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1,708 results for “young adults”
FIGURE 3 in When young are more conspicuous than adults: a new ranid species (Anura: Ranidae) revealed by its tadpole
FIGURE 3. Buccal floor (A) and buccal roof (B) of a tadpole of Clinotarsus alticola (Form A), IASST AT 733, in stage 36.
FIGURE 2 in When young are more conspicuous than adults: a new ranid species (Anura: Ranidae) revealed by its tadpole
FIGURE 2. Pictures of the tadpole of Clinotarsus alticola (Form A), IASST AT 732 in stage 36; dorsal (A) and lateral (B) views.
FIGURE 1 in When young are more conspicuous than adults: a new ranid species (Anura: Ranidae) revealed by its tadpole
FIGURE 1. Drawings and SEM picture of the tadpole of Clinotarsus alticola (Form A): dorsal (A) and lateral (B) views of the specimen IASST AT 732 in stage 36, scale bar = 5 mm; oral disc (C) of the specimen IASST AT 734 in stage 36, scale bar = 1 mm; (D) some keratodonts of the row A3 of the specimen IASST AT 733 in stage 36, scale bar = 10 µm. Note that the oral disc belongs to a different specimen than the described one due to the need to find a properly opened oral disc.
FIGURE 4 in When young are more conspicuous than adults: a new ranid species (Anura: Ranidae) revealed by its tadpole
FIGURE 4. Results of Principal Component Analysis (PCA) of 18 morphometric variables for 22 tadpoles of Form A and 25 tadpoles of Form B, showing scores for individual specimens on PC1 and PC2. PC1 scores variation is mostly explained by the size, PC2 by the ontogenetic variation within the Form B. Open circles: Form A; closed circles: Form B.
FIGURE 9 in When young are more conspicuous than adults: a new ranid species (Anura: Ranidae) revealed by its tadpole
FIGURE 9. Scatter plot of Factor 1 and 2 of Principal Component Analysis including potential adult males and females of Clinotarsus penelope sp. nov. and Clinotarsus alticola based on 31 measurements.
FIGURE 7 in When young are more conspicuous than adults: a new ranid species (Anura: Ranidae) revealed by its tadpole
FIGURE 7. Pictures of the holotype of Clinotarsus penelope sp. nov., MNHN 2000.4630 in stage 36; lateral (A) and dorsal (B) views.
Dataset related to diabetes phase 2 of the project "Transition care between adolescent and adult services for young people with chronic health needs in Italy", funded by the Italian Ministry of Health (RF-2019-12371228).
<p>Dataset related to diabetes phase 2 of the project "Transition care between adolescent and adult services for young people with chronic health needs in Italy", funded by the Italian Ministry of Health (RF-2019-12371228).</p>
ECG datasets of young healthy adults
<p>This dataset is acquired using ECG AD8232 sensor.</p>
FIGURES 9–10 in Descriptions of the mature larva and adult female of Pseudopyrochroa girardi Young from Southwest China (Coleoptera: Pyrochroidae: Pyrochroinae), with natural history observations
FIGURES 9–10. Larval habitat of Pseudopyrochroa girardi Young: 9. Last instar saproxylic larva in decaying, coarse woody debris; 10. Last instar larva and associated woody debris in laboratory for rearing.
FIGURES 11–12 in Descriptions of the mature larva and adult female of Pseudopyrochroa girardi Young from Southwest China (Coleoptera: Pyrochroidae: Pyrochroinae), with natural history observations
FIGURES 11–12. Pseudopyrochroa girardi Young, adult female: 11. Dorsal habitus; 12. Head and pronotum, dorsal.
FIGURES 7–8 in Descriptions of the mature larva and adult female of Pseudopyrochroa girardi Young from Southwest China (Coleoptera: Pyrochroidae: Pyrochroinae), with natural history observations
FIGURES 7–8. Mature larva (exuviae) of Pseudopyrochroa girardi Young: 7. Urogomphal plate, dorsal; 8. Abdominal segments VIII–IX, ventral.
FIGURES 1–3 in Descriptions of the mature larva and adult female of Pseudopyrochroa girardi Young from Southwest China (Coleoptera: Pyrochroidae: Pyrochroinae), with natural history observations
FIGURES 1–3. Mature larva of Pseudopyrochroa girardi Young: 1. Habitus, dorsal; 2. Habitus, ventral; 3. Last instar exuviae, dorsal.
FIGURES 4–6 in Descriptions of the mature larva and adult female of Pseudopyrochroa girardi Young from Southwest China (Coleoptera: Pyrochroidae: Pyrochroinae), with natural history observations
FIGURES 4–6. Mature larva (exuviae) of Pseudopyrochroa girardi Young: 4. Head capsule, dorsal; 5. head capsule, ventral; 6. Mouthparts, dorsal.
Dataset related to ADHD phase 2 of the project "Transition care between adolescent and adult services for young people with chronic health needs in Italy", funded by the Italian Ministry of Health (RF-2019-12371228).
<p>Dataset related to ADHD phase 2 of the project "Transition care between adolescent and adult services for young people with chronic health needs in Italy", funded by the Italian Ministry of Health (RF-2019-12371228).</p>
Differences between four skinfold calipers in the assessment of adipose tissue in a healthy young adult population
<p>Database of the paper: Differences between four skinfold calipers in the assessment of adipose tissue in a healthy young adult population</p>
Serial thin section movie of every third section from the DTC to the distal extensions of Sh1 in a young adult hermaphrodite posterior gonad arm
<p>Gap-junctional signaling mediates myriad cellular interactions in metazoans. Yet, how gap junctions control the positioning of cells in organs is not well understood. Innexins compose gap junctions in invertebrates and affect organ architecture. Here, we investigate the roles of gap-junctions in controlling distal somatic gonad architecture and its relationship to underlying germline stem cells in <em>Caenorhabditis elegans</em>. We show that a reduction of soma-germline gap-junctional activity causes displacement of distal sheath cells (Sh1) towards the distal end of the gonad. We confirm, by live imaging, transmission electron microscopy, and antibody staining, that bare regions – lacking somatic gonadal cell coverage of germ cells – are present between the distal tip cell (DTC) and Sh1, and we show that an innexin fusion protein used in a prior study encodes an antimorphic poisonous gap junction subunit that mispositions Sh1. We determine that, contrary to the model put forth in the prior study based on this fusion protein, Sh1 mispositioning does not markedly alter the position of the borders of the stem cell pool nor of the progenitor cell pool. Together, these results demonstrate that gap junctions can control the position of Sh1, but that Sh1 position is neither relevant for GLP-1/Notch signaling nor for the exit of germ cells from the stem cell pool.</p>
Unmet Health Needs among Young Adults with Cerebral Palsy in Ireland: A Cross-Sectional Study
<p>Data used in publication entitled: "Unmet Health Needs among Young Adults with Cerebral Palsy in Ireland: A Cross-Sectional Study" </p> <p>Published in Journal of Clinical Medicine, August 2022.</p> <p>Associated metadata provided in "metadata_unmetneed_v1"</p>
Dataset related to epilepsy phase 1 of the project "Transition care between adolescent and adult services for young people with chronic health needs in Italy", funded by the Italian Ministry of Health (RF-2019-12371228).
<p>Dataset related to epilepsy phase 1 of the project "Transition care between adolescent and adult services for young people with chronic health needs in Italy", funded by the Italian Ministry of Health (RF-2019-12371228).</p>
Dataset related to epilepsy phase 2 of the project "Transition care between adolescent and adult services for young people with chronic health needs in Italy", funded by the Italian Ministry of Health (RF-2019-12371228).
<p>Dataset related to epilepsy phase 2 of the project "Transition care between adolescent and adult services for young people with chronic health needs in Italy", funded by the Italian Ministry of Health (RF-2019-12371228).</p>
Dataset related to ADHD phase 3 of the project "Transition care between adolescent and adult services for young people with chronic health needs in Italy", funded by the Italian Ministry of Health (RF-2019-12371228).
<p>Dataset related to ADHD phase 3 of the project "Transition care between adolescent and adult services for young people with chronic health needs in Italy", funded by the Italian Ministry of Health (RF-2019-12371228).</p>
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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.