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Medical imaging (X-ray, CT, MRI), electronic health records, clinical trials, ECG/EEG, pathology
14,812 datasets
737 slice X-ray CT scans of a Pseudacteon obtusus (fire ant decapitating fly) specimen affixed to a toothpick, scanned on 29 May 2014. The data was produced by The University of Texas High-Resolution X-ray CT Facility (UTCT) for researchers at the Brackenridge Field Lab. Voxel resolution is 0.00229 mm in X, Y, and Z dimensions.
The University of Texas High-Resolution X-ray CT Facility (UTCT) provides a high-resolution X-ray CT scan of a carbonado diamond specimen. The scan comprises 970 slices with a voxel size of 1.02 µm, captured on 19 September 2010. This research was supported in part by National Science Foundation grant EAR-0948842.
The University of Texas High-Resolution X-ray CT Facility (UTCT) produced this collection of X-ray CT scans for a single, uncatalogued Arizona rhino beetle specimen. The data consists of 883 slices with a voxel size of 37.92 microns in all dimensions, scanned on 22 December 2010 for researchers at Arizona State University.
A 3-micron resolution X-ray CT scan of a tiny chip from the CM2 Murchison chondrite meteorite, specimen USNM 5487. The dataset contains 889 total slices, scanned at The University of Texas High-Resolution X-ray CT Facility on 26 January 2015. This high-resolution volumetric data was created for Romy Hanna of UT DOGS with support from NASA grant NNX13AO64H.
The University of Texas High-Resolution X-ray CT Facility (UTCT) provides X-ray CT scans of a baby pineapple (Ananas comosus). The dataset contains 480 slices with a voxel size of 0.0203mm in X and Y and 0.2188mm in Z, scanned on 04 April 2002 for the Royal Botanic Gardens, Kew.
The University of Texas High-Resolution X-ray CT Facility (UTCT) produced this X-ray CT scan of a tiny chip from the CM2 Murchison chondrite meteorite (specimen USNM 5487). The scan contains 1615 slices with a voxel size of 7.15 microns in all dimensions, captured on 9 January 2015. Data use requires acknowledgment of UTCT, NASA grant NNX13AO64H, and Dr. Romy Hanna.
985 slices from an X-ray CT scan of a carbonado diamond specimen weighing 23.45 carats. The scan was performed by Richard Ketcham at the University of Texas High-Resolution X-ray CT Facility on 18 September 2010, with a voxel size of 2.06 µm. This research was supported by National Science Foundation grant EAR-0948842.
252 high-resolution X-ray CT slices of a Nicrophorus americanus specimen scanned on 6 May 2005. The University of Texas High-Resolution X-ray CT Facility produced this data with a voxel size of 0.04589mm in X and Y and 0.04983mm in Z. This dataset provides a detailed 3D anatomical model of the endangered American burying beetle for morphological study.
Central African Republic specimen scanned on 31 July 2008 by the University of Texas High-Resolution X-ray CT Facility. The dataset contains 1024 slices with a voxel size of 5.36 micrometers. This research was supported by National Science Foundation grant EAR-0948842.
X-ray CT scans of a chip from Martian shergottite meteorite LAR 12095,40. The data was scanned by Scott Eckley at NASA's Johnson Space Center on 3 January 2020 with a voxel size of 8.57 µm. The dataset is hosted by the Texas Data Repository and was last updated in March 2024.
The University of Texas High-Resolution X-ray CT Facility (UTCT) provides an X-ray CT scan of a carbonado diamond specimen. The scan comprises 745 slices with a voxel size of 29.18 µm, captured on 2 October 2008. This research was supported in part by National Science Foundation grant EAR-0948842.
994 high-resolution X-ray CT slices of a carbonado diamond specimen from the Central African Republic, scanned on 19 September 2010. The data was produced by the University of Texas High-Resolution X-ray CT Facility (UTCT) for researchers Richard Ketcham and Christian Koeberl. Each voxel in the 3D scan has a resolution of 5.47 micrometers.
The University of Texas High-Resolution X-ray CT Facility (UTCT) provides a 3D X-ray computed tomography scan of a carbonado diamond specimen named carbE_A. The dataset consists of 745 slices with a voxel size of 29.18 micrometers, scanned on 2 October 2008. This research was supported by National Science Foundation grant EAR-0948842.
X-ray computed tomography scans of a chip from Martian shergottite meteorite LAR 12011,54. The data was scanned by Scott Eckley at NASA's Johnson Space Center on January 3, 2020, with a voxel size of 12.49 micrometers. The dataset is hosted by the Texas Data Repository and was last updated in March 2024.
887 slices of X-ray CT scans capture the internal structure of a Calcarina sp. foraminifera specimen from the Philippines. The University of Texas High-Resolution X-ray CT Facility scanned the specimen on 12 October 2010 with a voxel size of 3.27 microns. These data were produced for GSA and Xradia testing, supported by NSF grant IIS-0208675.
The University of Texas High-Resolution X-ray CT Facility provides a volumetric scan of a Polistes sp. wasp specimen. The dataset contains 540 slices with voxel sizes of 0.01464mm in X and Y dimensions and 0.0322mm in Z. The scan was performed by Matthew Colbert and Philip Watson on 13 December 2004 for Dr. Timothy Rowe.
1016 slices of X-ray CT data capture the internal structure of the Murchison meteorite (USNM 5487), a CM2 chondrite. The University of Texas High-Resolution X-ray CT Facility scanned the specimen on 28 February 2012 with a voxel size of 0.0537mm in X/Y and 0.05816mm in Z. This dataset was produced with support from NASA grant NNX13AO64H and requires acknowledgment of UTCT and Dr. Romy Hanna.
The University of Texas High-Resolution X-ray CT Facility (UTCT) produced 161 X-ray CT slices of a Quercus robur (English oak) wood sample. The sample was grown near Malvern, supplied by the UK Ministry of Agriculture, and scanned on 15 March 2002 with a voxel size of 0.0498 mm in X and Y and 0.1631 mm in Z.
Multiple simulation datasets across various operating modes and fault categories within the Tennessee Eastman Process (TEP). The data supports the validation and comparison of diagnostic algorithms in multi-state industrial settings.
X-ray diffraction plots supplementing a published manuscript on the ASTM C311 test method for supplementary cementitious materials. The data was contributed by researchers Kalina, Ryan; Al-Shmaisani, Saif; Ferron, Raissa; and Juenger, Maria. The supplementary materials were last updated on March 18, 2024.