Investigation of the Clinical Value of Four Visualization Modalities for Congenital Heart Disease

Shen-Yuan Lee1, Andrew Squelch2, Zhonghua Sun1,3

  • 1Discipline of Medical Radiation Science, Curtin Medical School, Curtin University, Perth, WA 6845, Australia.

Insights

Three-dimensional-printed heart models (3DPHMs) and virtual reality (VR) offer superior visualization for congenital heart disease (CHD) management. VR excels in surgical planning, while 3DPHMs enhance patient communication and medical education.

Area of Science:

  • Cardiology
  • Medical Imaging
  • Surgical Planning

Background:

  • Congenital heart disease (CHD) diagnosis is complex due to intricate morphologies, challenging conventional 2D visualization.
  • Limitations exist in representing complex CHD structures on standard displays, hindering accurate diagnosis and treatment planning.

Purpose of the Study:

  • To evaluate the clinical utility of four visualization modalities for congenital heart disease (CHD).
  • To compare digital imaging and communications in medicine (DICOM) images, 3D-printed heart models (3DPHMs), virtual reality (VR), and 3D portable document format (PDF) in CHD assessment.

Main Methods:

  • Seventeen cardiac specialists assessed four visualization modalities (DICOM, 3DPHM, VR, 3D PDF) across three CHD cases.
  • Participants evaluated modalities for understanding spatial relationships, presurgical planning, patient communication, and medical education.

Main Results:

  • Virtual reality (VR) was ranked highest by 76.4% of specialists for spatial understanding and presurgical planning.
  • Three-dimensional-printed heart models (3DPHMs) were favored by 94.1% for patient communication and medical education.
  • VR excelled in anatomical assessment and spatial comprehension; 3DPHMs proved best for education and communication.

Conclusions:

  • Both 3DPHMs and VR offer distinct advantages over DICOM images and 3D PDFs for visualizing and managing CHD.
  • VR enhances presurgical planning and understanding of complex cardiac anatomy.
  • 3DPHMs are invaluable for medical education and improving patient-physician communication in CHD cases.

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