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.
97
datasets available to search
ShareScore release 0.7.1
Dataset results
97 results for “Caecum”
FIGURE 1 in Caecum wakense: a new Caecidae (Gastropoda: Caenogastropoda) from Wake Atoll (Pacific Ocean)
FIGURE 1. Caecum wakense sp. nov.: A–B. Holotype, LACM 2905, C–D. Paratypes, LACM 2906.
Figure 4 from: Lima SFB, Christoffersen ML (2016) Redescription and designation of a neotype for Caecum floridanum (Littorinimorpha, Truncatelloidea, Caecidae) with a characterization of the protoconch and growth stages. ZooKeys 585: 17-31. https://doi.org/10.3897/zookeys.585.7646
Figure 4 - Hypothesis in the reconstruction of growth stages and synonyms of Caecum floridanum: A Protoconch to teleoconch IV B Sculpture of teleoconch I C Sculpture of teleoconch II to IV D Caecum irregular, teleoconch IV (syntype – MNHN 25729) E Caecum phronimum at different growth stages, teleoconch II to III (syntype – MNHN 25728) F Caecum compactum, teleoconch IV (USNM 83590) G–H Caecum puntagordanum (holotype – PRI 26107 and paratype – PRI 26108, respectively), teleoconch IV. Measures and scale bars: A protoconch and first half of teleoconch I (Bandel 1996: pl. 7, fig. 7, 0.7 mm), second half of teleoconch II to III (200 µm), teleoconch IV (500 µm), 100 µm (B–C), 500 µm (D–E), 1 mm (F–H)
Figure 3 from: Lima SFB, Christoffersen ML (2016) Redescription and designation of a neotype for Caecum floridanum (Littorinimorpha, Truncatelloidea, Caecidae) with a characterization of the protoconch and growth stages. ZooKeys 585: 17-31. https://doi.org/10.3897/zookeys.585.7646
Figure 3 - Scanning electron micrographs of Caecum floridanum shells at different growth stages and operculum: A Teleoconch II to III (MORG 41.867) B Truncation region between teleoconch II and III (A) C Teleoconch II to III (IBUFRJ 18376) D–F Teleoconch IV (E–F Arrows pointing to last three to four axial ribs at anterior end) (D–F IBUFRJ 18376) G Operculum, outer surface (IBUFRJ 7408) H Operculum, inner surface (IBUFRJ 7408). Scale bars: 500 µm (A, C, E–H), 100 µm (B, I), 200 µm (D).
Figure 1 from: Lima SFB, Christoffersen ML (2016) Redescription and designation of a neotype for Caecum floridanum (Littorinimorpha, Truncatelloidea, Caecidae) with a characterization of the protoconch and growth stages. ZooKeys 585: 17-31. https://doi.org/10.3897/zookeys.585.7646
Figure 1 - Photos of Caecum floridanum, teleoconch IV (neotype, ANSP 407671): A–B lateral view C Apical region showing mucro D Detail of longitudinal lines and axial interspaces/ribs E Anterior region view F Operculum (outer surface view) G Operculum (internal surface view). Scale bars: 500 μm (A–B), 200 μm (C, E), 100 μm (D, F–G).
Figure 2 from: Lima SFB, Christoffersen ML (2016) Redescription and designation of a neotype for Caecum floridanum (Littorinimorpha, Truncatelloidea, Caecidae) with a characterization of the protoconch and growth stages. ZooKeys 585: 17-31. https://doi.org/10.3897/zookeys.585.7646
Figure 2 - Scanning electron micrographs of Caecum floridanum shells at different growth stages: A–B Protoconch and teleoconch I (Bandel 1996: pl. 7, fig. 8, 0.3 mm, fig. 7, 0.7 mm, respectively) C Teleoconch II to IV (IBUFRJ 12687) D Teleoconch II to IV (IBUFRJ 12689) E Teleoconch II to IV (MORG 41.867) F Truncation region between teleoconch II and III G Truncation region between teleoconch II and III. Scale bars: 500 μm (C–E), 100 μm (F), 50 μm (G).
Data from: Expression of taste signal transduction molecules in the caecum of common marmosets
Open the record for dataset details and reuse information.
Eimeria falciformis infection of the mouse caecum identifies opposing roles of IFNg-regulated host pathways for the parasite development
GEO Series GSE49948. Mus musculus. 12 samples. Type: Expression profiling by array.
Identification of microRNA expression profiles in the gill, intestine and hepatic caecum of amphioxus
GEO Series GSE87094. Branchiostoma belcheri. 3 samples. Type: Non-coding RNA profiling by array.
RNA-sequencing data of caecum tissue of mice infected with helminths and administered garlic extract
GEO Series GSE178499. Mus musculus. 19 samples. Type: Expression profiling by high throughput sequencing.
RNA sequencing data of mouse caecum tissue following different dietary treatments
GEO Series GSE281400. Mus musculus. 43 samples. Type: Expression profiling by high throughput sequencing.
FIGURE 98. Caecum magellanicum. A in A Rosetta Stone for eastern Pacific Caecidae (Gastropoda: Caenogastropoda)
FIGURE 98. Caecum magellanicum. A. Conceptual reconstruction of growth stages. B. Species distribution map.
Fig. 5 in Rediscovery of an internal organ in heart urchins (Echinoidea: Spatangoida): morphology and evolution of the intestinal caecum
Fig. 5 Occurrence of the intestinal caecum in heart urchins (Echinoidea: Spatangoida). a An intestinal caecum is found only in the Schizasteridae (Spatangoida: Paleopneustina). b Distribution of the intestinal caecum among schizasterids. Both phylogenetic trees show the results of an analysis based on morphological characters (Stockley et al. 2005). The three genera mentioned as incertae sedis were not part of the cited phylogenetic study. Black-framed box genus analyzed in the present study, black square hypothetical evolutionary event, black star intestinal caecum present in all species analyzed, black-framed star intestinal caecum present only in some of the analyzed species, cross fossil taxon, R! loss of structure
Fig. 2 in Rediscovery of an internal organ in heart urchins (Echinoidea: Spatangoida): morphology and evolution of the intestinal caecum
Fig. 2 Gross morphology and histology of the digestive tract of Brisaster. a Schematic frontodorsal view of the digestive tract of B. latifrons, modified after De Ridder et al. (1985). b Oral view of the digestive tract of B. antarcticus. Part of the stomach removed (stippled line) to expose the intestinal caecum. Ambulacrum III facing upwards. c–h Histological sections through the posterior digestive tract of B. latifrons, their approximate locations indicated in (b). c Intestine. d Intestinal caecum. e Vacuoles inside the simple columnar epithelium of the intestinal caecum. f Part of the canal connecting intestinal caecum and intestine. g Mesenterial suspension of the intestinal caecum. h Rectum. Table 2 provides additional specimen information. ae anterior esophagus, bc buccal cavity, ca canal, ct connective tissue, ep epithelium, gc gastric caecum, ic intestinal caecum, in intestine, lu lumen of the digestive tract, me mesentery, nu nucleus, pe posterior esophagus, re rectum, si primary siphon, so somatocoel, va vacuole
LAKTP_MTO orthotopic primary caecum tumours from Galunisertib-treated C57BL/6J mice
GEO Series GSE103562. Mus musculus. 20 samples. Type: Expression profiling by array.
MGH_Exp1_ Caecum_Day 38
Open the record for dataset details and reuse information.
MGH_Exp1_ Caecum_Day 14
Open the record for dataset details and reuse information.
MGH_Exp1_ Caecum_Day 7
<p>MGH EXp1 sequencing data from run NAMES01.</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.