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1,634 results for “type collection”
Fig. 8 in Type Specimens of Halacarid Mites by Dr. N. G. Makarova Relocated in the Collection of the National Museum of Nature and Science, Tsukuba, Japan
Fig. 8.ɹHalacarellus longus [nomen nudum], glass slide prepared by Dr. Makarova.
Fig. 1 in Type Specimens of Halacarid Mites by Dr. N. G. Makarova Relocated in the Collection of the National Museum of Nature and Science, Tsukuba, Japan
Fig. 1.ɹAcanthopalpus hirsutus, glass slide prepared by Dr. Makarova.
Von Spix type specimens of Neotropical primates at the Bavarian State Collection of Zoology
<p>J. B. von Spix collected many interesting zoological specimens during his travels in South America from 1817 to 1820. The type specimens of Neotropical primates described by von Spix (1823), which are stored at the Bavarian State Collection of Zoology (German: Zoologische Staatssammlung München, Staatliche Naturwissenschaftliche Sammlungen Bayerns), are figured in the present collection. With the exception of the type of <em>Pithecia capillamentosa</em>, all specimens were collected by von Spix during his journey in Brazil from 1817-1820.</p> <p> </p> <p>The figures consist of scientifically accurate renderings of the specimens in their current condition. They were created by a group of artists, associated with the Bavarian State Collection of Zoology, under the guidance of medal-winning scientific artist Barbara Ruppel, consisting of: Anja Bolata, Rudolf Gerer, Dr. Thassilo Franke, Dr. Taciana Ottowitz, Ruth Moch, Michael Jicha and Marco Calogera. The images have been given additional artistic value by adding elements, such as native plants. When using these figures, please credit the original artist.</p> <p> </p> <p>Publications containing these figures:</p> <p>van Heteren, A. H. & Kraft, R. 2019. Von Spix type specimens of Neotropical primates at the Bavarian State Collection of Zoology: a revision with reference to the currently recognised species (Mammalia, Primates, Platyrrhina). Spixiana 42(1).</p> <p>Unsöld, M. 2019. Über die Primaten der Brasilienexpedition des Johann Baptist Ritter von Spix: Naturwissenschaftliche Illustrationen aller 41 “Spixaffen” der ZSM. Berichte der Freunde der ZSM Band 5. München (Freunde der Zoologische Staatssammlung München).</p> <p> </p>
A collection of spectral descriptors for the detection of five polymer types
<p>This set of spectral descriptors was designed for the purpose of detecting the polymers polyethylene (PE), polypropylene (PP), polystyrene (PS), polyacrylonitrile (PAN) and poly(methyl methacrylate) (PMMA).</p> <p>The descriptors can be applied to hyperspectral image datasets using the software tool <a href="http://imagelab.at">Epina ImageLab</a>.</p>
Collected Colorimetric Microscopy (C-Microscopy) Images of Melanocytes and Melanoma 3D Spheroids Irradiated with Different Type of Proton Beam as Used in Proton Radiotherapy
<p>Collected Colorimetric Microscopy (C-Microscopy) images, color calibrated (D65 illuminant), of melanocytes and melanoma 3D spheroids, irradiated with different type of proton beam as used in proton radiotherapy.<br> <br>The data are supplement to:</p> <p>Martyna Durak-Kozica, Ewa Stępień, Jan Swakoń, Benedykt R. Jany, Kamil Kawoń, Damian Wróbel, Sebastian Kusyk, Małgorzata Grzesiak, Katarzyna Knapczyk-Stwora, Andrzej Wróbel, Joanna Chwiejand Paweł Moskal, Short-term response of melanoma spheroids and melanocytes to FLASH proton therapy - colorimetric and FTIR microscopy study, Pol J Med Phys Eng 2024;30(4):263-268 (2024) <a href="https://doi.org/10.2478/pjmpe-2024-0031">https://doi.org/10.2478/pjmpe-2024-0031</a></p> <p> </p> <p><br>HEMA-Spheroids-C-Microscopy.zip - melanocytes 3D spheroids, (C-Microscopy) images, color calibrated (D65 illuminant), image width 435.87 microns</p> <p><br>WM-Spheroids-C-Microscopy.zip - melanoma 3D spheroids, (C-Microscopy) images, color calibrated (D65 illuminant), image width 1089.68 microns</p> <p><br>WM-Spheroids-Texture-C-Microscopy.zip - surface texture of melanoma 3D spheroids, (C-Microscopy) images, color calibrated (D65 illuminant), image width 108.97 microns</p> <p> </p> <p>Proton Beam Radiotherapy Irradiation Conditions:</p> <p>C - Control</p> <p>CC - Control minus 7days</p> <p>LP - conventional proton radiotherapy (CONV) final dose 3Gy (dose rate about 0.140 Gy/s)</p> <p>F - FLASH proton radiotherapy final dose 3Gy (dose rate >60 Gy/s)</p> <p>F20 - FLASH proton radiotherapy final dose 20Gy (dose rate >60 Gy/s)</p> <p>F40 - FLASH proton radiotherapy final dose 40Gy (dose rate >60 Gy/s)</p> <p> </p> <p><br>The details about Colorimetric Microscopy (C-Microscopy) approach could be found in:</p> <p>Benedykt R. Jany, Quantifying Colors at Micrometer Scale by Colorimetric Microscopy (C-Microscopy) Approach, Micron 176, 103557 (2024) <a href="https://doi.org/10.1016/j.micron.2023.103557">https://doi.org/10.1016/j.micron.2023.103557</a></p>
Collection of exudates from wild type mycorrhizal and non mycorrhizal roots
<p>The aim of the experiment was to define a protocol for root exudates collection from tomato plants (<em>Solanum lycoipersicum </em>cv. M82) colonized or not with <em>Funneliformis mosseae</em>, a very common mycorrhizal fungus in nature. Mycorrhizal plants were grown on sandy soil under well-watered conditions under low nitrogen and phosphorus level alongside their not-inoculated control, non mycorrhizal, plants. Exudates were collected by washing the medium with 1 volume of sterile distilled water. Collections have been performed on mature mycorrhizas (50 days from inoculum) collecting root exudates every 4 days for 4 times. After the last collection, plants were sampled and some plant traits measured. Root exudate samples will be analysed by UNITO-DISAFA in terms of total organic carbon, organic acids, amino acids, enzymes (phosphatase and phytase) and SL content.</p>
FIG. 21. — Type d in Spécimens de Charles Plumier déposés à Paris dans les collections de ptéridophytes américains de Tournefort, Vaillant, Danty d'Isnard et Jussieu
FIG. 21. — Type d'Osmunda cicutaria Savigny ex Poir., planche 159 de Plumier (1705).
Odontometric Data from of all Tooth Types from Skeletal Collections in South Africa
<p>Biological profiles are used to assist in the identification of an unknown person. Sex estimation is important in this process as other aspects of the biological profile such as age-at-death, population affinity and stature depend on accurate sex estimates. For this research, we estimated sex using the dentition of three socially identified South African groups, namely black, white and coloured South Africans. A total of 906 crania from dissection room cadavers from three medical schools, including the Pretoria Bone Collection (University of Pretoria), the Raymond A Dart Collection (University of Witwatersrand) and the Kristen Collection (Stellenbosch University) were used. Four measurements were taken from the left and right sides of incisors, canines, premolars and molars. Measurements were standard from Hillson 2005 and include four permanent tooth crown dimensions: maximum mesiodistal, maximum buccolingual and molar diagonal diameters (mesiobuccal - distolingual and mesiolingual - distobuccal).</p>
Fig. 1. Bucco Javensis Horsfield, 1821 in Type specimens of birds in the collections of the Natural History Museum of Geneva
Fig. 1. Bucco Javensis Horsfield, 1821 (syntype). MHNG 129.086.
Fig. 2 in Type specimens of birds in the collections of the Natural History Museum of Geneva
Fig. 2. Falco ferrugineus de Saussure, 1859 (holotype). MHNG 507.072.
Fig. 51 in Primary types in the collection of molluscs in the KwaZulu-Natal Museum: Polyplacophora
Fig. 51. Leptochiton (L.) meiringae, holotype D265/T3046: spicules of girdle.
Fig. 52 in Primary types in the collection of molluscs in the KwaZulu-Natal Museum: Polyplacophora
Fig. 52. Chaetopleura (C.) natalensis, holotype D4842/T20: fragments of valves. Scale bar = 1 mm.
Figs 46, 47 in Primary types in the collection of molluscs in the KwaZulu-Natal Museum: Polyplacophora
Figs 46, 47. Leptochiton (L.) meiringae, holotype D265/T3046: lateral views. Scale bar = 1 mm.
Figs 25, 26. Callochiton herberti, holotype D5394 in Primary types in the collection of molluscs in the KwaZulu-Natal Museum: Polyplacophora
Figs 25, 26. Callochiton herberti, holotype D5394/T16: lateral views. Scale bar = 1 mm.
Fig. 11 in Primary types in the collection of molluscs in the KwaZulu-Natal Museum: Polyplacophora
Fig. 11. Lepidochitona (L.) dicksae, holotype V6152/T1539: spicules of the girdle.
Fig. 4 in Primary types in the collection of molluscs in the KwaZulu-Natal Museum: Polyplacophora
Fig. 4. Tonicia (Lucilina) carnosa, holotype H2576/T2395. Scale bar = 1 mm.
Fig. 10 in Primary types in the collection of molluscs in the KwaZulu-Natal Museum: Polyplacophora
Fig. 10. Lepidochitona (L.) dicksae, holotype V6152/T1539: radula.
Fig. 39. Acanthochitona jugotenuis, holotype H2565 in Primary types in the collection of molluscs in the KwaZulu-Natal Museum: Polyplacophora
Fig. 39. Acanthochitona jugotenuis, holotype H2565/T2396. Scale bar = 1 mm.
DeLiAn – a growing collection of depolarization ratio, lidar ratio and Ångström exponent for different aerosol types and mixtures from ground-based lidar observations
<p>DeLiAn is a collection of lidar-derived aerosol intensive optical properties for several aerosol types. The intensive parameters are the particle linear depolarization ratio, the extinction-to-backscatter ratio (lidar ratio) and the Ångström exponent. The data collection is based on globally distributed, long-term, ground-based, multiwavelength, Raman and polarisation lidar measurements.</p> <p>DeLiAn is available in two data formats: NetCDF and excel workbook. The intensive optical properties are presented at the typical lidar wavelengths, 355, 532 and 1064 nm, for 13 aerosol categories in total. The variables included in the datafiles are listed below. For each variable, a full description is provided in the long_name attribute (applicable for the netCDF file only). The same information is provided in the first excel sheet (“List of variables”).</p> <ul> <li> ScienceData <ul> <li>angstrom_exponent_backscatter_355_532</li> <li>angstrom_exponent_backscatter_532_1064</li> <li>angstrom_exponent_extinction_355_532</li> <li>campaign_rv</li> <li>date</li> <li>error_angstrom_exponent_backscatter_355_532</li> <li>error_angstrom_exponent_backscatter_532_1064</li> <li>error_angstrom_exponent_extinction_355_532</li> <li>error_lidar_ratio_355</li> <li>error_lidar_ratio_532</li> <li>error_particle_linear_depolarization_ratio_355</li> <li>error_particle_linear_depolarization_ratio_532</li> <li>lidar_ratio_355</li> <li>lidar_ratio_532</li> <li>location</li> <li>measurement_type</li> <li>number_samples</li> <li>particle_linear_depolarization_ratio_355</li> <li>particle_linear_depolarization_ratio_532</li> <li>reference</li> <li>system</li> </ul> </li> </ul> <p>For any further information or expression of interest with respect to DeLiAn, please contact Athena Augusta Floutsi (<a href="mailto:floutsi@tropos.de">floutsi@tropos.de</a>) and/or Holger Baars (baars@tropos.de).</p>
Fig. 9. Sepia incerta, syntype NMSA 3477 in Primary types in the collection of molluscs in the KwaZulu-Natal Museum: Scaphopoda and Cephalopoda
Fig. 9. Sepia incerta, syntype NMSA 3477/T477, 112.1×18.2 mm.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.