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.
35
datasets available to search
ShareScore release 0.9.0
Dataset results
35 results for “acanthocephalan”
Fig. 1 in Molecular and morphological confirmation of Profilicollis altmani as the cause of acanthocephalan peritonitis in California sea otters (Enhydra lutris nereis)
Fig. 1. Four acanthocephalan morphotypes and their prior identities observed in necropsied sea otters. (A) Corynosoma enhydri adult, (B) Profilicollis altmani, (C) Profilicollis kenti, (D) Profilicollis major. Modified from Hennessy (1972).
Fig. 3 in Molecular and morphological confirmation of Profilicollis altmani as the cause of acanthocephalan peritonitis in California sea otters (Enhydra lutris nereis)
Fig. 3. Maximum likelihood phylogeny generated from the concatenation of sequences of loci B and D. Species analyzed include: Adineta vaga, Profilicollis botulus/Profilicollis major (sample haplotypes 1 and 2 and GenBank (gb)), Polymorphus obtusus, Polymorphus minutus, Polymorphus trochus, Corynosoma enhydri, Polymorphus brevis, Profilicollis bullocki, and Profilicollis altmani (sample haplotype 1 and GenBank). Branch lengths are scaled to phylogenetic distance and nodes are labeled with bootstrap support values (n = 100 replicates).
Data files for: Huston, D.C. et al. 2021. Stable isotope signatures of an acanthocephalan and trematode from the herbivorous marine fish Kyphosus bigibbus (Perciformes: Kyphosidae). Journal of Parasitology. 107: 726–730
<p>Data files for the paper: Huston, D.C. et al. 2021. Stable isotope signatures of an acanthocephalan and trematode from the herbivorous marine fish Kyphosus bigibbus (Perciformes: Kyphosidae). Journal of Parasitology. 107(5) 726–730</p> <p>Includes raw data, .csv files for import of data into R, R script file, and excel spreadsheet file used to create Figure 1.</p>
Supplementary data files for: Huston, D.C., Cribb, T.H. and Smales, L.R. 20XX. Molecular characterisation of acanthocephalans from Australian marine teleosts: proposal of a new family, synonymy of another and transfer of taxa between orders. Systematic Parasitology, Jan 2020.
<p>These are the supplementary data files for the manuscript "<strong>Molecular characterisation of acanthocephalans from Australian marine teleosts: proposal of a new family, synonymy of another and transfer of taxa between orders." </strong>Published in the Journal Systematic Parasitology on the 7 of January 2020.</p> <p>Included are the Nexus and Phylip alignment files used for the phylogenetic analyses, and the resulting tree files (in nexus format).</p> <p> </p>
Fig. 1 in Mitochondrial DNA diversity in the acanthocephalan Prosthenorchis elegans in Colombia based on cytochrome c oxidase I (COI) gene sequence
Fig. 1. Photo showing the characteristic external morphology of Prosthenorchis elegans.
Data from: Proboscis profiler: a tool for detecting acanthocephalan morphotypes
Molecular studies conducted over the past 25 years have revealed previously unrecognised diversity in the phylum Acanthocephala. Several nominal species have been shown to represent complexes of morphologically cryptic biological species, a situation potentially confounding the analysis of ecological data. A software tool, 'Proboscis profiler', was developed to detect morphological heterogeneity in collections of superficially similar acanthocephalan worms based on the multivariate statistical analysis of proboscis hook dimensions. Proboscis profiler identifies objective, natural groups in a collection of acanthocephalans which may correspond to distinct biological species or populations. Initial trials demonstrate that Proboscis profiler can discriminate biological acanthocephalan species of the Echinorhynchus gadi Zoega in Müller, 1776 complex and differentiate between dorsal and ventral hook rows from the proboscis of E. salmonis Müller, 1784. Proboscis profiler is free software and can be downloaded from http://acanthocephala.sourceforge.net.
FIGURES 4–7 in Acanthocephalans of Amphibians and Reptiles (Anura and Squamata) from Ecuador, with the description of Pandosentis napoensis n. sp. (Neoechinorhynchidae) from Hyla fasciata
FIGURES 4–7. Micrographs of Pandosentis napoensis n. sp. 4. Proboscis, specimen 1. 5. Proboscis, specimen 2. 6. Specimen 1 ventral view. &. Lacuna system showing irregular diagonal lacunae connecting with circular canals. Scale bars: 4 = 20Μm; 5 & 7 = 40µm; 6 = 200Μm.
FIGURES 1–3. Pandosentis napoensis n in Acanthocephalans of Amphibians and Reptiles (Anura and Squamata) from Ecuador, with the description of Pandosentis napoensis n. sp. (Neoechinorhynchidae) from Hyla fasciata
FIGURES 1–3. Pandosentis napoensis n. sp. 1. Adult male, ventral view. 2. Proboscis armature, lateral view. 3. Longitudinal row of hooks, lateral view. Scale bars: 1 = 60µm; 2 = 25µm; 3 = 10µm.
FIGURE 1 in The acanthocephalan fauna of Iran, a check list
FIGURE 1. Map of Iran showing the provinces. * = Localities from which acanthocephalans have been reported.
Data from: Proboscis profiler: a tool for detecting acanthocephalan morphotypes
Open the record for dataset details and reuse information.
Fig. 3 in Acanthocephalans of the nominotypical subgenus of Plagiorhynchus (Plagiorhynchidae) from charadriiform birds in the collection of the Natural History Museum, London, with a key to the species of the subgenus
Fig. 3. Plagiorhynchus (Plagiorhynchus) charadrii (Yamaguti, 1939). A. Male, general view. B. Proboscis. C. Longitudinal rows of hooks (lateral view) and some posterior hooks (frontal view). Scale-bars: A, 1.0 mm; B, 0.2 mm; C, 0.1 mm.
Fig. 2 in Acanthocephalans of the nominotypical subgenus of Plagiorhynchus (Plagiorhynchidae) from charadriiform birds in the collection of the Natural History Museum, London, with a key to the species of the subgenus
Fig. 2. Plagiorhynchus (Plagiorhynchus) odhneri Lundström, 1942. A. Female, general view. B. Female, anterior end of trunk. C. Female, posterior end of trunk with terminal genital tract. D. Male, anterior end of trunk. E. Female, longitudinal row of hooks (lateral view). Scale-bars: A, 1.0 mm; B, C, D, 0.2 mm; E, 0.1 mm.
Supplemental files for: Huston, D.C. & Smales, L.R. Proposal of Spinulacorpus biforme (Smales, 2014) n. gen., n. comb. and the Spinulacorpidae n. fam. to resolve paraphyly of the acanthocephalan family Rhadinorhynchidae Lühe, 1912. Systematic Parasitology.
<p>Supplementary datafiles associated with phylogenetic analyses for the paper:</p> <p>Huston, D.C. & Smales, L.R. Proposal of <em>Spinulacorpus biforme </em>(Smales, 2014) n. gen., n. comb. and the Spinulacorpidae n. fam. to resolve paraphyly of the acanthocephalan family Rhadinorhynchidae Lühe, 1912.</p> <p>Accepted for publication in the journal Systematic Parasitology, on the 20 of June 2020.</p> <p>See 'READ_ME.txt' file for further explanation of contents of this upload.</p>
Figure. Sampling area. Table 1 in Nematode and acanthocephalan parasites of marine fish of the eastern Black Sea coasts of Turkey
Figure. Sampling area. Table 1. Statistical values of the parasites (L: locality, A: Artvin, R: Rize, T: Trabzon, EFN: examined fish number, IFN: infected fish number, TPN: total parasite number, %: prevalence, MA: mean abundance, MI: mean intensity).
Loss of species and genetic diversity during colonization: insights from acanthocephalan parasites in northern European seals
<p><em>Corynosoma</em> COI and RADseq data sets</p>
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.