Difference between revisions of "3D/4D Echo Workflow White Paper - Detailed Information"

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==Technical Approach==
 
==Technical Approach==
 
===Existing actors===
 
 
===New actors===
 
 
===Existing transactions===
 
 
===New transactions (standards used)===
 
 
===Impact on existing integration profiles===
 
 
===New integration profiles needed===
 
 
===Breakdown of tasks that need to be accomplished===
 
  
 
==Support & Resources==
 
==Support & Resources==

Revision as of 07:52, 16 November 2009

Editor:

  • Antje Schroeder (Siemens Healthcare)
  • Lars Linmarker (GE)
  • Joe Luszcz (Philips)

Summary

Advances in ultrasonography have progressively moved from 1D imaging (A-mode), to 2D (B-mode), to 3D (M-mode), and now to 4D volumetric rendering through time. However, clinicians have not been able to exchange volumetric images between systems of different vendors, as until recently there was not an agreed standard for such exchange. DICOM has now approved Supplement 43 to handle volumetric ultrasound, and IHE is the preferred venue for promoting interoperable implementations

The Problem

3D volumetric echocardiography is gaining more and more importance in clincial routine, as more and more vendors provide support for Real Time 3D (RT3D) imaging. However, until 2008 there was no standard for the storage and exchange of the acquired volume data. Each ultrasound vendor developed a proprietary way of storing the volume data, which was only compatible with their own workstations. In 2008 DICOM approved the Enhanced US Volume Storage IOD to address the need of exchanging Ultrasound volume data between different vendor systems.

Key Use Cases

  • 3D quantification
  • Visualization and analysis of heart valves
  • Visualization and analysis of congential defects
  • Volume stress echo
  • Volume Contrast Echo
  • Interoperative 3D Ultrasound

Standards & Systems

  • Echo Workflow
  • Supplement 43

Technical Approach

Support & Resources

Risks

Open Issues