According to the world health agency, the market for 3D printing medical equipment is expected to reach $2 billion 770 million by 2025. From 2017 to 2025, the annual growth rate was 16.8%.
In the 3D printing process, a three-dimensional object is created by setting up a continuous raw material layer. Each layer is connected to each other until the object is complete. Objects are generated by digital 3D files, such as computer aided design (CAD) or magnetic resonance images (MRI).
Since 3D printing allows designers to easily modify them, there is no need for additional installation of equipment or tools. The flexibility of the 3D printing device allows the manufacturer to create a model that matches the anatomical structure of the patient, or even a model with a very complex internal structure.
In 2025, 3D print medical equipment will reach a compound growth rate of $2 billion 770 million a year to 16.8%
These functions attract the interest of manufacturers of medical equipment and other products, including food, household goods and auto parts, for 3D printing. Scientists are studying how to use the 3D printing process to produce organs such as the heart or the liver.
According to the small editor, 3D printing medical equipment is roughly divided into two types: external wearable equipment and clinical research equipment. The external wearable device is designed to make a specific 3D printing device for each patient. In this process, 3D printing is usually accompanied by a 3D scan to help create geometric figures.
These devices can be connected to the outside of a person. These devices are larger or thicker than the surgical devices or implants that have to be implanted into the body. This actually helps to overcome any mechanical strength problem of 3D printing. Clinical research equipment is designed for clinical research. It is created in a very small number and can be changed after evaluation. The clinical research equipment has a number of plastic components, in which 3D printing provides a way to create cost-effective clinical components.
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