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Lack of Association Between Heart Failure and Incident Cancer Surgical or Transcatheter Aortic-Valve Replacement in Intermediate-Risk Patients The prognostic role of mid-range ejection fraction in ST-segment elevation myocardial infarction Classic crush and DK crush stenting techniques The HACD4 haplotype as a risk factor for atherosclerosis in males Coronary Artery Plaque Characteristics Associated With Adverse Outcomes in the SCOT-HEART Study Changes in One-Year Mortality in Elderly Patients Admitted with Acute Myocardial Infarction in Relation with Early Management LOX-1 in Atherosclerosis and Myocardial Ischemia: Biology, Genetics, and Modulation The association between body mass index and obesity with survival in pulmonary arterial hypertension A sirolimus-eluting bioabsorbable polymer-coated stent (MiStent) versus an everolimus-eluting durable polymer stent (Xience) after percutaneous coronary intervention (DESSOLVE III): a randomised, single-blind, multicentre, non-inferiority, phase 3 trial

Original Research2019 Feb;7(2):132-142.

JOURNAL:JACC Heart Fail. Article Link

3D Printing and Heart Failure: The Present and the Future

Farooqi KM, Cooper C, Chelliah A et al. Keywords: 3D printing; cardiac computed tomography; cardiac magnetic resonance; heart failure

ABSTRACT


Advanced imaging modalities provide essential anatomic and spatial information in patients with complex heart disease. Two-dimensional imaging can be limited in the extent to which true 3-dimensional (3D) relationships are represented. The application of 3D printing technology has increased the creation of physical models that overcomes the limitations of a 2D screen. Many groups have reported the use of 3D printing for preprocedural planning in patients with different causes of heart failure. This paper reviews the innovative applications of this technique to provide patient-specific models to improve patient care.