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1,063 results for “sharpness”
FIGURES 11–12. Hydrocanthus debilis Sharp, 1882, instar I in Description and chaetotaxic analysis of the larval instars of Hydrocanthus debilis Sharp, 1882 (Coleoptera: Noteridae)
FIGURES 11–12. Hydrocanthus debilis Sharp, 1882, instar I: (11) left metathoracic leg, anterior aspect; (12) right metathoracic leg, posterior aspect. Numbers and lowercase letters indicate primary setae and pores respectively. CO, coxa; FE, femur; PT, pretarsus; TA, tarsus; TI, tibia; TR, trochanter. Scale bar = 0.10 mm.
Sharp Edges
<u>Source</u>: Flickr <br><u>4DCity URL</u>: <a href="https://4dcity.org/imgupload/1653128983.3588.jpg">https://4dcity.org/imgupload/1653128983.3588.jpg</a> <br><u>Original Image URL</u>: <a href="https://live.staticflickr.com/65535/52052508472_0895788960_m.jpg">https://live.staticflickr.com/65535/52052508472_0895788960_m.jpg</a> <br><br><u>Image-Metadata:</u><br>Filename: 1653128983.3588.jpg<br>Image Dimensions: 192x240<br>Megapixels: 0.05 MP<br>Filesize: 5.91 KB<br>
FIGURE 10. Collecting method for M in The return of the Duke - locality data for Megadytes ducalis Sharp, 1882, the world's largest diving beetle, with notes on related species (Coleoptera: Dytiscidae)
FIGURE 10. Collecting method for M. lherminieri in Guadeloupe: (A) Close up view at Etang Fromager, Le Moule, Grande- Terre, Guadeloupe, 18 V 2012, N16°19'18"/W61°24'04"; (B) Example of a trap with Megadytes and other diving beetles inside (trapping session in the pond shown in Fig. 9A); (C) Female of M. lherminieri from Guadeloupe (Photos: M. Manuel).
FIGURE 4 in The return of the Duke - locality data for Megadytes ducalis Sharp, 1882, the world's largest diving beetle, with notes on related species (Coleoptera: Dytiscidae)
FIGURE 4. Megadytes ducalis, male specimen from collection Guignot: A) median lobe with parameres in ventral view, B) tip of median lobe in lateral view, C) anterior half median lobe in ventro-apical view; Megadytes ducalis, holotype: D) median lobe in ventral view (Foto: R. Angus). Scale bars = 1.5 mm.
Figs. 4–13 in Aleochara verecunda Sharp, 1876 Rediscovered from the Brazilian Amazon (Coleoptera: Staphylinidae: Aleocharinae)
Figs. 4–13. Aleochara (A.) verecunda. 4) Tergum VIII, male, dorsal view; 5) Tergum VIII, female, dorsal view; 6) Sternum VIII, male, ventral view; 7) Tergum IX and X, male, dorsal view; 8) Tergum IX and X, female, dorsal view; 9) Spermatheca; 10) Aedeagus, median lobe, dorsal view; 11) Aedeagus, median lobe, lateral view; 12) Sternum IX, male, ventral view; 13) Aedeagus, lateral lobe, lateral view. Scale bars: Figs. 4–8: 0.6 mm, 9–13: 0.15 mm.
Figs. 1–3 in Aleochara verecunda Sharp, 1876 Rediscovered from the Brazilian Amazon (Coleoptera: Staphylinidae: Aleocharinae)
Figs. 1–3. Aleochara (A.) verecunda. 1) Holotype, dorsal view; 2) Holotype labels; 3) Male, dorsal view. Scale bar
Fig. 10 in Larval Description and Phylogenetic Placement of the South African Endemic Genera Coelhydrus Sharp and Darwinhydrus Sharp (Coleoptera: Dytiscidae: Hydroporinae: Hyphydrini)
Fig. 10. One of the most parsimonious trees obtained from the cladistic analysis of nine terminal taxa of Hydroporinae, with character changes mapped for each clade (using ACCTRAN optimization). Solid rectangles indicate unique character state transformations; open rectangles indicate homoplasious character state transformations. Numbers outside parentheses are characters listed in Table 3; numbers within parentheses are character states as given in Table 3.
Figs. 7–8 in Larval Description and Phylogenetic Placement of the South African Endemic Genera Coelhydrus Sharp and Darwinhydrus Sharp (Coleoptera: Dytiscidae: Hydroporinae: Hyphydrini)
Figs. 7–8. Darwinhydrus solidus, instar III, metathoracic leg. 7) Anterior surface; 8) Posterior surface. Scale bar = 0.50 mm.
Figs. 1–2. Coelhydrus brevicollis, instar III. 1 in Larval Description and Phylogenetic Placement of the South African Endemic Genera Coelhydrus Sharp and Darwinhydrus Sharp (Coleoptera: Dytiscidae: Hydroporinae: Hyphydrini)
Figs. 1–2. Coelhydrus brevicollis, instar III. 1) Head capsule, dorsal view; 2) Abdominal segment VIII and proximal portion of urogomphi, dorsal view. Scale bars = 0.50 mm.
Detection of Intravascular Injection Between Blunt and Sharp Needles During Cervical Transforaminal Epidural Block.
ClinicalTrials.gov study NCT03286946. IPD Sharing: Not stated. Countries: 0. Publications: 0.
Study of the Efficacy of Sharp Debridement for the Management of Chronic Wounds
ClinicalTrials.gov study NCT00990522. IPD Sharing: Not stated. Countries: 0. Publications: 0.
Protecting Alzheimer Caregivers Using Technology Through Staying Sharp
ClinicalTrials.gov study NCT05260515. IPD Sharing: YES. Countries: 0. Publications: 0.
Sharp Risks in a Time of Crisis: Needle-Stick Injuries in Eastern Sudan Healthcare
ClinicalTrials.gov study NCT07143422. IPD Sharing: Not stated. Countries: 0. Publications: 0.
Safety And Efficacy Of Hydroxychloroquine For At Risk Population (SHARP) Against COVID-19
ClinicalTrials.gov study NCT04342156. IPD Sharing: NO. Countries: 0. Publications: 0.
Xist spatially amplifies SHARP recruitment to balance chromosome-wide silencing and specificity to the X chromosome
GEO Series GSE192574. Mus musculus. 31 samples. Type: Expression profiling by high throughput sequencing; Genome binding/occupancy profiling by high throughput sequencing.
Space-weather HMI Active Region Patch (SHARP)
SHARP stands for Space-weather HMI Active Region Patch. A SHARP is a DRMS series that contains (1) various space-weather quantities calculated from the photospheric vector magnetogram data and stored as FITS header keywords, and (2) 31 data segments (described in detail below), including each component of the vector magnetic field, the line-of-sight magnetic field, continuum intensity, doppler velocity, error maps and bitmaps. The data segments are not full-disk; rather, they are partial-disk, automatically-identified active region patches. SHARPs are calculated every 12 minutes. Often, there is more than one active region on the solar disk at any given time. Thus, SHARPs are indexed by two prime keys: time, T_REC, and HMI Active Region Patch Number, HARPNUM.
SHARP Near-Real-Time Cylindrical-Equal-Area Data
SHARP Near Real Time data in the Cylindrical Equal Area (CEA) Cartesian coordinate.SHARP stands for Space-weather HMI Active Region Patch. A SHARP is a DRMS series that contains (1) various space-weather quantities calculated from the photospheric vector magnetogram data and stored as FITS header keywords, and (2) 31 data segments (described in detail below), including each component of the vector magnetic field, the line-of-sight magnetic field, continuum intensity, doppler velocity, error maps and bitmaps. The data segments are not full-disk; rather, they are partial-disk, automatically-identified active region patches. SHARPs are calculated every 12 minutes. Often, there is more than one active region on the solar disk at any given time. Thus, SHARPs are indexed by two prime keys: time, T_REC, and HMI Active Region Patch Number, HARPNUM.The hmi.sharp_720s_cea_nrt and hmi.sharp_cea_720s data have been projected and remapped to a Cylindrical Equal Area (CEA) Cartesian coordinate system centered on the tracked active region. The size of the nrt regions will evolve with time. At each time step the definitive SHARPs will enclose the maximum extent of the region during it's disk passage. The three prime vector components are Bx, By, and Bz. HARP maps of 8 additional quantities are also provided at each time step: the three estimated component errors, the line-of-sight magnetogram, a Dopplergram, the continuum intensity, a map of the active pixels, and an estimate of the confidence in the disambiguation.
SHARP Near-Real-Time Data
SHARP Near Real Time data in CCD coordinates.SHARP stands for Space-weather HMI Active Region Patch. A SHARP is a DRMS series that contains (1) various space-weather quantities calculated from the photospheric vector magnetogram data and stored as FITS header keywords, and (2) 31 data segments (described in detail below), including each component of the vector magnetic field, the line-of-sight magnetic field, continuum intensity, doppler velocity, error maps and bitmaps. The data segments are not full-disk; rather, they are partial-disk, automatically-identified active region patches. SHARPs are calculated every 12 minutes. Often, there is more than one active region on the solar disk at any given time. Thus, SHARPs are indexed by two prime keys: time, T_REC, and HMI Active Region Patch Number, HARPNUM.Note that HARPNUMs in the nrt and defnitive data series will be different.
SHARP Cylindrical-Equal-Area Data
SHARP stands for Space-weather HMI Active Region Patch. A SHARP is a DRMS series that contains (1) various space-weather quantities calculated from the photospheric vector magnetogram data and stored as FITS header keywords, and (2) 31 data segments (described in detail below), including each component of the vector magnetic field, the line-of-sight magnetic field, continuum intensity, doppler velocity, error maps and bitmaps. The data segments are not full-disk; rather, they are partial-disk, automatically-identified active region patches. SHARPs are calculated every 12 minutes. Often, there is more than one active region on the solar disk at any given time. Thus, SHARPs are indexed by two prime keys: time, T_REC, and HMI Active Region Patch Number, HARPNUM.The hmi.sharp_720s_cea_nrt and hmi.sharp_cea_720s data have been projected and remapped to a Cylindrical Equal Area (CEA) Cartesian coordinate system centered on the tracked active region. The size of the nrt regions will evolve with time. At each time step the definitive SHARPs will enclose the maximum extent of the region during it's disk passage. The three prime vector components are Bx, By, and Bz. HARP maps of 8 additional quantities are also provided at each time step: the three estimated component errors, the line-of-sight magnetogram, a Dopplergram, the continuum intensity, a map of the active pixels, and an estimate of the confidence in the disambiguation.
FIGURE 1 in The first Sri Lankan species of Labomimus Sharp (Coleoptera: Staphylinidae: Pselaphinae)
FIGURE 1. Male habitus (A) and distribution (B) of Labomimus srilankensis. Scale bar: 1.0 mm.
ScienceDex guides
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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.