Difference between revisions of "VolCT - Group 1B"

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(Update links in Round 2 Images and Results to include new TCIA inclusion of results)
 
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==Downloadable Images and [[:Category:Datasets|Data Sets]]==
 
==Downloadable Images and [[:Category:Datasets|Data Sets]]==
 
===Round 2 Images and Results===
 
===Round 2 Images and Results===
*TCIA - [https://wiki.cancerimagingarchive.net/display/Public/RIDER+Lung+CT RIDER Lung CT Images] - (MSKCC Coffee Break) - Used as No Change Cases ''link posted 12.29.2012 updated 05.24.2023''
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*[https://www.cancerimagingarchive.net/ TCIA] - [https://wiki.cancerimagingarchive.net/display/Public/RIDER+Collections RIDER] [https://wiki.cancerimagingarchive.net/display/Public/RIDER+Lung+CT Lung CT Images] - (MSKCC Coffee Break) - Used as No Change Cases ''link posted 12.29.2012 updated 05.24.2023''
*TCIA (formerly NBIA) - [https://wiki.cancerimagingarchive.net/display/Public/RIDER+Pilot RIDER Pilot CT Images] - Used as With Change Distractors ''link posted 12.29.2012 updated 05.24.2023''
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*[https://www.cancerimagingarchive.net/ TCIA] (formerly at [https://wiki.nci.nih.gov/display/NBIA/NBIA+CBIIT+Instance+Retirement+Notice NBIA]) - [https://wiki.cancerimagingarchive.net/display/Public/RIDER+Collections RIDER] [https://wiki.cancerimagingarchive.net/display/Public/RIDER+Pilot Pilot CT Images] - Used as With Change Distractors ''link posted 12.29.2012 updated 05.24.2023''
*[http://www.dclunie.com/data/QIBA_CT_1BR2_DICOM_results_20121229.tar.bz2 DICOM Result Files (SR,SEG,PR)] ''posted 12.29.2012''
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*[http://www.dclunie.com/data/QIBA_CT_1BR2_DICOM_results_20121229.tar.bz2 DICOM Result Files (SR,SEG,PR)] ''posted 12.29.2012'' - now also at [https://www.cancerimagingarchive.net/ TCIA] [https://wiki.cancerimagingarchive.net/pages/viewpage.action?pageId=70228818 QIBA VolCT Group 1B Round 2 No Change Size Measurements (QIBA-VolCT-1B)] ''posted 05.24.2023''
 
*[[Media:NOTES.TCIA.QIBA CT 1BR2.release.doc| Release notes describing collection contents]] ''posted 12.29.2012''
 
*[[Media:NOTES.TCIA.QIBA CT 1BR2.release.doc| Release notes describing collection contents]] ''posted 12.29.2012''
 
*[[Media:ClinicalTrialResults 20121229 QIBA.doc| Description of SR encoding template]] ''posted 12.29.2012''
 
*[[Media:ClinicalTrialResults 20121229 QIBA.doc| Description of SR encoding template]] ''posted 12.29.2012''

Latest revision as of 10:53, 24 May 2023

Current Goals & Status:

Question: What is the minimum detectable level of change in patient datasets under a “No Change” condition?

    • AIMS: For patient datasets acquired over a very short time interval (“no change” condition”) investigate variance in measuring change in volume, diameter and bi-directional diameters of lesions
    • Investigate inter-observer variability in each task
    • Investigate Intra-observer variability in each task
    • Methods - Materials
      • Image Data from MSK Coffee Break Experiment
      • 32 NSCLC patients, imaged twice on same scanner over period < 15 minutes
      • Thin slice (1.25 mm thick) image data
      • Selected one lesion per patient
      • no outcome data
      • Publicly Available on TCIA
    • Methods - Readings
      • 5 readers
      • Read CT at timepoint 1, CT at timepoint 2 and repeat either CT timepoint 1 or timeoint 2 to assess intra-reader variability
    • Methods - Measurements
      • Measure Single Longest Diameter, manually (SLD)
      • Measure Longest Diameter and Perpendicular Diameter; take product to obtain Product of Diameters (POD)
      • Contour Full Boundary of lesion with semiautomated tool; calculate volume (Vol)
      • Extract other measures as well (SLD from POD measureement; SLD from VOl and POD from Vol).
    • The Order of Readers, Lesions and Measurement Methods were Randomized (Measurements done in Blocks of 10)
    • Analyses
      • Pooled Analysis across readers and lesions; Percent Difference between Scan 1 and Scan 2 for each measurement method
      • Subgroup Analyses: (a) Based on Measureable/Non-Measureable lesions identified by Mike O'Neal of CoreLabs; (b) Difficult, Moderate and Easy as Identified by Mike McNitt-Gray
  • Conference Poster on Reproducibility and Accuracy of Uni- and Bi-Dimensional Tumor Measurements from MRI and CT Volumes, which looks at RECIST, WHO and Volume measurements.

Downloadable Images and Data Sets

Round 2 Images and Results

Round 1 Images and Results