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1,085 results for “Documentation”
FIGURES 34–42 in How high can trumpet moths occur: documentation of mountainous leaf-mining Tischeriidae, featuring a species from record-high elevations
FIGURES 34–42. Male genitalia of Astrotischeria andina Diškus & Stonis, sp. nov., 3,595–3,600 m. 34, phallus, paratype, genitalia slide no. AD748 (MfN). 35, same, holotype, genitalia slide no. AD1160 (MfN); 36–39, details of genitalia capsule, holotype, genitalia slide no. AD1160 (MfN); 40, dentate dorsal lobe of valva, paratype, genitalia slide no. AD748 (MfN); 41, 42, general view of genitalia capsule with phallus removed, holotype, genitalia slide no. AD1160 (MfN).
FIGURES 16–23 in How high can trumpet moths occur: documentation of mountainous leaf-mining Tischeriidae, featuring a species from record-high elevations
FIGURES 16–23. Male genitalia of Astrotischeria peruanica Diškus & Stonis, sp. nov., 2,110 m. 16–19, holotype, genitalia slide no. AD1180 (MfN); 20–23, paratype, with phallus (23) removed, genitalia slide no. AD1172 (MfN).
FIGURES 47–52 in How high can trumpet moths occur: documentation of mountainous leaf-mining Tischeriidae, featuring a species from record-high elevations
FIGURES 47–52. Bionomics of mountainous Astrotischeria species. 47, habitat of A. parapallens Diškus & Stonis and A. montivaga Diškus & Stonis, sp. nov., Ayacucho, Huamanga Province, Peru, 3,320 m; 48, unidentified host plant of A. peruanica Diškus & Stonis, sp. nov., possibly Baccharis trinervis Pers., Asteraceae, 2,110 m; 49, 50, leaf mines with feeding larvae of Astrotischeria peruanica Diškus & Stonis, sp. nov.; 51, 52, Baccharis salicifolia (Ruiz & Pav.) Pers., Asteraceae, a host plant of Astrotischeria viscacha Diškus & Stonis, sp. nov., Pisac, Calca Province, Peru at an elevation of 2,990 m.
FIGURES 53–59 in How high can trumpet moths occur: documentation of mountainous leaf-mining Tischeriidae, featuring a species from record-high elevations
FIGURES 53–59. Bionomics of Astrotischeria andina Diškus & Stonis, sp. nov. 53, 54, habitat, Saqsaywaman, Cusco, Peru, 3,595–3,600 m; 55–57, host plant Baccharis buxifolia (Lam.) Pers., Asteraceae; 58, 59, leaf mines.
FIGURES 4–10 in How high can trumpet moths occur: documentation of mountainous leaf-mining Tischeriidae, featuring a species from record-high elevations
FIGURES 4–10. Adults of mountainous Astrotischeria species. 4, A. viscacha Diškus & Stonis, sp. nov., 2,990 m, male holotype; 5, 6, same, female paratype; 7, A. andina Diškus & Stonis, sp. nov., male holotype, 3,595–3,600 m; 8, same, male paratype; 9, 10, same, female paratype (MfN).
FIGURES 43–46 in How high can trumpet moths occur: documentation of mountainous leaf-mining Tischeriidae, featuring a species from record-high elevations
FIGURES 43–46. Female genitalia of mountainous Astrotischeria species. 43, 44, A. viscacha Diškus & Stonis, sp. nov., 2,990 m, paratype, genitalia slide no. AD1176 (MfN); 45, 46, A. andina Diškus & Stonis, sp. nov., 3,595–3,600 m, paratype, genitalia slide no. AD1179 (MfN).
FIGURES 29–33 in How high can trumpet moths occur: documentation of mountainous leaf-mining Tischeriidae, featuring a species from record-high elevations
FIGURES 29–33. Male genitalia of Astrotischeria viscacha Diškus & Stonis, sp. nov., 2,990 m, holotype, genitalia slide no. AD1177 (MfN). 29, 30, uncus, 31, genitalia capsule with phallus removed, focused on valvae; 32, 33, phallus.
FIGURES 24–28 in How high can trumpet moths occur: documentation of mountainous leaf-mining Tischeriidae, featuring a species from record-high elevations
FIGURES 24–28. Male genitalia of Astrotischeria montivaga Diškus & Stonis, sp. nov., 3,320 m. 24, genitalia capsule with phallus removed, holotype, slide no. AD1185 (MfN); 25, 26, same, paratype, genitalia slide no. AD746 (MfN); 27, same, phallus; 28, same, holotype, genitalia slide no. AD1185 (MfN).
FIGURES 1–3 in How high can trumpet moths occur: documentation of mountainous leaf-mining Tischeriidae, featuring a species from record-high elevations
FIGURES 1–3. Adults of mountainous Astrotischeria species. 1, A. parapallens Diškus & Stonis, 3,320 m, non-type specimen, a new elevation record; 2, A. peruanica Diškus & Stonis, sp. nov., holotype, 2,110 m; 3, A. montivaga Diškus & Stonis, sp. nov., paratype, 3,320 m (MfN).
FIGURES 61–63. Tischeriidae occurrence across different elevations. 61 in How high can trumpet moths occur: documentation of mountainous leaf-mining Tischeriidae, featuring a species from record-high elevations
FIGURES 61–63. Tischeriidae occurrence across different elevations. 61, based on the current data of the global fauna (192 species), with the record-high altitudes for Tischeriidae compared with the record-high altitude reported for Nepticulidae; 62, Tischeriidae in the tropical regions (97 species) showing Astrotischeria andina sp. nov. as a species discovered at record-high altitudes; 63, Tischeriidae in non-tropical regions (105 species) showing the species discovered at record-high altitudes in nontropical regions. *Note that the distribution of some species overlaps across different altitudes, and some species have been discovered in both tropical (Fig. 62) and non-tropical regions (Fig. 63). The total current number of Tischeriidae species is still 192 (not 97+105). Note that this illustrative representation of the diversity of ecosystems, conveyed by J. R. Stonis, is presented in a stylized and idealized manner, without relying on precise depiction of the actual components.
FIGURE 60 in How high can trumpet moths occur: documentation of mountainous leaf-mining Tischeriidae, featuring a species from record-high elevations
FIGURE 60. The Neighbor-Joining tree of the 133–639 bp long mtDNA CO1-5' sequences of Astrotischeria andina sp. nov. and related species. The divergence was calculated using the T92+G model and 10,000 replicates. Bootstrap values below 50 are not shown. Pseudopostega bogotensis Vargas was included as an outgroup.
Figure 1 in First record of albinism in long-nosed mongoose Xenogale naso documented with camera traps in the Yoko Council Forest, Centre Cameroon
Figure 1: Map showing the camera trap stations with mongoose species in the Yoko Council Forest, Cameroon.
Figure 2 in First record of albinism in long-nosed mongoose Xenogale naso documented with camera traps in the Yoko Council Forest, Centre Cameroon
Figure 2: The recorded albino long-nosed mongooses in a grassland savannah (a) and in a swamp dominated by raffia palms (b and c) of Yoko Council Forest, Cameroon.
Number of analyzed documents on protests in Poland before and during the pandemic
<p>Rak Joanna, Bäcker Roman, <span>Number of analyzed documents on protests in Poland before and during the pandemic.</span></p> <p> </p> <p><span>This dataset was elaborated for the research project <em>Civil Disorder in Pandemic-ridden European Union</em>. The latter was financially supported by the National Science Centre, Poland [grant number 2021/43/B/HS5/00290].</span></p>
D3.10 - Users document for methods and models of the long-term coastline evolution.
<p>The D3.10, related to Task 3.5 and entitled "User Document for Methods and Models of the Long-term Coastline Evolution," is a WP3 deliverable, specifically a report describing the methods and models used to study long-term morpho-dynamic processes in a climate-change scenario. </p>
Review Results of Randomly Selected Paper on the Coverage of Enrichment Results Documentation
<p>This is part of the PhD thesis "Enhancing Analysis and Interpretation Workflows for Transcriptome Data with an Interactive R/Bioconductor Toolkit".</p> <p>These are the detailed results reporting the individual information documented during the literature review. The file contains a sheet for each of the three literature searches and an additional sheet providing detailed documentation on the collected parameters.</p> <p>The selection process of the paper can be found in the linked repository. </p>
Architecturally Significant Requirements and Software Architecture for AI-Based Systems: A Case Study with Document Classification
Open the record for dataset details and reuse information.
Using Machine Learning With Supplementary NC Code To Predict Machining Energy - Excel Documents
<p>The Excel Files Housed within this DOI represent the raw data collected during machining each of the test parts, and the excel documents made which prevent model summaries for each model created., during the execution of the, "Using Machine Learning With Supplementary NC Code to Predict Machining Energy. These files were created by Samuel D. Stencel, a Graduate Research Assistant and Purdue University.</p>
List of documents and patterns identified by multivocal literature review of software engineering patterns for machine learning applications
We performed a multivocal literature review of both academic and gray literature to collect software engineering for machine learning (ML) application systems and software design. For the academic literature, we chose Engineering Village. For the gray literature, we used a Google search on August 16, 2019. We retrieved 32 scholarly documents and 48 gray literature documents. We vetted whether each document should be included in our review using the following criteria: Documents written in English addressing concrete software-engineering patterns or practices to design ML application systems and software should be included. Documents focusing on design of ML techniques and algorithms should be excluded. This process identified 19 scholarly documents and 19 gray documents. Although 69 patterns related to the design of ML application systems were initially identified, 33 remained after the vetting process. Finally, industrial ML developers reviewed the 33 candidates from the viewpoint of practical usefulness. They identified only 15 ML patterns.
RELAX ESEM 2021 DR User Study Survey Results Shared Document
<p>Dataset referenced in the ESEM 2021 paper titled "Study of the Utility of Text Classification Based SoftwareArchitecture Recovery Method RELAX for Maintenance"</p>
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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.