3d Printed Coronary Implants

3D printed coronary implants are cardiovascular devices manufactured layer by layer to support, restore, or improve blood flow through narrowed or damaged coronary vessels. Their production begins with a computer-aided design that can incorporate vessel dimensions, then deposits selected biomaterials in precise patterns to control implant geometry, flexibility, strength, and potential tissue interaction. These features support research into patient-specific stents, vascular scaffolds, and other coronary devices while enabling laboratory testing of performance and biocompatibility. As additive manufacturing advances, 3D printed coronary implants may contribute to more individualized cardiovascular treatment and improved strategies for managing coronary artery disease.

3d Printed Coronary Implants - Related Videos

Research

JoVE Journal - Medicine

Novel Percutaneous Approach for Deployment of 3D Printed Coronary Stenosis Implants in Swine Models of Ischemic Heart Disease

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Cited by 6 •

2020

We describe a novel, cost-effective, and efficient technique for percutaneous delivery of three-dimensionally printed coronary implants to create closed-chest swine models of ischemic heart disease. The implants were fixed in place using a mother-and-child extension catheter with high success rate.

Research

JoVE Journal - Engineering
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3D Printing of Biomolecular Models for Research and Pedagogy

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Cited by 29 •

2017

Physical models of biomolecules can facilitate an understanding of their structure-function for the researcher, aid in communication between researchers, and serve as an educational tool in pedagogical endeavors. Here, we provide detailed guidance for the 3D printing of accurate models of biomolecules using fused filament fabrication desktop 3D printers.

Direct Re-implantation of Left Coronary Artery into the Aorta in Adults with Anomalous Origin of Left Coronary Artery from the Pulmonary Artery (ALCAPA)

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Cited by 7 •

2017

Surgical correction of ALCAPA is highly recommended, regardless of age or the degree of intercoronary collateralization. This protocol presents a technique for the direct re-implantation of adult-type ALCAPA into the aorta to re-establish the dual-coronary perfusion. Whenever feasible, direct re-implantation is preferred to other surgical correction techniques.

Research

JoVE Journal - Biology
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3D Printing of Preclinical X-ray Computed Tomographic Data Sets

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Cited by 16 •

2013

Using modern plastic extrusion and printing technologies, it is now possible to quickly and inexpensively produce physical models of X-ray CT data taken in a laboratory. The three -dimensional printing of tomographic data is a powerful visualization, research, and educational tool that may now be accessed by the preclinical imaging community.

Treatment of Facial Deformities using 3D Planning and Printing of Patient-Specific Implants

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Cited by 9 •

2020

As technology develops and becomes more user-friendly, planning of operations and patient-specific surgical guides and fixation plates should be performed by the surgeon. We present a protocol for 3D planning of orthognathic skeletal movements and 3D planning and printing of patient-specific fixation plates and surgical guides.

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