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FIGURE 5. Morphological comparison between Impatiens sigmoidea and I. lasiophyton. A–C I. sigmoidea. A–B Habit C Dissected flower. D–F I. lasiophyton. D in The rediscovery of Impatiens sigmoidea Hook. f. (Balsaminaceae) in Guizhou, China after more than 100 years
FIGURE 5. Morphological comparison between Impatiens sigmoidea and I. lasiophyton. A–C I. sigmoidea. A–B Habit C Dissected flower. D–F I. lasiophyton. D Flower in face view E Flower in lateral F Dissected flower. Photographs by XIN-XIANG BAI.
FIGURE 5. Representative Rhytiphora species, dissections. A in The Australian genus Rhytiphora (Coleoptera: Cerambycidae: Lamiinae) with a revision of the Rhytiphora collaris group
FIGURE 5. Representative Rhytiphora species, dissections. A: Clade 1 head, lateral. B: Clade 1 prothorax, lateral. C: Clade 2 head, lateral. D: foreleg. E: mid leg. F: Clade 1 male abdomen, ventral. G: Clade 2 male abdomen, ventral.
FIGURE 4. Pleurothallis lapoi. A. Habit. B. Flower. C. Dissected perianth. D in Five new species of Pleurothallis (Orchidaceae: Pleurothallidinae) in subsection Macrophyllae-Fasciculatae from Southeastern Ecuador
FIGURE 4. Pleurothallis lapoi. A. Habit. B. Flower. C. Dissected perianth. D. Ovary, column and lip in lateral view. E. Lip adaxial and abaxial views. Illustration by L. Vélez-Abarca based on the type.
FIGURE 1. Pleurothallis kashi-menkakarai A. Habit. B. Flower. C. Dissected perianth. D in Five new species of Pleurothallis (Orchidaceae: Pleurothallidinae) in subsection Macrophyllae-Fasciculatae from Southeastern Ecuador
FIGURE 1. Pleurothallis kashi-menkakarai A. Habit. B. Flower. C. Dissected perianth. D. Ovary, column and lip in lateral view. E. Lip adaxial and abaxial views. F. Column in lateral view. Illustration by Vélez-Abarca based on the type.
FIGURE 9. Pleurothallis sabanillae. A. Habit. B. Flower. C. Dissected perianth. D in Five new species of Pleurothallis (Orchidaceae: Pleurothallidinae) in subsection Macrophyllae-Fasciculatae from Southeastern Ecuador
FIGURE 9. Pleurothallis sabanillae. A. Habit. B. Flower. C. Dissected perianth. D. Ovary, column and lip in lateral view. E. Lip adaxial and abaxial views. Illustration by L. Vélez-Abarca based on the type.
FIGURE 6. Pleurothallis marioandresavilae. A. Habit. B. Flower. C. Dissected perianth. D in Five new species of Pleurothallis (Orchidaceae: Pleurothallidinae) in subsection Macrophyllae-Fasciculatae from Southeastern Ecuador
FIGURE 6. Pleurothallis marioandresavilae. A. Habit. B. Flower. C. Dissected perianth. D. Ovary, column and lip in lateral view. E. Lip adaxial and abaxial views. Illustration by L. Vélez-Abarca based on the type.
FIGURE 11. Pleurothallis tinajillensis. A. Habit. B. Flower. C. Dissected perianth. D in Five new species of Pleurothallis (Orchidaceae: Pleurothallidinae) in subsection Macrophyllae-Fasciculatae from Southeastern Ecuador
FIGURE 11. Pleurothallis tinajillensis. A. Habit. B. Flower. C. Dissected perianth. D. Ovary, column and lip in lateral view. E. Lip adaxial and abaxial views. Illustration by L. Vélez-Abarca based on the type.
A platform for dissecting force sensitivity and multivalency in actin networks (supplemental)
<p>These data support the supplemental figures in our publication "<strong>A platform for dissecting force sensitivity and multivalency in actin networks</strong>". Unzip for a README file explaining data. See DOI 8239706 for main figure data. BioRxiv: https://www.biorxiv.org/content/10.1101/2023.08.15.553463v1</p>
FIGURE 5. Rafflesia leonardi. A1. Mature flower bud. A2. Dissected male flower bud. B1 in The reinstatement of Rafflesia banaoana (Rafflesiaceae), and implications for assessing species diversity and conservation requirements of the world's largest flowers
FIGURE 5. Rafflesia leonardi. A1. Mature flower bud. A2. Dissected male flower bud. B1. Flower found in Calabagan Watershed Forest Reserve. B2. Flower found in Amro River Protected Landscape. C. Dissected female flower showing the characters of the processes, disk column, annulus structure and ovary. D. Enlarged view of the column of female flower showing short hairs on the surface of annulus interior. E1. Annulus structure of male flower showing white hairs on the surface of the annulus interior. E2. Disk under-surface of male flower. F1. View from above the disk of male flower bud. F2. Disk of mature flower. Photo credits: A1, A2, C, D, E1, E2, F1, F2— A.B.Tobias; B1—E.Agbayani; B2.—M.Aguan
FIGURE 3. Rafflesia banaoana. A1. Dissected male flower bud. A2. Flower bud. B in The reinstatement of Rafflesia banaoana (Rafflesiaceae), and implications for assessing species diversity and conservation requirements of the world's largest flowers
FIGURE 3. Rafflesia banaoana. A1. Dissected male flower bud. A2. Flower bud. B. Lateral view of the perigone lobes with bracts. B. Female flower. d1. Enlarged view of the surface of perigone lobes with warts. d2. Enlarged view of the diaphragm's surface. E1. Dissected perigone tube showing filiform ramenta. E2. Simple filiform with few lobed ramenta in the lower perigone tube. E3. Shallowly and deeply-bilobed and multi-lobed with few merged ramenta in the middle perigone tube. E4. Multi-lobed, merged and fence-like ramenta in the upper perigone tube and near the diaphragm's aperture. F. Dissected female flower showing the characters of the processes, disk, column, annulus structure and ovary. G1. Annulus structure of male flower.' G2. Disk under surface showing anthers embedded in sulci. G3. Annulus structure of female flower. G4. Stigmatic surface. H1. Column of male flower showing conspicuous processes pointed towards the margin of the disk. H2. Top view of the processes. H3 and H4. Processes of female flower with apical hairs. H5. Enlarged view of the column showing short hairs on disk's rim and bristles on the disk's undersurface and annulus interior. and I. Tetrastigma cf. sepulchrei, host of R. banaoana. Photo credits: A1, A2, B, C, E1, E2, E3, E4, F, G3, G4, I—A.B. Tobias. D1, D2, G1, G2, H1-H4—G.K. Penetrante
Visualization of dissection differences for two murine heart samples
<p>Sample on the left contains only a small cut in the atria while sample on the right is deprived of the aorta, right atrium and right atrial appendage.</p>
FIGURE 7. Encyclia hanburyi. A. Plant. B. Flower. C. Dissected perianth. D in Encyclia × tixtlensis (Orchidaceae: Laeliinae), a possible natural hybrid between E. meliosma and E. atrorubens in Guerrero, México
FIGURE 7. Encyclia hanburyi. A. Plant. B. Flower. C. Dissected perianth. D. Lip and column in normal position, lateral and front view. E. Column, front, back and lateral view. F. Anther cap, front and back view. G. Pollinarium. Based on E.A. Pérez-García sub C. LeónPeralta 53 (AMO).
FIGURE 5. Encyclia meliosma. A. Plant. B. Flower. C. Dissected perianth. D in Encyclia × tixtlensis (Orchidaceae: Laeliinae), a possible natural hybrid between E. meliosma and E. atrorubens in Guerrero, México
FIGURE 5. Encyclia meliosma. A. Plant. B. Flower. C. Dissected perianth. D. Lip and column in normal position, lateral and front view. E. Column, front, back and lateral view. F. Anther cap. G. Pollinarium. Based on C. León-Peralta 52 & E. Salmerón-Barrera (AMO).
FIGURE 4. Encyclia atrorubens. A. Plant. B. Flower. C. Dissected perianth. D in Encyclia × tixtlensis (Orchidaceae: Laeliinae), a possible natural hybrid between E. meliosma and E. atrorubens in Guerrero, México
FIGURE 4. Encyclia atrorubens. A. Plant. B. Flower. C. Dissected perianth. D. Lip and column in normal position, lateral and front view. E. Column, front, back and lateral view. F. Anther cap. G. Pollinarium. Based on C. León-Peralta 51 & E. Salmerón-Barrera (AMO).
FIGURE 2. Acianthera crinita—A. Habit. B. Flower, lateral view. C. Flower dissected. D in Nomenclatural notes in miscellaneous species of Acianthera (Pleurothallidinae, Orchidaceae)
FIGURE 2. Acianthera crinita—A. Habit. B. Flower, lateral view. C. Flower dissected. D. Column and lip, lateral view. E. Lip, frontal view. Drawn by Stig Dalstr̂m, based in Luer 20627.
FIGURE 1. Acianthera kautskyi—A. Habit. B. Flower, lateral view. C. Flower dissected. D in Nomenclatural notes in miscellaneous species of Acianthera (Pleurothallidinae, Orchidaceae)
FIGURE 1. Acianthera kautskyi—A. Habit. B. Flower, lateral view. C. Flower dissected. D. Column and lip, lateral view. E. Lip, frontal view. Drawn by Stig Dalstr̂m, based in Luer 14727.
Mesorectal Excision (ME) Versus ME With Lateral Node Dissection for Stage II, III Lower Rectal Cancer (JCOG0212)
ClinicalTrials.gov study NCT00190541. IPD Sharing: Not stated. Countries: 1. Publications: 3.
The Value of Lymph Node Dissection of Indocyanine Green-guided Near-infrared Fluorescent Imaging in Esophagectomy
ClinicalTrials.gov study NCT04615806. IPD Sharing: Not stated. Countries: 1. Publications: 2.
Effectivenes of Cyanoacrylate (Glubran 2®) in Reducing Seroma Formation in Breast Cancer Patients Post-Axillary Dissection
ClinicalTrials.gov study NCT02141373. IPD Sharing: Not stated. Countries: 1. Publications: 1.
Dissecting the Role of Estradiol in Mediating Gender-specific Anxiolytic and Prosocial Effects of Oxytocin
ClinicalTrials.gov study NCT04330677. IPD Sharing: NO. Countries: 1. Publications: 1.
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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.