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.
273
datasets available to search
ShareScore release 0.9.0
Dataset results
273 results for “Hirudinida”
Figure 1 from: Nakano T (2012) A new species of Orobdella (Hirudinida, Arhynchobdellida, Gastrostomobdellidae) and redescription of O. kawakatsuorum from Hokkaido, Japan with the phylogenetic position of the new species. ZooKeys 169: 9-30. https://doi.org/10.3897/zookeys.169.2425
Figure 1 - Map showing the collection localities of Orobdella koikei sp. n. and Orobdella kawakatsuorum Richardson, 1975. Black triangles indicate the localities of Orobdella koikei; black circles indicate those of Orobdella kawakatsuorum 1 type locality of Orobdella kawakatsuorum; and 2 type locality of Orobdella koikei.
Figure 8 from: Nakano T (2012) A new species of Orobdella (Hirudinida, Arhynchobdellida, Gastrostomobdellidae) and redescription of O. kawakatsuorum from Hokkaido, Japan with the phylogenetic position of the new species. ZooKeys 169: 9-30. https://doi.org/10.3897/zookeys.169.2425
Figure 8 - Orobdella kawakatsuorum Richardson, 1975, collected from near the type locality, KUZ Z167, taken of live animal, dorsal view.
Figure 2 from: Nakano T, Lai Y (2012) A new species of Orobdella (Hirudinida, Arhynchobdellida, Orobdellidae) from Taipei, Taiwan. ZooKeys 207: 49-63. https://doi.org/10.3897/zookeys.207.3334
Figure 2 - Orobdella ketagalan sp. n., holotype, KUZ Z208. A Dorsal and B ventral views. Scale bar, 5 mm.
Figure 4 from: Nakano T, Lai Y (2012) A new species of Orobdella (Hirudinida, Arhynchobdellida, Orobdellidae) from Taipei, Taiwan. ZooKeys 207: 49-63. https://doi.org/10.3897/zookeys.207.3334
Figure 4 - Orobdella ketagalan sp. n., holotype, KUZ Z208. A Dorsal view of reproductive system including ventral nervous system B lateral view of bulb of right sperm duct C dorsal D lateral, and E ventral views of male atrium: C including position of ganglion XI; and F dorsal view of female reproductive system including position of ganglion III. Scale bars, 1 mm (A), 0.5 mm (C–F), and 0.25 mm (B). Abbreviations: at, atrium; cod, common oviduct; gp, gastropore; o, ovisac; od, oviduct; sd, sperm duct; sdb, sperm duct bulb; and ts, testisacs.
Figure 3 from: Nakano T, Lai Y (2012) A new species of Orobdella (Hirudinida, Arhynchobdellida, Orobdellidae) from Taipei, Taiwan. ZooKeys 207: 49-63. https://doi.org/10.3897/zookeys.207.3334
Figure 3 - Orobdella ketagalan sp. n., holotype, KUZ Z208. A Dorsal and B ventral views of somites I–VIII C dorsal and D ventral views of somites XXV–XXVII and caudal sucker E ventral view of somites X b5–XIII F ventral view of gastroporal duct; and G ventral view of gastropore and female gonopore. Scale bars, 1 mm (A–F) and 0.25 mm (G). Abbreviations: an, anus; cl, clitellum; cp, crop; fp, female gonopore; gd, gastroporal duct; gp, gastropore; mp, male gonopore; np, nephridiopore; and ph, pharynx.
Figure 5 from: Nakano T, Lai Y (2012) A new species of Orobdella (Hirudinida, Arhynchobdellida, Orobdellidae) from Taipei, Taiwan. ZooKeys 207: 49-63. https://doi.org/10.3897/zookeys.207.3334
Figure 5 - The BI tree of 3790 bp of nuclear 18S rDNA and histone H3, and mitochondrial COI, 12S rDNA, tRNAVal, 16S rDNA. A species name in green indicates a quadrannulate species; in red, sexannulate; and in blue, octannulate. The numbers associated with the nodes represent the bootstrap values for ML (BS) and Bayesian posterior probabilities (BPPs). BSs higher than 70 % and/or BPPs higher than 95 % are indicated. Abbreviations: JPN, Japan; and TWN, Taiwan.
Figure 4 from: Nakano T (2012) A new sexannulate species of Orobdella (Hirudinida, Arhynchobdellida, Orobdellidae) from Yakushima Island, Japan. ZooKeys 181: 79-93. https://doi.org/10.3897/zookeys.181.2932
Figure 4 - Orobdella mononoke sp. n., holotype, KUZ Z224. A Dorsal view of somites I–VIII B ventral view of somites I–VIII C dorsal view of somites XXV–XXVII and caudal sucker D ventral view of somites XXV–XXVII and caudal sucker E ventral view of somites XI–XIII F ventral view of gastroporal duct; and G ventral view of gastropore and female gonopore. Scale bars, 2 mm (A–F) and 0.5 mm (G). Abbreviations: an, anus; cp, crop; fp, female gonopore; gd, gastroporal duct; gp, gastropore; mp, male gonopore; np, nephridiopore; and ph, pharynx.
Figure 3 from: Nakano T (2012) A new sexannulate species of Orobdella (Hirudinida, Arhynchobdellida, Orobdellidae) from Yakushima Island, Japan. ZooKeys 181: 79-93. https://doi.org/10.3897/zookeys.181.2932
Figure 3 - Orobdella mononoke sp. n., holotype, KUZ Z224. A Dorsal and B ventral views. Scale bar, 1 cm.
Figure 6 from: Nakano T (2012) A new sexannulate species of Orobdella (Hirudinida, Arhynchobdellida, Orobdellidae) from Yakushima Island, Japan. ZooKeys 181: 79-93. https://doi.org/10.3897/zookeys.181.2932
Figure 6 - The ML tree of 4167 bp of nuclear 18S rDNA and histone H3 and mitochondrial COI, tRNACys, tRNAMet, 12S rDNA, tRNAVal and 16S rDNA. A species name in green indicates a quadrannulate species; in red, sexannulate; and in blue, octannulate. The numbers associated with the nodes represent the bootstrap values for ML (BS)/ and Baysian posterior probabilities (BPPs). BS higher than 70% and/or BPP higher than 95% are indicated.
Figure 5 from: Nakano T (2012) A new sexannulate species of Orobdella (Hirudinida, Arhynchobdellida, Orobdellidae) from Yakushima Island, Japan. ZooKeys 181: 79-93. https://doi.org/10.3897/zookeys.181.2932
Figure 5 - Orobdella mononoke sp. n., holotype, KUZ Z224. A Dorsal view of reproductive system including ventral nervous system B dorsal view of male atrium including position of ganglion XI C lateral view of male atrium D ventral view of male atrium; and E dorsal view of female reproductive system including position of ganglion XIII. Scale bars, 5 mm (A) and 1 mm (B–E). Abbreviations: ac, atrial cornu; at, atrium; cod, common oviduct; ed, ejaculatory duct; ep, epididymis; gp, gastropore; o, ovisac; od, oviduct; and ts, testisac.
Figure 5 from: Moser B, T. Briggler J, J. Richardson D, D. Schuette C, I. Hammond C, A. Hopkins W, A. Lazo-Wasem E (2013) Redescription and molecular characterization of Placobdella cryptobranchii (Johnson & Klemm, 1977) (Glossiphoniidae, Hirudinida). ZooKeys 338: 1-10. https://doi.org/10.3897/zookeys.338.5995
Figure 5 - Internal anatomy of Placobdella cryptobranchii (USNM 1223088), ventral view, atrial cornuae (AC), ejaculatory duct (ED), intestinal ceca (IC), ovisac (O), proboscis (Pr), rectum (R),salivary cells (Sc), testisac (T1–T6). Scale bar equals 2 mm.
Figure 2 from: Moser B, T. Briggler J, J. Richardson D, D. Schuette C, I. Hammond C, A. Hopkins W, A. Lazo-Wasem E (2013) Redescription and molecular characterization of Placobdella cryptobranchii (Johnson & Klemm, 1977) (Glossiphoniidae, Hirudinida). ZooKeys 338: 1-10. https://doi.org/10.3897/zookeys.338.5995
Figure 2 - Holotype specimen of Placobdella cryptobranchii, USNM 54365, pre-anal papillae (arrows). Scale bar equals 0.5 mm.
Figure 1 from: Moser B, T. Briggler J, J. Richardson D, D. Schuette C, I. Hammond C, A. Hopkins W, A. Lazo-Wasem E (2013) Redescription and molecular characterization of Placobdella cryptobranchii (Johnson & Klemm, 1977) (Glossiphoniidae, Hirudinida). ZooKeys 338: 1-10. https://doi.org/10.3897/zookeys.338.5995
Figure 1 - Holotype specimen of Placobdella cryptobranchii, USNM 54365, dorsal surface. Scale bar equals 2 mm.
Figure 3 from: Moser B, T. Briggler J, J. Richardson D, D. Schuette C, I. Hammond C, A. Hopkins W, A. Lazo-Wasem E (2013) Redescription and molecular characterization of Placobdella cryptobranchii (Johnson & Klemm, 1977) (Glossiphoniidae, Hirudinida). ZooKeys 338: 1-10. https://doi.org/10.3897/zookeys.338.5995
Figure 3 - Dorsal surface of Placobdella cryptobranchii. A Living, YPM IZ 06339 B Preserved, YPM IZ 06340. Scale bar equals 2 mm.
Figure 4 from: A. Hopkins W, Moser B, Garst D, J. Richardson D, I. Hammond C, A. Lazo-Wasem E (2014) Morphological and molecular characterization of a new species of leech (Glossiphoniidae, Hirudinida): Implications for the health of its imperiled amphibian host (Cryptobranchus alleganiensis). ZooKeys 378: 83-101. https://doi.org/10.3897/zookeys.378.6545
Figure 4 - Internal anatomy of Placobdella appalachiensis sp. n., Paratype USNM 1232939 collected from an adult eastern hellbender (Cryptobranchus alleganiensis) from stream reach A3 in southwest Virginia, USA. Ventral view, atrial cornuae (AC), ejaculatory duct (ED), intestinal ceca (IC), proboscis (Pr), testisac (T). Scale bar equals 2 mm.
Figure 3 from: A. Hopkins W, Moser B, Garst D, J. Richardson D, I. Hammond C, A. Lazo-Wasem E (2014) Morphological and molecular characterization of a new species of leech (Glossiphoniidae, Hirudinida): Implications for the health of its imperiled amphibian host (Cryptobranchus alleganiensis). ZooKeys 378: 83-101. https://doi.org/10.3897/zookeys.378.6545
Figure 3 - Ventral surface of Placobdella appalachiensis sp. n., Holotype USNM 1232924 collected from an adult eastern hellbender (Cryptobranchus alleganiensis) from stream reach A3 in southwest Virginia, USA. Scale bar equals 1 mm.
Figure 1 from: A. Hopkins W, Moser B, Garst D, J. Richardson D, I. Hammond C, A. Lazo-Wasem E (2014) Morphological and molecular characterization of a new species of leech (Glossiphoniidae, Hirudinida): Implications for the health of its imperiled amphibian host (Cryptobranchus alleganiensis). ZooKeys 378: 83-101. https://doi.org/10.3897/zookeys.378.6545
Figure 1 - Map of two streams in southwest Virginia, USA where hellbenders were collected from 8 stream reaches over 3 consecutive years. Leeches were only detected in stream reach A3.
Figure 2 from: A. Hopkins W, Moser B, Garst D, J. Richardson D, I. Hammond C, A. Lazo-Wasem E (2014) Morphological and molecular characterization of a new species of leech (Glossiphoniidae, Hirudinida): Implications for the health of its imperiled amphibian host (Cryptobranchus alleganiensis). ZooKeys 378: 83-101. https://doi.org/10.3897/zookeys.378.6545
Figure 2 - Dorsal surface of Placobdella appalachiensis sp. n., Holotype USNM 1232924 collected from an adult eastern hellbender (Cryptobranchus alleganiensis) from stream reach A3 in southwest Virginia, USA. Scale bar equals 1 mm.
Figure 5 from: A. Hopkins W, Moser B, Garst D, J. Richardson D, I. Hammond C, A. Lazo-Wasem E (2014) Morphological and molecular characterization of a new species of leech (Glossiphoniidae, Hirudinida): Implications for the health of its imperiled amphibian host (Cryptobranchus alleganiensis). ZooKeys 378: 83-101. https://doi.org/10.3897/zookeys.378.6545
Figure 5 - Relationship between total body length (cm) of eastern hellbenders (Cryptobranchus alleganiensis) and the number of leeches (Placobdella appalachiensis sp. n.) they harbored. All hellbenders were collected from stream reach A3 in southwest Virginia, USA.
Figure 8 from: Tubtimon J, Jeratthitikul E, Sutcharit C, Kongim B, Panha S (2014) Systematics of the freshwater leech genus Hirudinaria Whitman, 1886 (Arhynchobdellida, Hirudinidae) from northeastern Thailand. ZooKeys 452: 15-33. https://doi.org/10.3897/zookeys.452.7528
Figure 8 - Phylogenetic relationships of the genus Hirudinaria and their related species, with chromosome number data. Tree topology was obtained from ML analysis based on a 658 bp fragment of the mitochondrial COI gene (DNA barcode region). Nodes with a 0.95 or higher bipartition posterior probability for BI and/or 70% or higher bootstrap value for ML were regarded as sufficiently resolved nodes, and are shown for the major clades (ML/BI). Numbers in parentheses refer to sampling localities in Figure 1 and the list in Table 1. Chromosome data of the related species were taken from Vitturi et al. (2002) and Utevsky et al. (2009).
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.