Applications of 3D printing in cardiovascular diseases.

3D-printed models fabricated from CT, MRI, or echocardiography data provide the advantage of haptic feedback, direct manipulation, and enhanced understanding of cardiovascular anatomy and underlying pathologies. Reported applications of cardiovascular 3D printing span from diagnostic assistance and...

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Publicado en:Nature Reviews Cardiology Vol. 13; no. 12; pp. 701 - 719
Autores principales: Ciannopoulos, Andreas A., Mitsouras, Dimitris, Shi-Joon Yoo, Liu, Peter P., Chatzizisis, Yiannis S., Rybicki, Frank J., Giannopoulos, Andreas A, Yoo, Shi-Joon
Formato: diagnostic images pictorial review tables/charts Journal Article
Publicado: Springer Nature Dec2016
Acceso en línea:Ver este registro en EBSCOhost
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        atl: Applications of 3D printing in cardiovascular diseases.
      aug:
        au:
          Ciannopoulos, Andreas A.
          Mitsouras, Dimitris
          Shi-Joon Yoo
          Liu, Peter P.
          Chatzizisis, Yiannis S.
          Rybicki, Frank J.
          Giannopoulos, Andreas A
          Yoo, Shi-Joon
        affil: Applied Imaging Science Lab, Radiology Department, Brigham and Women's Hospital, Harvard Medical School, 75 Francis Street, Boston, Massachusetts 02115, USA
      sug:
        subj:
          Cardiovascular Diseases
          Cardiovascular Diseases Surgery
          Printing, Three-Dimensional Trends
          Patient Education
          Patient Care Plans
          Models, Biological
          Forecasting
          Consumer Participation
          Software
      ab: 3D-printed models fabricated from CT, MRI, or echocardiography data provide the advantage of haptic feedback, direct manipulation, and enhanced understanding of cardiovascular anatomy and underlying pathologies. Reported applications of cardiovascular 3D printing span from diagnostic assistance and optimization of management algorithms in complex cardiovascular diseases, to planning and simulating surgical and interventional procedures. The technology has been used in practically the entire range of structural, valvular, and congenital heart diseases, and the added-value of 3D printing is established. Patient-specific implants and custom-made devices can be designed, produced, and tested, thus opening new horizons in personalized patient care and cardiovascular research. Physicians and trainees can better elucidate anatomical abnormalities with the use of 3D-printed models, and communication with patients is markedly improved. Cardiovascular 3D bioprinting and molecular 3D printing, although currently not translated into clinical practice, hold revolutionary potential. 3D printing is expected to have a broad influence in cardiovascular care, and will prove pivotal for the future generation of cardiovascular imagers and care providers. In this Review, we summarize the cardiovascular 3D printing workflow, from image acquisition to the generation of a hand-held model, and discuss the cardiovascular applications and the current status and future perspectives of cardiovascular 3D printing.
      pubtype: Academic Journal
      doctype:
        diagnostic images
        pictorial
        review
        tables/charts
        Journal Article
      ougenre: Article
    language: English
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