Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
1,007
datasets available to search
ShareScore release 0.9.0
Dataset results
1,007 results for “Smoothing”
Figure 3 in Combined threats to native smooth-shelled mussels (genus Mytilus) in Australia: bioinvasions and hybridization
Figure 3. Discriminant analysis of principal component (DAPC) plot of SNP variation amongst Australian mussels with the inclusion of reference Northern and Southern hemisphere populations of Mytilus spp. sampling groups: (1) M. galloprovincialis, (2) Mytilus spp.: samples from New Zealand mainland with some Australian individuals, mainly from Port Arthur, Tasmania, (3) M. platensis, (4) M. chilensis, (5) M. edulis, (6) M. galloprovincialis × M. planulatus hybrids from Australia and (7) New Zealand offshore island samples (AUCB and CAMI). For details of group membership refer to Supporting Information, Table S6.
Figure 2 in Combined threats to native smooth-shelled mussels (genus Mytilus) in Australia: bioinvasions and hybridization
Figure 2. Neighbour joining (NJ) tree of the ten mussel samples from Australia, three from New Zealand and reference samples of Mytilus galloprovincialis, M. edulis, M. platensis, M. chilensis and M. trossulus, based on the FST matrix from allele frequencies of the SNP loci. NJ tree obtained with POPTREEW and visualized with MEGA v.6. Population/sample codes as shown in Table 1. For the Australian samples: -W, wild; -F, farmed. FST matrix details are presented in Supporting Information, Table S5.
Figure 7 in Combined threats to native smooth-shelled mussels (genus Mytilus) in Australia: bioinvasions and hybridization
Figure 7. Structure plot (K = 3) for Australian 'pure' native Mytilus planulatus pooled as one group (Austr.), two reference Northern hemisphere M. galloprovincialis samples (CAM, ORI), mainland New Zealand (AKAR) and offshore island lineages (AUCB, CAMI) of M. aoteanus. Plots constructed based on Australian individuals without admixture, identified by STRUCTURE and assigned to the M. planulatus cluster (q> 0.8). Each individual is represented by a single vertical line, samples are separated by a black vertical line, and site abbreviations (Table 1) are given along with reference taxon names.
Figure 4 in Combined threats to native smooth-shelled mussels (genus Mytilus) in Australia: bioinvasions and hybridization
Figure 4. Discriminant analysis of principal component (DAPC) plot of SNP variation amongst Australian mussels with the inclusion of reference Northern and Southern hemisphere populations of Mytilus spp. Sampling groups: (1) New Zealand mainland with some Australian individuals, mainly from Port Arthur, Tasmania, (2) reference M. galloprovincialis from the Mediterranean Sea and the North Atlantic Ocean with some Australian individuals, (3) New Zealand offshore island samples, (4) mixed status mussels from Australia (individuals from all ten sampled Australian sites) and some reference M. galloprovincialis from the Mediterranean Sea. For details of group membership refer to Supporting Information, Table S7.
Figure 1 in Combined threats to native smooth-shelled mussels (genus Mytilus) in Australia: bioinvasions and hybridization
Figure 1. Geographic locations of ten mussel sampling sites in Australia. See Table 1 for details of site codes, numbers of individuals per location, and origin: -W, wild; -F, farmed mussels.
FIGURE 6 in Devonian smooth-walled tasmanids and new insights of life-cycle descriptions through fluorescence microscopy
FIGURE 6. Life stage interpretative drawings based off of interpretation schematic of modern marine algal cysts (Bravo and Figueroa, 2014). 6a: image of tasmanid in a vegetative stage; 6b: image of a tasmanid in a gamete sack stage; 6c image of a tasmanid in a dividing cyst stage; 6d: image of a tasmanid in a resting cyst stage.
FIGURE 3 in Devonian smooth-walled tasmanids and new insights of life-cycle descriptions through fluorescence microscopy
FIGURE 3. Transmitted and incident light images of silica-rich microspherules retrieved from the Oatka Creek Formation, Leroy, New York. 1a–c conjoined or splitting tasmanid containing internal pyritic inclusions, interpreted to be a dividing cyst; 2a–c single tasmanid with no pyritic inclusions but numerous surficial punctae, interpreted to be a vegetative cyst; 3a–c tasmanid with well defined internal structure interpreted to be a resting cyst. Images taken at a magnification of 10x, average diameter of all cysts, 125 µm.
FIGURE 2 in Devonian smooth-walled tasmanids and new insights of life-cycle descriptions through fluorescence microscopy
FIGURE 2. Transmitted and incident light images of silica-rich microspherules retrieved from the Oatka Creek Formation, Leroy, New York. Internal to external (left to right) focal point shift imaging approach allows for internal structures at different points within the tasmanid to be imaged: 1a–e: internal pyritic inclusions imaged throughout single tasmanid, inclusions interpreted to be portions of gamete stage internal strucres; 2a–e, surface punctae visible (2a) in addition to internal pyritic inclusions; 3 a–e conjoined or splitting tasmanid containing internal pyritic inclusions. Images taken at a magnification of 10x, average diameter of all cysts, 125 µm.
FIGURE 5 in Devonian smooth-walled tasmanids and new insights of life-cycle descriptions through fluorescence microscopy
FIGURE 5. Fluorescence microscopy images of select silica-rich microspherules from the Oatka Creek Formation, Leroy, New York. 5a: tasmanid interpreted to be a gamete sack; 5b" tasmanid interpreted to be a diving stage cyst.
FIGURE 1 in Devonian smooth-walled tasmanids and new insights of life-cycle descriptions through fluorescence microscopy
FIGURE 1. Large scale map of New York state denoting the location of the study area within the region; detail inset of the study location of sampling in Oatka Creek in the city of Leroy, New York; generalized stratigraphic section of Eifellian to Givetian formations of Leroy, New York found within Oatka Creek.
FIGURE 4 in Devonian smooth-walled tasmanids and new insights of life-cycle descriptions through fluorescence microscopy
FIGURE 4. Fluorescence microscopy images of select silica-rich microspherules from the Oatka Creek Formation, Leroy, New York. Black and white arrows denote locations of diminutive spherules within endocysts. Yellow arrows denote the edge of the external wall. Average diameter of tasmanid 4a–c is 125 µm; 4d diameter is 50 µm; 4e tasmanid diameter is 125 µm; 4f tasmanid horizontal diameter is 120 µm with a height of ~130 µm.
FIGURE. Petalidium lucens, flower and leaf morphology. A. Flower in front view. B. Flower in lateral view. C. Older leaves, relatively smooth adaxially. D. Relatively young leaves with greyish indumentum. Scale bar = 5 mm. Photographs by W. Swanepoel. in Petalidium mannheimerae (Acanthaceae), a new species from Namibia and South Africa, with notes on the taxonomic identity of P. parvifolium
FIGURE. Petalidium lucens, flower and leaf morphology. A. Flower in front view. B. Flower in lateral view. C. Older leaves, relatively smooth adaxially. D. Relatively young leaves with greyish indumentum. Scale bar = 5 mm. Photographs by W. Swanepoel.
FIGURE 3. Agave infiernilloensis. A. Finely denticulate margin. B. Nearly smooth margin. C-D. Habitat. E in Agave infiernilloensis (sect. Choritepalae, Asparagaceae), a gigantic new species from the Balsas Basin in Western Mexico
FIGURE 3. Agave infiernilloensis. A. Finely denticulate margin. B. Nearly smooth margin. C-D. Habitat. E. Lower face of the leaf. F. Rosette. G. Fruits. Photographs by Julia Etter & Martin Kristen.
HL-192-1 Carved and smoothed whale bone
Carved and smoothed whale bone fragment. Hot Springs Village, Port Moller, Alaska CAT# HL-192-1 Okada excavations HL02. Hot Springs 2B 500-850 CE The Hot Springs site is a massive village on the shore of Port Moller, on the Alaska Peninsula side of the southern Bering Sea. It was excavated by several different teams over the last 100 years. The main occupations are from 2000 BCE-1000 BCE, and from 100 CE to 800 CE. The Hot Springs artifacts are presented as a result of the research conducted under grants NSF 0137756, NSF 1204020, NSF 1139266, and NSF 1321411. H. Maschner, Principal Investigator. Original digitizing work done at the IVL at Id. St. Univ. Subsequent processing completed at Global Digital Heritage. These artifacts were scanned with either a Faro Edge Arm or a Minolta Vivid 9i. Processed in Geomagic or Polyworks. 4-8 photos were used for texture in Geomagic Wrap. Source: Objaverse 1.0 / Sketchfab
Pee Dee Smoothed-Over Stamped Jar (313p2373)
**Pee Dee Smoothed-Over Stamped jar** Location: Town Creek site (31Mg2-3), Montgomery County, North Carolina. Period: Mississippian (AD 1150-1400). Material: ceramic. Dimensions: length, 338.0 mm; width, 275.0 mm; thickness, 9.6 mm. Notes: Catalog no. 313p2373, North Carolina Archaeological Collection, Research Laboratories of Archaeology, University of North Carolina at Chapel Hill. Model by Abigail Gancz. Source: Objaverse 1.0 / Sketchfab
Smoothing plane prop
An old and worn smoothing plane for all your wood smoothing needs. Texture = 1 X 4096 x 4096. Source: Objaverse 1.0 / Sketchfab
FIGURE 5 in A new species of smooth-skinned Spinomantis frog (Anura: Mantellidae) from south-eastern Madagascar
FIGURE 5. Spectrogram (FFT 256; Hanning) and oscillograms of the advertisement call of Spinomantis beckei sp. nov., recorded on 28 January 2005 at Andohahela, 1650 m a.s.l., air temperature <20°C. Above: 1000 ms section of a single call showing amplitude and frequency modulation of notes within the call. Below: oscillogram of a 6000 ms section showing the temporal pattern of a call series and variation of calls. Coloured bars in the spectrogram indicate terminology as used in the call description.
FIGURE 4 in A new species of smooth-skinned Spinomantis frog (Anura: Mantellidae) from south-eastern Madagascar
FIGURE 4. Comparative living specimens of Spinomantis bertini from Andohahela National Park, near the type locality Isaka- Ivondro (between Isaka-Ivondro and Eminiminy, ca. 715 m a.s.l.). Photos not reliably assignable to vouchers specimens, but part of the series from this locality is included in the phylogenetic tree (Fig. 1). Probably all specimens are females or subadult specimens (a photo of an adult male with distinct femoral glands is shown in Andreone & Randriamahazo 1997).
FIGURE 1 in A new species of smooth-skinned Spinomantis frog (Anura: Mantellidae) from south-eastern Madagascar
FIGURE 1. Maximum Likelihood phylogenetic tree based on 435 base pairs of the mitochondrial 16S rRNA gene showing relationships among the four deep lineages identified within the Spinomantis bertini complex. Spinomantis aglavei was used as outgroup. Numbers at nodes are percentages of bootstrap pseudoreplicates. The inset map shows approximate location of the collecting sites of specimens represented in the tree. The grey box shows the clade from the Andohahela Massif. Five specimens of S. bertini (FGZC 147‾150 and 153) have been deposited in the UADBA collection (final catalogue numbers not yet available). For ZSM catalogue numbers of other specimens, see Table 2.
FIGURE 3 in A new species of smooth-skinned Spinomantis frog (Anura: Mantellidae) from south-eastern Madagascar
FIGURE 3. Preserved name-bearing type specimens of Spinomantis bertini and S. beckei sp. nov. (A) Dorsal, (B) ventral, and (C) lateral view of preserved holotype of Spinomantis bertini (MNHN 1935.168). Photograph courtesy of MNHN/Antoine Fraysse, 2015. (D) Dorsal, (E) ventral and (F) lateral view of preserved holotype of Spinomantis beckei (ZSM 173/2005). All scale bars correspond to 5 mm.
ScienceDex guides
Understand access before you commit
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.