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513 results for “miniaturization”
FIGURE 1 in Danio htamanthinus (Teleostei: Cyprinidae), a new species of miniature cyprinid fish from the Chindwin River in Myanmar
FIGURE 1. Danio htamanthinus: a, holotype, NRM 69502, male, 22.9 mm SL; Myanmar: Sagaing Division, stream close to Htamanthi village; b, paratype, NRM 42613. 16.8 mm SL; Myanmar: Sagaing Division: 5 km W Htamanthi village; c, paratype, NRM 42613, 16.8 mm SL, live colours immediately after capture.
FIGURE 2 in Danio htamanthinus (Teleostei: Cyprinidae), a new species of miniature cyprinid fish from the Chindwin River in Myanmar
FIGURE 2. Map of northern part of Myanmar showing collecting localities of Danio choprae, D. flagrans, and D. htamanthinus.
FIGURE 5 in Danio htamanthinus (Teleostei: Cyprinidae), a new species of miniature cyprinid fish from the Chindwin River in Myanmar
FIGURE 5. Principal Component Analysis of pooled morphometric data from Danio choprae (n=20), Danio flagrans (n=20) and D. htamanthinus (n=9). Plot of scores of Principal Component II (mainly variation in barbel lengths) on Component III (mainly lengths of maxillary barbel, anal-fin base and caudal peduncle).
FIGURE 4 in Danio htamanthinus (Teleostei: Cyprinidae), a new species of miniature cyprinid fish from the Chindwin River in Myanmar
FIGURE 4. Myanmar, Sagaing Division, small, flooded stream near Htamanthi, habitat of Danio htamanthinus, 1 December 2013.
Figure 5 in A New Miniature Species of Arthroleptis (Anura: Arthroleptidae) from Nyungwe National Park, Rwanda
Figure 5. Arthroleptis schubotzi from Cyamudongo Forest, Rwanda, in life. (A) Dorsal view of adult female (ZFMK 104089) and (B) adult male (ZFMK 104090). (C) Corresponding ventral view of adult female and (D) adult male, showing the distinct ventral colour pattern.
Figure 3 in A New Miniature Species of Arthroleptis (Anura: Arthroleptidae) from Nyungwe National Park, Rwanda
Figure 3. Map of Rwanda with major elevation zones and natural water bodies (top) and detail of map showing Nyungwe National Park including Cyamudongo Forest (bottom) in southwestern Rwanda; forested areas are displayed in green. The distribution of the three species of Arthroleptis in Nyungwe National Park and surroundings is indicated by coloured dots at localities where specimens were collected or observed: Arthroleptis adolfifriederici (orange), A. nyungwensis sp. nov. (blue), A. schubotzi (red). Type localities are marked with a white triangle in the centre of the coloured dot. Map courtesy of S. Seidel.
Figure 2 in A New Miniature Species of Arthroleptis (Anura: Arthroleptidae) from Nyungwe National Park, Rwanda
Figure 2. Waveform (top) and corresponding sound spectrogram of (A) an advertisement call of Arthroleptis nyungwensis sp. nov., (B) an aggressive call, consisting of a thirteen-notes group followed by the main note, (C) a variant of the aggressive call, and (D) a possible female courtship call. See text for details.
Figure 1 in A New Miniature Species of Arthroleptis (Anura: Arthroleptidae) from Nyungwe National Park, Rwanda
Figure 1. (A) Dorsolateral view and (B) ventral view of the holotype (ZFMK 104075) of Arthroleptis nyungwensis sp. nov. in life. (C) Dorsolateral view and (D) ventral view of an adult male (JMD 599) of Arthroleptis nyungwensis sp. nov. in life. (E) Dorsolateral view and (F) ventral view of one of the subadult paratypes (SMNS 15743) of Arthroleptis nyungwensis sp. nov. in life.
Figure 4 in A New Miniature Species of Arthroleptis (Anura: Arthroleptidae) from Nyungwe National Park, Rwanda
Figure 4. Phylogram inferred from mitochondrial nucleotide sequence data of 16S rRNA (563 BP). Numbers below branches are non-parametric bootstrap support values from ML (1000 replicates). Sequences are listed with species name, voucher number, and GenBank accession number, respectively. Specimens of the three species occurring in Rwanda are depicted on the right at the level of their corresponding samples.
Etruscan miniature skyphos
"Etruscan miniature skyphos from the Castello Banfi Collection Miniature skyphos. Orange clay. Belongs to a production of miniature vases typical of funerary contexts of the Hellenistic period. 2nd c. BCE. Montalcino, Poggio alle Mura (Castello Banfi), n. inv. 192b. Bischeri 2022: n. cat. 229. Processed in Reality Capture from 330 images. GDH ID C5_192 B This project was done under the authority of the Soprintendenza Archeologia, belle arti e paesaggio per le province di Siena Grosseto e Arezzo in collaboration with Global Digital Heritage. We thank Elizabeth Koenig, Hospitality Project Director at Castello Banfi and President of the Scientific Committe of Fonadazione Banfi, for coordinating this project and making the collection accessible. The catalog of the Banfi collection was created by Dr. Matteo Bischeri (2022)." Source: Objaverse 1.0 / Sketchfab
Miniature of the Roman Coliseum
Source: Objaverse 1.0 / Sketchfab
Black-gloss miniature kantharos, Poggio Pinci
Black-gloss miniature kantharos from the Necropolis of Poggio Pinci, Asciano, Tuscany, Italy Black-gloss miniature kantharos. Light brown clay with blackish paint. Identical examples have been documents in Arezzo. First half of the 3rd c. BCE. Tomb III.193, Necropolis of Poggio Pinci, Asciano. Mangani 1983, n. cat. III, 13. Displayed at the Civic Museum of Archaeology and Sacred Art at Palazzo Corboli, Asciano. Processed in Reality Capture from 317 images. GDH ID No. C7_193final This project was done under the authority of the Soprintendenza Archeologia, belle arti e paesaggio per le province di Siena Grosseto e Arezzo in collaboration with Global Digital Heritage and the Municipality of Asciano. We thank Elisa, Benedetta and all the staff from Palazzo Corboli for making the collection accessible and our work easier. Source: Objaverse 1.0 / Sketchfab
Miniature Stone Church
This is a miniature stone church built by Herman Rusch. It is located in the [Prairie Moon Sculpture Garden](http://www.kohlerfoundation.org/preservation/preserved-sites/prairie-moon-sculpture-garden-and-museum/) near [Fountain City, Wisconsin](https://goo.gl/maps/oTBN8LudqTqZqRpf8). Human figure for scale is 6ft (1.8m) tall. Created from 89 photographs (Canon EOS Rebel T5i) using Metashape 1.5.1. Photographed July 31, 2019. Human Figure: adapted from "Low Poly Male Base" by [wh_nerevar](https://skfb.ly/6HQWV) Source: Objaverse 1.0 / Sketchfab
Miniature ceramic pot 3
Timiryazevskiy-I burial site Source: Objaverse 1.0 / Sketchfab
Miniature Pot (1965rp33)
**Miniature clay pot (replica)** Location: Peachtree site (31Ce2), Cherokee County, North Carolina. Period: Mississippian (AD 1400-1600). Material: ceramic. Dimensions: height, 33.2 mm; diameter, 34.9 mm. Notes: Catalog no. 1965rp33. Original artifact (catalog # 384980) is in the US National Museum of Natural History, Washington. Modeled replica is from the North Carolina Archaeological Collection, Research Laboratories of Archaeology, University of North Carolina at Chapel Hill. Model by Abigail Gancz. Source: Objaverse 1.0 / Sketchfab
Do it yourself: 3D-printed miniature CDC trap for adult mosquito (Diptera: Culicidae) surveillance
<p>The central component of mosquito and vector surveillance programs globally is the adult mosquito trap, which is intended to collect host-seeking mosquitoes. The miniature CDC trap is a widely distributed trap style in part due to its relative affordability and compact nature. Despite already being a simple trap, in-house production methods, such as 3D printing, could improve the accessibility of the CDC trap by eliminating some of the supply chain variables. We present here several trials with the Salt Lake City (SLC) trap, a three-dimensional (3D) printed trap design. Functional assessments were made on secondary components and found no statistically significant differences when comparing CO<sub>2</sub> line height (above vs. below fan), battery types (sealed lead acid vs. USB battery pack), and trap body collection shape (funnel body vs. simple/straight body). The SLC trap was compared directly to a commercial equivalent, the ABC trap, with comparative assessment on species diversity and evenness in collections and found to be statistically equivalent on all metrics. Methods also detail an accompanying optional transport system for a pressurized CO<sub>2</sub>/regulator set-up, should a practitioner elect not to use dry ice. Our final design is presented here with the publicly published stereolithography (STL) files and a detailed outline of the transport container system. Alternative models are available for in-house manufacture of mosquito traps, and we contribute these designs in an effort to stimulate further growth in vector surveillance.</p>
Raw data and R code for the stone artifact analysis in "Lithic miniaturization in South China since the terminal Pleistocene: a multivariate analysis of lithic reduction from Fodongdi, Fulin and Xiqiaoshan"
Open the record for dataset details and reuse information.
Miniature iron-carbon eutectic point crucible for the calibration of thermometers
<p>The article presents the design, construction and evaluation of a miniature graphite iron-carbon eutectic point crucible for the calibration of thermometers. These are either contact such as thermocouples or non-contact such as infrared thermometers. The double wall of the crucible protects its structure in case of cracks in graphite that can appear due to thermal expansion or eutectic adhesion. Such design proved robust – even after almost 100 melting realizations, the crucible does not show significant signs of damage. Performance of the crucible was confirmed with several realized plateaus at three different furnace setpoints. Results of these measurements agree with previously published findings. The measured melting point temperature was 1153.81 °C and the achieved expanded calibration uncertainty of a type R thermocouple was 0.2 °C.</p>
FIG. 37 in Miniaturization in Direct-Developing Frogs from Mexico with the Description of Six New Species
FIG. 37.—Gonad coloration and morphology in the genus Craugastor: pigmented testes in C. mexicanus (A, UTA A-66090); partially pigmented ovaries in C. mexicanus (B, UTA A-56558); pigmented maturing ova in C. mexicanus (C, UTA A-64413); unpigmented testes in C. fitzingeri (D, BMNH 1979.344), unpigmented ovaries in C. fitzingeri, (E, BMNH 1979.343); unpigmented testes in C. noblei (F, BMNH 1987.779); maturing ova and oviducts in C. loki (G, BMNH 1973.2439); ovaries in C. loki (H, BMNH 1973.2444). Acolor version of this figure is available online.
FIG. 29 in Miniaturization in Direct-Developing Frogs from Mexico with the Description of Six New Species
FIG. 29.—Ventral coloration and areolate skin texture of Craugastor omiltemanus. Venter in preservative, an arrow indicates the large inner metatarsal tubercle that is characteristic of the species (A, BMNH 1947.2.16.44, SVL ¼ 36.5 mm, photo by W.-Y. Cooper); venter in preservative (B, BMNH 1947.2.16.47, SVL ¼ 39.6 mm, photo by W.-Y. Cooper); venter in life (C, UTA Field ID: JAC 27695); venter in life (D, UTA Field ID: JAC 27694). Acolor version of this figure is available online.
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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.