Be first to read the latest tech news, Industry Leader's Insights, and CIO interviews of medium and large enterprises exclusively from Medical Tech Outlook
THANK YOU FOR SUBSCRIBING
By
MedTech Outlook | Wednesday, August 25, 2021
3D printing has a lot of potential in healthcare because it can build highly personalized products right at the point of care.
FREMONT, CA: Innovations in 3D printing, also known as additive manufacturing, are gaining traction in the medical industry due to their potential to enhance therapy for various medical diseases. For example, a radiologist can generate an exact reproduction of a patient's spine to aid in surgical planning, and a dentist may scan a fractured tooth to build a crown that fits perfectly in the patient's mouth. Doctors can employ 3D printing to create products tailored to a patient's anatomy in both cases.
Stay ahead of the industry with exclusive feature stories on the top companies, expert insights and the latest news delivered straight to your inbox. Subscribe today.
3D printing has enabled the fabrication of customized prosthetic limbs, cranial implants, and orthopedic implants like hips and knees, in addition to planning surgeries and generating personalized dental restorations like crowns. Likewise, its ability to modify the manufacturing of medical items, particularly high-risk devices like implants, can impact patient safety, posing new issues for FDA regulation.
Definition and Uses of 3D printing in health care
3D printing is an additive manufacturing technology that generates three-dimensional structures by building consecutive layers of raw material like metals, polymers, and ceramics, compared to conventional methods, which shape raw material into a final form through carving, grinding, or molding.
The items are designed using a digital file that was created from an MRI or a computer-aided design (CAD) sketch, allowing the maker to rapidly adjust or adapt the product as needed.
There are many different types of 3D printers on the market, starting from consumer-grade printers that can print small, simple parts to commercial-grade printers that can manufacture much larger and more complicated goods.
To date, the majority of FDA-approved 3D-printed products have been medical equipment like orthopedic implants. A manufacturing technique like this has several clinical benefits. Manufacturers, for example, have employed 3D printing technologies to build devices with complicated geometries, like porous knee replacements that allow for tissue growth and incorporation.
Other manufacturing techniques may need multiple components to be produced individually and screwed or welded together, whereas 3D printing allows creating an entire product or device component at once.
How is 3D printing regulated?
The FDA does not control 3D printers, and rather, it governs medical products created using 3D printing. The regulatory assessment necessary is determined by the type of product being manufactured, its intended use, and the possible risks to patients.
Devices, which are now the most prevalent type of 3D-printed device, are controlled by the FDA's Center for Devices and Radiological Health and are divided into three regulatory categories or classes. The government may also oversee imaging devices and software components used to manufacture these devices, but these are examined separately.
More in News
I agree We use cookies on this website to enhance your user experience. By clicking any link on this page you are giving your consent for us to set cookies. More info

However, if you would like to share the information in this article, you may use the link below:
www.medicaltechoutlookapac.com/news/how-3d-printing-helps-in-the-orthopedic-sector-nwid-1790.html
