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1,713 results for “Preparation”
Fig. 45-48 in Guide to preparing scientific illustrations in Entomology on an example of Ichneumonidae (Hymenoptera)
Fig. 45-48: Examples of fulfillment of wrinkling sculpture: (45-46) wrinkles and finished image of tergites 1-2 Limerodops elongatus (BRISCHKE), (47-48) the same Limerodops violentus TERESHKIN.
Fig. 235-236 in Guide to preparing scientific illustrations in Entomology on an example of Ichneumonidae (Hymenoptera)
Fig. 235-236: Increasing the size of a pencil drawing of the contour to the desired of the working size: (235) matrix of initial size; (236) parameters of pop-up window at increasing of matrix.
Fig. 91-97 in Guide to preparing scientific illustrations in Entomology on an example of Ichneumonidae (Hymenoptera)
Fig. 91-97: Fulfillment of image of propodeum Spilichneumon occisor (FABRICIUS) at minimum number of layers: (91) layer "Result", (92) layer "Navigator", (93) layer "Main lines", (94) layer "Puncturation", (95) layer "Sculpturation", (96) layer "Pouring and volume", (97) hierarchy of layers.
Fig. 124-154 in Guide to preparing scientific illustrations in Entomology on an example of Ichneumonidae (Hymenoptera)
Fig. 124-154: Types of areolet of front wing in genera of Platylabini tribe (according to TERESHKIN 2009): pentagonal (124-131), quadrangular not petiolate (132-153), quadrangular petiolate (154).
Fig. 11-19 in Guide to preparing scientific illustrations in Entomology on an example of Ichneumonidae (Hymenoptera)
Fig. 11-19: An example of punctuate drawing and an arrangement of parts of a body in a table of Deuterolabops pulchellatus (BRIGDMAN 1893) (according to TERESHKIN 2004): (11) female, (12) head from above, (13) head from front, (14) propodeum, (15) segments 1-2 of abdomen; (16) gena, (17-19) claws of tarsi.
Fig. 38-44 in Guide to preparing scientific illustrations in Entomology on an example of Ichneumonidae (Hymenoptera)
Fig. 38-44: Stages of fulfillment of longitudinal wrinkles: (38) selection and pouring of wrinkles, (39) shifting of areas of selection, (40) pouring by gray color in layer "Clarification of interspaces", (41) appearance of wrinkling at removed selection, (42-43) clarification in two layers, (44) darkening of clarifications in selected areas.
Fig. 75 in Guide to preparing scientific illustrations in Entomology on an example of Ichneumonidae (Hymenoptera)
Fig. 75: Copying of outline drawings taxonomically significant parts of a body of ichneumon fly for creation of separate files.
Fig. 62-64 in Guide to preparing scientific illustrations in Entomology on an example of Ichneumonidae (Hymenoptera)
Fig. 62-64: Fulfillment of image of a thorax for total image of Achaiusoides epistomalis TERESHKIN: (62) final picture in layer "Result", (63) an image of thorax at disconnected layer "Pouring and volume", (64) hierarchy of layers.
Fig. 36-37 in Guide to preparing scientific illustrations in Entomology on an example of Ichneumonidae (Hymenoptera)
Fig. 36-37: Correction of shape and arrangement of cells fulfilled in a separate layer: (36) correction of cells of propodeum Limerodops elongatus (BRISCHKE) in layer "Pouring of cells", (37) the same, at all switched on layers.
Fig. 25-33 in Guide to preparing scientific illustrations in Entomology on an example of Ichneumonidae (Hymenoptera)
Fig. 25-33: Order of operations at fulfillment of image of homogeneous structure (large puncturation) (explanations in the text).
Fig. 52-54 in Guide to preparing scientific illustrations in Entomology on an example of Ichneumonidae (Hymenoptera)
Fig. 52-54: Fulfillment of pubescence of head capsule of Triptognathops gobiensis TERESHKIN from front: (52) selection of parameters of Brush, (53) finished image, (54) hierarchy of layers before merging of layers "Result" and "Pubescence".
Fig. 49-51 in Guide to preparing scientific illustrations in Entomology on an example of Ichneumonidae (Hymenoptera)
Fig. 49-51: Stages of fulfillment of head capsule of Hybophorellus injucundus (WESMAEL): (49) inserting of the areas with microsculpture from buffer, (50) deletion of superfluous areas after merging of layers, (51) result.
Fig. 1-10 in Guide to preparing scientific illustrations in Entomology on an example of Ichneumonidae (Hymenoptera)
Fig. 1-10: An example of punctuate drawing and an arrangement of parts of a body in a table of Baranisobas ridibundus (GRAVENHORST 1829) (according to TERESHKIN 2002): (1) female, (2) head from above, (3) head from front, (4) pronotum from above, (5) scutellum, (6) propodeum, (7) segments 1-2 of abdomen, (8) mandible from front, (9) mandible of male from front, (10) mandible of male from below.
Fig. 59-61 in Guide to preparing scientific illustrations in Entomology on an example of Ichneumonidae (Hymenoptera)
Fig. 59-61: Image of a head of ichneumon fly Triptognathops gobiensis TERESHKIN: (59) final result of fulfillment of operations (layer "Result"), (60) elements of a head fulfilling separately, (61) hierarchy of layers.
РИС. 2. ГлаЗ Monachoides incarnata. A. ФотографиЯ препарата иЗолированного глаЗа. B. ФотографиЯ продольного полутонкого среЗа глаЗа. СокраЩениЯ: c – роговица; ec – глаЗнаЯ капсула; r – сетчатка; p – краЯ Зрачка; l – хрусталик, окруженный слоем стекловидного тела. FIG. 2. The eye of Monachoides incarnata. A. Photograph of the preparation of the isolated eye. B. Photograph of the longitudinal semithin section of the eye. Abbreviation: c – cornea; ec – eye capsule; r – retina; p – edges of the pupil; l – lens, surrounded by a layer of the vitreous body. in Зрачок камерных глаЗ наЗемных брюхоногих моллюсков (Heterobranchia, Stylommatophora)
РИС. 2. ГлаЗ Monachoides incarnata. A. ФотографиЯ препарата иЗолированного глаЗа. B. ФотографиЯ продольного полутонкого среЗа глаЗа. СокраЩениЯ: c – роговица; ec – глаЗнаЯ капсула; r – сетчатка; p – краЯ Зрачка; l – хрусталик, окруженный слоем стекловидного тела. FIG. 2. The eye of Monachoides incarnata. A. Photograph of the preparation of the isolated eye. B. Photograph of the longitudinal semithin section of the eye. Abbreviation: c – cornea; ec – eye capsule; r – retina; p – edges of the pupil; l – lens, surrounded by a layer of the vitreous body.
Data for the research article: "Simulations of Energetic Neutral Atom sputtering from Ganymede in preparation for the JUICE mission"
<p>Data for the research article: "Simulations of Energetic Neutral Atom sputtering from Ganymede in preparation for the JUICE mission"</p>
TGA and LOI measurements within the thermal degradation study of a SRF prepared for an aluminium scrap pre-heating system (REVaMP project)
<p>Underlying data (related to Figure 2) for the publication Acha, E.; Lopez-Urionabarrenechea, A.;Delgado, C.; et al. Combustion of a Solid Recovered Fuel (SRF) Produced from the Polymeric Fraction of Automotive Shredder Residue (ASR). Polymers <strong>2021</strong>, 13, 3807. <a href="https://doi.org/10.3390/polym13213807">https://doi.org/10.3390/polym13213807</a></p> <p>Experimental data generated by the REVaMP project (GA 869882, Horizon 2020, European Union) along the research of the combustion of a SRF, prepared from ASR, to be used as alternative fuel in a scrap pre-heater at an aluminium refinery plant. Research pertaining to Task 1.1 (WP1), Deliverable D1. </p> <p>Subject: Thermal degradation study performed in air to measure the mass loss of SRF samples with time and temperature during a continuous heating process (two TGA measurements and determination of variation of LOI with T). The results indicate the different stages in the thermal decomposition of the prepared SRF and the temperature range of its combustion. Useful information for designing the operation conditions of the SRF combustion chamber of the scrap pre-heater.</p> <p> </p>
Data for: Germanene preparation methods, its applications and uses
<p>This dataset contains information regarding the patented methods and uses (both application and granted patents) of germanene, a two-dimensional layered germanium allotrope, analog to graphene.</p> <p><a href="https://worldwide.espacenet.com/">Espacenet</a> (a free-of-charge database provided by the European Patent Office), accessed on Nov. 27, 2021, was used for data mining.</p> <p>The file titled “<em>Espacenet_search_results_germanene</em>” contains information related to Title, Inventors, Applicants, Publication number, Earliest priority, IPC, CPC, Publication date, Earliest publication, and Family number.</p> <p>The patent searches were carried out by keywords and classification codes. </p> <p>Both IPC (International Patent Classification) and CPC (Cooperative Patent Classification) codes were used. </p> <p> </p> <p><strong>Value of the dataset</strong>: prior art searches, technological trends </p> <p> </p> <p><strong>Steps to reproduce data</strong>:</p> <p><strong>Query 1</strong>: ctxt=("two-dimensional" prox/ordered "layered") AND ctxt any "german*"</p> <p><strong>Query 2</strong>: ctxt=("two-dimensional" prox/ordered "layered") AND cl any "C07F7/30"</p> <p><strong>Query 3</strong>: ftxt=("germanium" prox/ordered "allotrope")</p> <p><strong>Query 4</strong>: claims any "germanene"</p> <p> </p> <p>cl=classification codes (IPC or CPC)</p> <p>ftxt=full text</p> <p>ctxt=title/abstract/claims</p> <p>prox/ordered is a proximity operator</p> <p> </p> <p>Definition of the classification codes used</p> <p> </p> <p><strong>C07F7/30</strong>: Compounds containing elements of Groups 4 or 14 of the Periodic System •Germanium compounds</p>
Data and code for publication: A simple preparation protocol for shipping and storage of tissue sections for laser ablation-inductively coupled plasma-mass spectrometry imaging
<p>Data & Code release for publication:</p> <p>Rebecca Buchholz, Sebastian Krossa, Maria K Andersen, Michael Holtkamp, Michael Sperling, Uwe Karst, May-Britt Tessem, A simple preparation protocol for shipping and storage of tissue sections for laser ablation-inductively coupled plasma-mass spectrometry imaging, <em>Metallomics</em>, Volume 14, Issue 3, March 2022, mfac013, <a href="https://doi.org/10.1093/mtomcs/mfac013">https://doi.org/10.1093/mtomcs/mfac013</a></p> <p>Python code for LA ICP MS imaging data segmentation</p> <p>Code & Data also on <a href="https://github.com/sekro/la-icp-msi_segmentation">github</a></p> <p>Thresholding based segmentation of LA-ICP-MS imaging data</p> <p>Description</p> <p><a href="https://github.com/sekro/la-icp-msi_segmentation/blob/master/src/main.py">src/main.py</a> - run this to process LA ICP MS data in data folder - generates matplotlib.figures - project specific setup <a href="https://github.com/sekro/la-icp-msi_segmentation/blob/master/src/laicpms_data_handler.py">src/laicpms_data_handler.py</a> - contains object to import, handle and segment (shimadzu) raw data</p> <p>Dependencies</p> <p>Python 3.8.1 or newer</p> <p>For packages see <a href="https://github.com/sekro/la-icp-msi_segmentation/blob/master/requirements.txt">requirements.txt</a></p> <p>Data</p> <p>LA-ICP-MS imaging data of human prostate tissue of the elements Zn, Fe & P. Details on data generation & collection in <a href="https://doi.org/10.1093/mtomcs/mfac013">publication</a>. LA-ICP-MS imaging data as plain text files (comma-separated values)</p> <ul> <li>Condition 1 = fresh frozen (FF)</li> <li>Condition 2 = room temperature vacuum dried and sealed (RTV)</li> <li>Condition 3 = formalin fixed (FFix)</li> <li>Condition 4 = formalin fixed, paraffin sealed (FFPS)</li> </ul> <p>3 replicate sectioning sets named A, B, C</p> <p>File-naming: LA_Data_CISN1.csv, where I = [1, 2, 3, 4] is indicating the condition used and N = [A, B, C] is indicating the replicate set</p> <p>License</p> <p>Data</p> <p>CC-BY 4.0 - respective <a href="https://github.com/sekro/la-icp-msi_segmentation/blob/master/data/LICENSE">LICENSE</a> file in data folder</p> <p>Source code</p> <p>MIT - respective <a href="https://github.com/sekro/la-icp-msi_segmentation/blob/master/src/LICENSE">LICENSE</a> file in src folder</p>
Fig. 2 in The Influence Of Fixatives On The Validity Of Histological Preparations Of Olfactory Organ In Teleostei
Fig. 2. Cross-section through the olfactory organ of Misgurnus fossilis at developmental stage 36 (А, В), developmental stage 37 (C, D), stage of early larva (E, F), stage of late larva (G, H). Arrowheads indicate the artifacts "anlage of lamellae"; arrows indicate the rises of epithelium (artifacts); b — brain; e — eye; oe — olfactory epithelium; ol — olfactory lamella; o — olfactory pit; op — olfactory placode. Left images correspond to Bouin's solution, right images correspond to 10 % formalin fixation.
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.