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FIGURE 14. A in New genera, species and records of Afrotropical Phaneropterinae (Orthoptera, Tettigoniidae) preserved at the Royal Belgian Institute of Natural Sciences, Bruxelles
FIGURE 14. A) Plangiopsis shoutedeni Griffini, 1908 female holotype in lateral view. B) Plangiopsis adeps KarSch, 1896 female Syntype in lateral view. C) Face of P. shoutedeni female holotype in frontal view. D) Face of P. adeps in frontal view. E) Female ovipoSitor of P. shoutedeni holotype in lateral view. F) Female ovipoSitor of P. adeps in lateral view.
FIGURE 12 in New genera, species and records of Afrotropical Phaneropterinae (Orthoptera, Tettigoniidae) preserved at the Royal Belgian Institute of Natural Sciences, Bruxelles
FIGURE 12. Ventral view of the male Subgenital plate and cerci in Morgenia SpecieS. A) Morgenia spathulifera Griffini, 1908 holotype. B) M. rubricornis SjÖStedt, 1913. C) M. hamuligera KarSch, 1890. D) M. melica KarSch, 1893.
FIGURE 11 in New genera, species and records of Afrotropical Phaneropterinae (Orthoptera, Tettigoniidae) preserved at the Royal Belgian Institute of Natural Sciences, Bruxelles
FIGURE 11. DorSal view of male cerci in Morgenia SpecieS. A) Morgenia spathulifera Griffini, 1908 holotype. B) M. rubricornis SjÖStedt, 1913. C) M. hamuligera KarSch, 1890. D) M. melica KarSch, 1893.
FIGURE 10. Terpnistriella bredoi n. gen. n in New genera, species and records of Afrotropical Phaneropterinae (Orthoptera, Tettigoniidae) preserved at the Royal Belgian Institute of Natural Sciences, Bruxelles
FIGURE 10. Terpnistriella bredoi n. gen. n. sp. A) Lateral view of the male paratype. B) DorSal view of Stridulatory area and wingS of the male holotype. C) Stridulatory file of the holotype. D) Lateral view of hind legS of the holotype. E) Lateral view of the laSt abdominal SegmentS of the holotype. F) DorSal view of the laSt tergite and cerci of the holotype. G) DorSal view of the Subgenital plate of the holotype. H) Ventral view of the Subgenital plate of the holotype.
FIGURE 9. A in New genera, species and records of Afrotropical Phaneropterinae (Orthoptera, Tettigoniidae) preserved at the Royal Belgian Institute of Natural Sciences, Bruxelles
FIGURE 9. A) Poecilogramma cloetensi (Griffini, 1908) holotype female in lateral view. B) Poecilogramma striatifemur KarSch, 1887 male in lateral view. C) DorSal view of the laSt tergite and cerci of the Same. D) Poecilogramma annulifemur KarSch, 1887 male in lateral view. E) DorSal view of the head and pronotum of the Same. F) DorSal view of the laSt tergite and cerci of the Same.
FIGURE 8. A in New genera, species and records of Afrotropical Phaneropterinae (Orthoptera, Tettigoniidae) preserved at the Royal Belgian Institute of Natural Sciences, Bruxelles
FIGURE 8. A) P. versicolor Brunner von Wattenwyl, 1878 male in lateral view. B) Pardalota reimeri La Baume, 1911 female in dorSal view. C) Pardalota superba SjÖStedt, 1913 male in lateral view.
FIGURE 18. Materuana abyssinica n in New genera, species and records of Afrotropical Phaneropterinae (Orthoptera, Tettigoniidae) preserved at the Royal Belgian Institute of Natural Sciences, Bruxelles
FIGURE 18. Materuana abyssinica n. sp. holotype A) Lateral view. B) Face in frontal view. C) Stridulatory file of the left tegmen. D) Lateral view of the laSt abdominal SegmentS. E) Ventral view of the Subgenital plate.
FIGURE 5 in New genera, species and records of Afrotropical Phaneropterinae (Orthoptera, Tettigoniidae) preserved at the Royal Belgian Institute of Natural Sciences, Bruxelles
FIGURE 5. Eurycorypha Sp.1 male from Griffini (1908). A) Lateral view of the Specimen. B) Stridulatory file of the left tegmen. C) Lateral view of laSt abdominal SegmentS. D) DorSal view of the laSt tergite and cerci. E) Ventral view of the Subgenital plate and cerci.
FIGURE 6 in New genera, species and records of Afrotropical Phaneropterinae (Orthoptera, Tettigoniidae) preserved at the Royal Belgian Institute of Natural Sciences, Bruxelles
FIGURE 6. Eurycorypha Sp.2 male from Griffini (1908). A) Lateral view of the Specimen. B) Stridulatory file of left tegmen. C) Lateral view of laSt abdominal SegmentS. D) Ventral view of the Subgenital plate and cerci. E) DorSal view of the laSt tergite.
FIGURE 4. Eurycorypha spinulosa KarSch, 1889. A in New genera, species and records of Afrotropical Phaneropterinae (Orthoptera, Tettigoniidae) preserved at the Royal Belgian Institute of Natural Sciences, Bruxelles
FIGURE 4. Eurycorypha spinulosa KarSch, 1889. A) Stridulatory file below the left tegmen of the male. B) LaSt tergite and cerci of the male. C) Cerci of the male from above. D) Lateral view of cerci of the male.
FIGURE 3 in New genera, species and records of Afrotropical Phaneropterinae (Orthoptera, Tettigoniidae) preserved at the Royal Belgian Institute of Natural Sciences, Bruxelles
FIGURE 3. Symmetrokarschia africana (Brunner von Wattenwyl, 1878). A) Lateral view of laSt abdominal SegmentS. B) Ventral view of the Subgenital plate.
FIGURE 2. Dithela longicaudata n in New genera, species and records of Afrotropical Phaneropterinae (Orthoptera, Tettigoniidae) preserved at the Royal Belgian Institute of Natural Sciences, Bruxelles
FIGURE 2. Dithela longicaudata n. sp. and Dithela acuticercus SjÖStedt, 1912. A) Lateral view of D. longicaudata n. sp. B) Stridulatory file of D. longicaudata n. sp. C) Lateral view of D. acuticercus. D) Lateral view of laSt abdominal SegmentS and cerci of D. longicaudata n. sp. E) Lateral view of laSt abdominal SegmentS and cerci of D. acuticercus. F) ventral view of the Subgenital plate of D. longicaudata n. sp. G) DorSal view of cerci and Subgenital plate of D. longicaudata n. sp. H) DorSal view of cerci and Subgenital plate of D. acuticercus.
FIGURE 7. A in New genera, species and records of Afrotropical Phaneropterinae (Orthoptera, Tettigoniidae) preserved at the Royal Belgian Institute of Natural Sciences, Bruxelles
FIGURE 7. A) Lateral view of the male Pardalota asymmetrica KarSch, 1896. B) LaSt tergite and cerci of the Same in dorSal view. C) Lateral view of the male Pardalota haasi Griffini 1908. D) LaSt tergite and cerci of the Same in dorSal view. E) DorSal view of the head and pronotum of the Same. F) Lateral view of the female Pardalota karschiana Enderlein, 1907. G) DorSal view of laSt tergite and cerci of male of the Same.
FIGURE 13 in New genera, species and records of Afrotropical Phaneropterinae (Orthoptera, Tettigoniidae) preserved at the Royal Belgian Institute of Natural Sciences, Bruxelles
FIGURE 13. Stridulatory file of left tegmen in Morgenia SpecieS. A) Morgenia spathulifera Griffini, 1908 holotype. B) M. rubricornis SjÖStedt, 1913. C) M. hamuligera KarSch, 1890. D) M. melica KarSch, 1893.
FIGURE 1. Melidia claudiae MaSSa, 2015. A in New genera, species and records of Afrotropical Phaneropterinae (Orthoptera, Tettigoniidae) preserved at the Royal Belgian Institute of Natural Sciences, Bruxelles
FIGURE 1. Melidia claudiae MaSSa, 2015. A) Stridulatory area of left and right tegmina of male. B) Stridulatory file under the left tegmen of male. C) Female ovipoSitor.
Supplementary material 1 from: Croce A, Nazzaro R (2017) An atlas of orchids distribution in the Campania region (Italy), a citizen science project for the most charming plant family. Italian Botanist 4: 15-32. https://doi.org/10.3897/ib.4.14916
Relations between the 4 tables of the MS Access database used to store the data of the project and respective fields : Data type: Image
Supplementary material 3 from: Croce A, Nazzaro R (2017) An atlas of orchids distribution in the Campania region (Italy), a citizen science project for the most charming plant family. Italian Botanist 4: 15-32. https://doi.org/10.3897/ib.4.14916
References considered for the bibliographic records : Data type: (measurement/occurence/multimedia/etc.)
In 2017, Plantix, a free smartphone app that helps identify plant damage, was introduced to the Indian state of Andhra Pradesh, with an extension partner. Plantix was created by Progressive Environmental and Agricultural Technologies (PEAT), a German startup. Two PEAT cofounders, Charlotte Schuman (second from the right) and Alex Kennepohl (center, with eyeglasses), confer about the smartphone app with students from Angrau University. Farmers and gardeners can transmit their plant images to Plantix, which uses deep learning and computer vision to help identify diseases and pests. The smartphone app offers symptom descriptions, treatment recommendations, and potential preventive actions. Photographs: Courtesy of PEAT GmbH. in Deep learning brings speed, accuracy to the life sciences.
In 2017, Plantix, a free smartphone app that helps identify plant damage, was introduced to the Indian state of Andhra Pradesh, with an extension partner. Plantix was created by Progressive Environmental and Agricultural Technologies (PEAT), a German startup. Two PEAT cofounders, Charlotte Schuman (second from the right) and Alex Kennepohl (center, with eyeglasses), confer about the smartphone app with students from Angrau University. Farmers and gardeners can transmit their plant images to Plantix, which uses deep learning and computer vision to help identify diseases and pests. The smartphone app offers symptom descriptions, treatment recommendations, and potential preventive actions. Photographs: Courtesy of PEAT GmbH.
Kaisa Helminen is CEO of Fimmic Oy, a Finnish company that created the first commercial tool integrating deep learning and computer vision for pathology research. Photograph: Sebastian Mardones / Health Capital Helsinki. in Deep learning brings speed, accuracy to the life sciences.
Kaisa Helminen is CEO of Fimmic Oy, a Finnish company that created the first commercial tool integrating deep learning and computer vision for pathology research. Photograph: Sebastian Mardones / Health Capital Helsinki.
Researchers trained a in Deep learning brings speed, accuracy to the life sciences.
Researchers trained a neural network with random plant samples, shown here, from a large French herbaria data set. Next, the network was trained on a much smaller Costa Rican database. The French and Costa Rican species are different, but the model identified Costa Rican species with 80 percent accuracy. This training process, called transfer learning, can help taxonomists identify plants in countries that have small numbers of plant images in digital collections. Photograph: Reprinted from Carranza-Rojas J et al. 2017, Going deeper in the automated identification of herbarium specimens. BMC Evolutionary Biology.
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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.