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36 results for “XCT”
IBSim Virtual Test Benchmark Data - Experiment Type: Thermal (LFA), SampleID: LFA_Rd4t02_A13, Data: XCT
<p>Sample ID: LFA_Rd4t02_A13</p> <p>X-ray tomography (CT) image data of a Ti6Al4V disc. The 3D image was generated with an X-ray tomography scan performed by Dr Llion Evans with Swansea University, Advanced Imaging of Materials (AIM) equipment.</p> <p>The dataset includes: raw radiographs; scan & reconstruction parameter settings file; reconstructed 3D volume. To visualise the 3D volume use software such as ImageJ (https://imagej.net/Fiji/Downloads). The volume image data (.raw file) is in binary format and has the following characteristics: 1920 x 1920 x 1536; 16-bit; little-endian byte order.</p> <p>This data is part of a 'virtual testing' benchmark study, where samples are tested physically in the lab and their microscale accurate digital equivalent are tested virtually through simulation. The technique of converting 3D volumetric images directly into finite element method (FEM) meshes is part of the Image-Based Simulation (IBSim) approach.</p> <p>This data is part of a batch of samples for thermal testing via laser flash analysis (LFA), following the standards ASTM E1461 / ASTM E2585. As part of the study, controlled defects were introduced into the samples. This was achieved by machining a disc shaped recess (of defined diameter and depth) into one disc which is bonded onto another disc, so that the defect is located internally within the final sample.</p> <p>The samples in the batch are named as follows.</p> <p>Sample ID Diameter Thickness Recess d Recess t<br> LFA_RNA_### 12.6 2.5 N/A N/A<br> LFA_Rd0t00_### 12.6 1.25 x 2 N/A N/A<br> LFA_Rd8t02_### 12.6 1.25 x 2 8.0 0.2<br> LFA_Rd8t08_### 12.6 1.25 x 2 8.0 0.8<br> LFA_Rd6t02_### 12.6 1.25 x 2 6.0 0.2<br> LFA_Rd6t08_### 12.6 1.25 x 2 6.0 0.8<br> LFA_Rd4t02_### 12.6 1.25 x 2 4.0 0.2<br> LFA_Rd4t08_### 12.6 1.25 x 2 4.0 0.8</p> <p>Where ### denotes the furnace bonding batch (A-C and N for no bonding cycle) and sample number (01-30). Values in mm.</p>
IBSim Virtual Test Benchmark Data - Experiment Type: Thermal (LFA), SampleID: LFA_Rd6t08_A11, Data: XCT
<p>Sample ID: LFA_Rd6t08_A11</p> <p>X-ray tomography (CT) image data of a Ti6Al4V disc. The 3D image was generated with an X-ray tomography scan performed by Dr Llion Evans with Swansea University, Advanced Imaging of Materials (AIM) equipment.</p> <p>The dataset includes: raw radiographs; scan & reconstruction parameter settings file; reconstructed 3D volume. To visualise the 3D volume use software such as ImageJ (https://imagej.net/Fiji/Downloads). The volume image data (.raw file) is in binary format and has the following characteristics: 1920 x 1920 x 1536; 16-bit; little-endian byte order.</p> <p>This data is part of a 'virtual testing' benchmark study, where samples are tested physically in the lab and their microscale accurate digital equivalent are tested virtually through simulation. The technique of converting 3D volumetric images directly into finite element method (FEM) meshes is part of the Image-Based Simulation (IBSim) approach.</p> <p>This data is part of a batch of samples for thermal testing via laser flash analysis (LFA), following the standards ASTM E1461 / ASTM E2585. As part of the study, controlled defects were introduced into the samples. This was achieved by machining a disc shaped recess (of defined diameter and depth) into one disc which is bonded onto another disc, so that the defect is located internally within the final sample.</p> <p>The samples in the batch are named as follows.</p> <p>Sample ID Diameter Thickness Recess d Recess t<br> LFA_RNA_### 12.6 2.5 N/A N/A<br> LFA_Rd0t00_### 12.6 1.25 x 2 N/A N/A<br> LFA_Rd8t02_### 12.6 1.25 x 2 8.0 0.2<br> LFA_Rd8t08_### 12.6 1.25 x 2 8.0 0.8<br> LFA_Rd6t02_### 12.6 1.25 x 2 6.0 0.2<br> LFA_Rd6t08_### 12.6 1.25 x 2 6.0 0.8<br> LFA_Rd4t02_### 12.6 1.25 x 2 4.0 0.2<br> LFA_Rd4t08_### 12.6 1.25 x 2 4.0 0.8</p> <p>Where ### denotes the furnace bonding batch (A-C and N for no bonding cycle) and sample number (01-30). Values in mm.</p>
IBSim Virtual Test Benchmark Data - Experiment Type: Thermal (LFA), SampleID: LFA_Rd6t02_A09, Data: XCT
<p>Sample ID: LFA_Rd6t02_A09</p> <p>X-ray tomography (CT) image data of a Ti6Al4V disc. The 3D image was generated with an X-ray tomography scan performed by Dr Llion Evans with Swansea University, Advanced Imaging of Materials (AIM) equipment.</p> <p>The dataset includes: raw radiographs; scan & reconstruction parameter settings file; reconstructed 3D volume. To visualise the 3D volume use software such as ImageJ (https://imagej.net/Fiji/Downloads). The volume image data (.raw file) is in binary format and has the following characteristics: 1920 x 1920 x 1536; 16-bit; little-endian byte order.</p> <p>This data is part of a 'virtual testing' benchmark study, where samples are tested physically in the lab and their microscale accurate digital equivalent are tested virtually through simulation. The technique of converting 3D volumetric images directly into finite element method (FEM) meshes is part of the Image-Based Simulation (IBSim) approach.</p> <p>This data is part of a batch of samples for thermal testing via laser flash analysis (LFA), following the standards ASTM E1461 / ASTM E2585. As part of the study, controlled defects were introduced into the samples. This was achieved by machining a disc shaped recess (of defined diameter and depth) into one disc which is bonded onto another disc, so that the defect is located internally within the final sample.</p> <p>The samples in the batch are named as follows.</p> <p>Sample ID Diameter Thickness Recess d Recess t<br> LFA_RNA_### 12.6 2.5 N/A N/A<br> LFA_Rd0t00_### 12.6 1.25 x 2 N/A N/A<br> LFA_Rd8t02_### 12.6 1.25 x 2 8.0 0.2<br> LFA_Rd8t08_### 12.6 1.25 x 2 8.0 0.8<br> LFA_Rd6t02_### 12.6 1.25 x 2 6.0 0.2<br> LFA_Rd6t08_### 12.6 1.25 x 2 6.0 0.8<br> LFA_Rd4t02_### 12.6 1.25 x 2 4.0 0.2<br> LFA_Rd4t08_### 12.6 1.25 x 2 4.0 0.8</p> <p>Where ### denotes the furnace bonding batch (A-C and N for no bonding cycle) and sample number (01-30). Values in mm.</p>
IBSim Virtual Test Benchmark Data - Experiment Type: Thermal (LFA), SampleID: LFA_Rd8t08_A07, Data: XCT
<p>Sample ID: LFA_Rd8t08_A07</p> <p>X-ray tomography (CT) image data of a Ti6Al4V disc. The 3D image was generated with an X-ray tomography scan performed by Dr Llion Evans with Swansea University, Advanced Imaging of Materials (AIM) equipment.</p> <p>The dataset includes: raw radiographs; scan & reconstruction parameter settings file; reconstructed 3D volume. To visualise the 3D volume use software such as ImageJ (https://imagej.net/Fiji/Downloads). The volume image data (.raw file) is in binary format and has the following characteristics: 1920 x 1920 x 1536; 16-bit; little-endian byte order.</p> <p>This data is part of a 'virtual testing' benchmark study, where samples are tested physically in the lab and their microscale accurate digital equivalent are tested virtually through simulation. The technique of converting 3D volumetric images directly into finite element method (FEM) meshes is part of the Image-Based Simulation (IBSim) approach.</p> <p>This data is part of a batch of samples for thermal testing via laser flash analysis (LFA), following the standards ASTM E1461 / ASTM E2585. As part of the study, controlled defects were introduced into the samples. This was achieved by machining a disc shaped recess (of defined diameter and depth) into one disc which is bonded onto another disc, so that the defect is located internally within the final sample.</p> <p>The samples in the batch are named as follows.</p> <p>Sample ID Diameter Thickness Recess d Recess t<br> LFA_RNA_### 12.6 2.5 N/A N/A<br> LFA_Rd0t00_### 12.6 1.25 x 2 N/A N/A<br> LFA_Rd8t02_### 12.6 1.25 x 2 8.0 0.2<br> LFA_Rd8t08_### 12.6 1.25 x 2 8.0 0.8<br> LFA_Rd6t02_### 12.6 1.25 x 2 6.0 0.2<br> LFA_Rd6t08_### 12.6 1.25 x 2 6.0 0.8<br> LFA_Rd4t02_### 12.6 1.25 x 2 4.0 0.2<br> LFA_Rd4t08_### 12.6 1.25 x 2 4.0 0.8</p> <p>Where ### denotes the furnace bonding batch (A-C and N for no bonding cycle) and sample number (01-30). Values in mm.</p>
IBSim Virtual Test Benchmark Data - Experiment Type: Thermal (LFA), SampleID: LFA_Rd8t02_A05, Data: XCT
<p>Sample ID: LFA_Rd8t02_A05</p> <p>X-ray tomography (CT) image data of a Ti6Al4V disc. The 3D image was generated with an X-ray tomography scan performed by Dr Llion Evans with Swansea University, Advanced Imaging of Materials (AIM) equipment.</p> <p>The dataset includes: raw radiographs; scan & reconstruction parameter settings file; reconstructed 3D volume. To visualise the 3D volume use software such as ImageJ (https://imagej.net/Fiji/Downloads). The volume image data (.raw file) is in binary format and has the following characteristics: 1920 x 1920 x 1536; 16-bit; little-endian byte order.</p> <p>This data is part of a 'virtual testing' benchmark study, where samples are tested physically in the lab and their microscale accurate digital equivalent are tested virtually through simulation. The technique of converting 3D volumetric images directly into finite element method (FEM) meshes is part of the Image-Based Simulation (IBSim) approach.</p> <p>This data is part of a batch of samples for thermal testing via laser flash analysis (LFA), following the standards ASTM E1461 / ASTM E2585. As part of the study, controlled defects were introduced into the samples. This was achieved by machining a disc shaped recess (of defined diameter and depth) into one disc which is bonded onto another disc, so that the defect is located internally within the final sample.</p> <p>The samples in the batch are named as follows.</p> <p>Sample ID Diameter Thickness Recess d Recess t<br> LFA_RNA_### 12.6 2.5 N/A N/A<br> LFA_Rd0t00_### 12.6 1.25 x 2 N/A N/A<br> LFA_Rd8t02_### 12.6 1.25 x 2 8.0 0.2<br> LFA_Rd8t08_### 12.6 1.25 x 2 8.0 0.8<br> LFA_Rd6t02_### 12.6 1.25 x 2 6.0 0.2<br> LFA_Rd6t08_### 12.6 1.25 x 2 6.0 0.8<br> LFA_Rd4t02_### 12.6 1.25 x 2 4.0 0.2<br> LFA_Rd4t08_### 12.6 1.25 x 2 4.0 0.8</p> <p>Where ### denotes the furnace bonding batch (A-C and N for no bonding cycle) and sample number (01-30). Values in mm.</p>
IBSim Virtual Test Benchmark Data - Experiment Type: Thermal (LFA), SampleID: LFA_Rd0t00_A03, Data: XCT
<p>Sample ID: LFA_Rd0t00_A03</p> <p>X-ray tomography (CT) image data of a Ti6Al4V disc. The 3D image was generated with an X-ray tomography scan performed by Dr Llion Evans with Swansea University, Advanced Imaging of Materials (AIM) equipment.</p> <p>The dataset includes: raw radiographs; scan & reconstruction parameter settings file; reconstructed 3D volume. To visualise the 3D volume use software such as ImageJ (https://imagej.net/Fiji/Downloads). The volume image data (.raw file) is in binary format and has the following characteristics: 1920 x 1920 x 1536; 16-bit; little-endian byte order.</p> <p>This data is part of a 'virtual testing' benchmark study, where samples are tested physically in the lab and their microscale accurate digital equivalent are tested virtually through simulation. The technique of converting 3D volumetric images directly into finite element method (FEM) meshes is part of the Image-Based Simulation (IBSim) approach.</p> <p>This data is part of a batch of samples for thermal testing via laser flash analysis (LFA), following the standards ASTM E1461 / ASTM E2585. As part of the study, controlled defects were introduced into the samples. This was achieved by machining a disc shaped recess (of defined diameter and depth) into one disc which is bonded onto another disc, so that the defect is located internally within the final sample.</p> <p>The samples in the batch are named as follows.</p> <p>Sample ID Diameter Thickness Recess d Recess t<br> LFA_RNA_### 12.6 2.5 N/A N/A<br> LFA_Rd0t00_### 12.6 1.25 x 2 N/A N/A<br> LFA_Rd8t02_### 12.6 1.25 x 2 8.0 0.2<br> LFA_Rd8t08_### 12.6 1.25 x 2 8.0 0.8<br> LFA_Rd6t02_### 12.6 1.25 x 2 6.0 0.2<br> LFA_Rd6t08_### 12.6 1.25 x 2 6.0 0.8<br> LFA_Rd4t02_### 12.6 1.25 x 2 4.0 0.2<br> LFA_Rd4t08_### 12.6 1.25 x 2 4.0 0.8</p> <p>Where ### denotes the furnace bonding batch (A-C and N for no bonding cycle) and sample number (01-30). Values in mm.</p>
Role of the glial glutamate exchanger xCT in ventral hippocampus in resilience to stress
GEO Series GSE103435. Mus musculus. 6 samples. Type: Expression profiling by high throughput sequencing.
AdvanCT EURAMET project, Southampton XCT scan data, PTB sample, slow scan
<p>AdvanCT EURAMET project, Southampton XCT scan data, PTB sample, slow scan</p> <p>20190312_HUTCH_2220_HT_PTB_Long_002</p> <p>PTB hole plate (6mm) - aluminium</p> <p>Data acquisition system: Custom Nikon metrology custom x-ray tomography system</p> <p>Detector: PerkinElmer XRD 1621 CN3 – HS, 2000x2000 pixels, 200 μm2 pixel size.</p> <p>Nikon 225kVp reflection target microfocus source</p> <p>134ms exposure per frame averaged over 16 frames, 120kVp, 83 μA, 3143 projections, 185 minutes, shuttling, stop start scanning mode </p> <p>S2O: 23.5414199829102</p> <p>S2D: 670.0553</p>
AdvanCT EURAMET project, Southampton XCT scan data, NPL sample, slow scan
<p>AdvanCT EURAMET project, Southampton XCT scan data, NPL sample, slow scan</p> <p>20190312_HUTCH_2220_NPL_Long225_001</p> <p>NPL phantom - aluminium</p> <p>Data acquisition system: Custom Nikon metrology custom x-ray tomography system</p> <p>Detector: PerkinElmer XRD 1621 CN3 – HS, 2000x2000 pixels, 200 μm2 pixel size.</p> <p>Nikon 225kVp reflection target microfocus source</p> <p>134ms exposure per frame averaged over 16 frames, 160kVp, 142 μA, 3143 projections, 185 minutes, shuttling, stop start scanning mode </p> <p>S2O: 255.7822265625</p> <p>S2D: 895.7499</p>
AdvanCT EURAMET project, Southampton XCT scan data, PTB sample, fast scan
<p>AdvanCT EURAMET project, Southampton XCT scan data, PTB sample, fast scan</p> <p>20190312_HUTCH_2220_HT_PTB_fast_002</p> <p>PTB hole plate (6mm) - aluminium</p> <p>Data acquisition system: Custom Nikon metrology custom x-ray tomography system</p> <p>Detector: PerkinElmer XRD 1621 CN3 – HS, 2000x2000 pixels, 200 μm2 pixel size.</p> <p>Nikon 225kVp reflection target microfocus source</p> <p>134ms exposure per frame, 120kVp, 83 μA, 3143 projections, 7 minutes, no shuttling, continious scanning mode </p> <p>S2O: 23.5411643981934</p> <p>S2D: 670.0555</p>
AdvanCT EURAMET project, Southampton XCT scan data, Sphere sample, fast scan
<p>AdvanCT EURAMET project, Southampton XCT scan data, Double ruby sphere sample, fast scan</p> <p>20181107_HUTCH_2074_HD_6mm_ideal_1fpp_2W</p> <p>6mm ruby spheres, touching</p> <p>Data acquisition system: Custom Nikon metrology custom x-ray tomography system</p> <p>Detector: PerkinElmer XRD 1621 CN3 – HS, 2000x2000 pixels, 200 μm2 pixel size.</p> <p>Nikon 225kVp reflection target microfocus source</p> <p>134ms exposure per frame, 90kVp, 22 μA, 3143 projections, 7 minutes, no shuttling, continuous motion scanning mode </p> <p>S2O: 27.8778991699219</p> <p>S2D: 799.6818</p>
AdvanCT EURAMET project, Southampton XCT scan data, EMPA sample, fast scan
<p>AdvanCT EURAMET project, Southampton XCT scan data, EMPA sample, fast scan</p> <p>20190314_HUTCH_2220_HT_EMPA_450fastfilter_003</p> <p>EMPA step cylinder phantom - aluminium</p> <p>Data acquisition system: Custom Nikon metrology custom x-ray tomography system</p> <p>Detector: PerkinElmer XRD 1621 CN3 – HS, 2000x2000 pixels, 200 μm2 pixel size.</p> <p>Nikon 450kVp reflection target microfocus source</p> <p>250ms exposure per frame, 390kVp, 242 μA, 3143 projections, 13 minutes, 8mm copper filter, no shuttling, continious scanning mode </p> <p>S2O: 652.500579833984</p> <p>S2D: 107.011</p>
AdvanCT EURAMET project, Southampton XCT scan data, Sphere sample, slow scan
<p>AdvanCT EURAMET project, Southampton XCT scan data, Double ruby sphere sample, slow scan</p> <p>20181107_HUTCH_2074_HD_6mm_ideal_1fpp</p> <p>6mm ruby spheres, touching</p> <p>Data acquisition system: Custom Nikon metrology custom x-ray tomography system</p> <p>Detector: PerkinElmer XRD 1621 CN3 – HS, 2000x2000 pixels, 200 μm2 pixel size.</p> <p>Nikon 225kVp reflection target microfocus source</p> <p>134ms exposure per frame, 90kVp, 155 μA, 3143 projections, 7 minutes, no shuttling, continuous motion scanning mode </p> <p>S2O: 27.8778991699219</p> <p>S2D: 799.6818</p>
AdvanCT EURAMET project, Southampton XCT scan data, NPL sample, fast scan
<p>AdvanCT EURAMET project, Southampton XCT scan data, NPL sample, slow scan</p> <p>20190312_HUTCH_2220_NPL_Fast225_002</p> <p>NPL phantom - aluminium</p> <p>Data acquisition system: Custom Nikon metrology custom x-ray tomography system</p> <p>Detector: PerkinElmer XRD 1621 CN3 – HS, 2000x2000 pixels, 200 μm2 pixel size.</p> <p>Nikon 225kVp reflection target microfocus source</p> <p>134ms exposure per frame, 90kVp, 113 μA, 3143 projections, 7 minutes, no shuttling, continuous scanning mode </p> <p>S2O: 255.781982421875</p> <p>S2D: 895.7496</p>
AdvanCT EURAMET project, Southampton XCT scan data, EMPA sample, slow scan
<p>AdvanCT EURAMET project, Southampton XCT scan data, EMPA sample, slow scan</p> <p>20190315_HUTCH_2220_HT_EMPA_450longfilter_002</p> <p>EMPA step cylinder phantom - aluminium</p> <p>Data acquisition system: Custom Nikon metrology custom x-ray tomography system</p> <p>Detector: PerkinElmer XRD 1621 CN3 – HS, 2000x2000 pixels, 200 μm2 pixel size.</p> <p>Nikon 450kVp reflection target microfocus source</p> <p>708ms exposure per frame averaged over 16 frames, 390kVp, 242 μA, 3143 projections, 760 minutes, 8mm copper filter, shuttling, stop start scanning mode </p> <p>S2O: 652.500579833984</p> <p>S2D: 1107.011</p>
AdvanCT EURAMET project, CEA XCT scan data, NPL sample, robot scan
<p>Raw stack of 141 X-ray projections (corrected and logarithmized) acquired along a robot trajectory</p> <p>SinoLog141proj_inv : size 1024 x 1024 x141, 32 bit Real</p> <p>Acquisition parameters :</p> <p>- X-ray tube Viscom <strong>XT9225 -DED</strong> operating at 160 kV, 80 µA, </p> <p>- X-ray detector : Perkin Elmer <strong>XRD0822 </strong>(1024 x 1024 pixels, 200 µm) 1 s integration time</p> <p>Robot trajectory : semi-circular (140°) with SDD = 50 cm and SOD = 25 cm</p> <p> </p>
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