional Coatings Using Water-in-Oil Microemulsions

<p>Raw data associated to the study entitled <em>Modulating the Surface Properties of Lithium Niobate Nanoparticles by Multifunctional Coatings Using Water-in-Oil Microemulsions.</em></p> <p>Metadata file</p> <p>DLS measurements</p> <p>FTIR characterization</p> <p>Labbook</p> <p>NMR characterization</p> <p>TEM and EDX analysis</p> <p>XRD measurements</p>

opencc-by-4.0Jan 2023View details →
zenodo40/100

A Supervised Machine-Learning Prediction of Textile's Antimicrobial Capacity Coated with Nanomaterials

<p>The dataset contains P-Chem properties of NMs and experimental conditions for assessing the antimicrobial properties of inorganic and organic NMs using machine learning tools.</p>

opencc-by-4.0Dec 2021View details →
zenodo40/100

Dataset for "Biodegradable materials as sensitive coatings for humidity sensing in S-band microwave frequencies"

<p>This dataset contains the data collected during the SNSF BRIDGE GREENsPACK project (Grant no. 40B2-0_187223) in association with the recent publication entitled &ldquo;Biodegradable materials as sensitive coatings for humidity sensing in S-band microwave frequencies&rdquo;.</p> <p>This work aims to study the humidity response of eco-friendly materials in the S-band (2-4GHz) using a microstrip line resonating at 3.3GHz.&nbsp;Several sensors coated with different biodegradable materials&nbsp;were tested and simulations have been performed. The S12 signal of the resonator&nbsp;was measured when varying the humidity. The data that was collected in the frame of this work is present in this repository.</p> <p>More information about the content&nbsp;of the dataset is present in the included README file.</p>

opencc-by-4.0Apr 2023View details →
zenodo40/100

Whole-Genome Detection using Multivalent DNA-Coated Colloids

<p>Data of confocal images &nbsp;and DNA sequence of a E.coli bl21-de3 genome presented in a PNAS publication.</p>

opencc-by-4.0Jul 2023View details →
zenodo40/100

Reflective Microscopy Dataset on the Formation of Zr-Based Conversion Coating on Al2024

<p>The accompanying files contain the raw optical images and initial data processing results, conducted in Python environments, related to the spontaneous formation of a Zirconium-based conversion coating (CC) on an Al2024 alloy.</p> <p>The files designated as 16-47-51.761.zip and similar, contain the raw optical images that chronicle the continuous observation of CC formation over a span of up to 40 minutes. The naming convention of these files is representative of the hours-minutes-seconds.milliseconds timestamp when the data recording began.</p> <p>Image capture commenced at a rate of 5 frames per second (Hz), and subsequent images were acquired at a rate of 1 Hz. This timestamped naming approach also extends to the individual raw images, reflecting the precise time at which each image was taken. Each image measures 2000x2000 pixels, with an individual pixel resolution of 240 nanometers and a pixel depth of 12 bit.</p> <p>The file labeled Image_processing.ipynb is a Jupyter lab notebook containing the image processing routine, implemented in Python 3 programming language. A PDF version of this notebook, for ease of printing and viewing, is available in the file named IMAGE_PROCESSING.pdf. This script has generated a selection of images and videos, which can be found within the Generated_images.zip and Generated_videos.zip folders.</p> <p>The normalized_intensity.png file contains the most pivotal plot, which displays the normalized intensity as a function of time. This graph is designed to reflect the progression of the CC thickness, interpreted through Fresnel equations.</p> <p>The video files provide unedited footage of the first 3 minutes of the Al surface&#39;s exposure to the CC solution, along with the normalized data. A side-by-side comparison of raw and normalized data for a 300x300 pixel image cut is also available in these video files.</p>

opencc-by-4.0Jul 2023View details →
zenodo40/100

Figure 2 in Multiple colors in anteaters: review and description of chromatic disorders in Tamandua (Xenarthra: Pilosa) with reports of new and rare coat colorations

Figure 2. Record of the two erythristic individuals in the same tree and without agonistic behavior. (A) individual 1 climbing the tree, (B, C) individuals 1 and 2 seeing each other, (D, E) individual 1 and 2 moving towards each other (photographs taken by Canopy Family staff).

opencc-by-4.0Mar 2023View details →
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Figure 3 in Multiple colors in anteaters: review and description of chromatic disorders in Tamandua (Xenarthra: Pilosa) with reports of new and rare coat colorations

Figure 3. Distribution of chromatic disorders in Tamandua in Central and South America. (A) record locations of all chromatic disorders, (B) albinism and leucism, (C) xanthochromism and partial xanthochromism, (D) melanism, partial melanism, "brown" and partial "brown", (E) erythrism.

opencc-by-4.0Mar 2023View details →
zenodo40/100

Figure 1 in Multiple colors in anteaters: review and description of chromatic disorders in Tamandua (Xenarthra: Pilosa) with reports of new and rare coat colorations

Figure 1. Chromatic disorders in Tamandua: (A) Melanism (by javatru), (B) Partial melanism (by shrike2), (C) Xanthochromism (by pfaucher), (D) Partial xanthochromism (by kenchamberlain), (E) "Brown" variation (by chartuso), (F) Leucism (More et al. 2021), (G) Albinism (Ríos et al. 2019), (H) Erythrism (by Slifkin). A–F originally published on iNaturalist.

opencc-by-4.0Mar 2023View details →
zenodo40/100

Data for the manuscript 'Single fibre coating of cellulosic fibres for hydrophilic modification using carboxymethylated starch'

<p>Research data to the manuscript about hydrophilic modification of cellulosic fibers using carboxymethylated starch</p>

opencc-by-4.0Aug 2023View details →
zenodo40/100

Raw Data: Magnetostrictive FeCoSiB coated ZnO Microstructures by Bragg Coherent X-Ray Diffraction Imaging

<p>Five sets of raw data from (Fe<sub>90</sub>Co<sub>10</sub>)<sub>78</sub>Si<sub>12</sub>B<sub>10</sub> coated ZnO microstructure (rod) investigated by Bragg coherent X-ray diffraction imaging. FeCoSiB is a magnetostrictive alloy, thus a changing strain is expected for applied magnetic fields.</p> <p>Included is data from the same spatial positions along the c-axis of the ZnO rod at five different magnetic flux densities [0, 4.4, 5.6, 9.1, 13.2]/mT. Futher on called P1 to P5. For each position there is a .nxs file of a rocking scan around the {0001} Bragg reflection, collected by a 2D detector and other recorded values, e.g. motor positions, counter values. &nbsp;</p>

opencc-by-4.0Sep 2023View details →
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Indirect cytocompatibility and antibacterial properties of Zr-Cu-Ag metallic glass coatings

<p>In order to evaluate a possible antibacterial effect of the released ions, specimens (4x4 mm<sup>2</sup> square metallic glass coatings) were submerged with 7 ml of LB broth and maintained at 37&deg;C inside a shaker (120 rpm) for 1, 5 days, following the same procedure exploited for the ions release evaluation. At each time point the supernatants were collected and used to cultivate bacteria at a defined concentration (1x10<sup>5</sup> cells/ml); bacteria cultivated with supernatants obtained from ions-free PBT were considered as control. The released ions killing activity was evaluated in terms of metabolic activity that was measured by the alamar blue assay as previously detailed. The same procedure with LB medium for hMSC was repeated.&nbsp;</p>

opencc-by-4.0Sep 2023View details →
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Inductively coupled plasma mass spectrometry of ions released from the coating into LB and DMEM medium

<p>several coatings from the ternary alloy of Zr-Cu-Ag metallic glasses (fabricated by PVD&nbsp;magnetron co-sputtering) were tested by the mass spectroscopy to evaluate their ion release in LB and DMEM. LB is the common medium for bacterial culture while DMEM is common for cells. coated samples have the name SP in them, while the non-coated one is PBT. They were in orbital shaker at 37˚C, 120 rpm for 1 day, 3 days and 7 days.&nbsp;</p>

opencc-by-4.0Sep 2023View details →

ScienceDex guides

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record