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MedTech Outlook | Tuesday, March 24, 2020
As specialists discover novel ways to employ 3D printing in the medical industry, it is becoming a significant trend.
Fremont, CA: To put it simply, 3D printing is the process of generating a three-dimensional solid object from a digital file. The 3D Printer builds up the object layer by layer, resulting in a thinly cut portion. 3D printing is, in reality, a popular form of Additive Manufacturing. 3D printing for medicinal purposes has a lot of potentials to change how medical experts treat certain diseases.
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3D printing is routinely utilized to make customized implants, gadgets, and tools in the orthopedic field. 3D printing has also been utilized in orthopedics for preoperative planning and teaching students and patients more about the treatments.
How to use 3D printing for preoperative planning in Orthopedics
Preoperative planning and 3D printing are frequently used in conjunction. When it comes to surgical planning, it's commonly employed to create 3D printed models that can be used in difficult orthopedic cases. For example, in a difficult joint replacement, the surgeon can print an anatomical model replica of the joint to investigate potential barriers and plan accordingly. In trauma scenarios, surgeons and researchers can utilize 3D printed replicas of bone fractures to evaluate methods before the surgery even begins.
Surgical guidelines are no exception. During surgery, these guides can be utilized to generate exact bone cuts. This approach reduces surgical time and has long-term implications for the patient, surgeon, and hospital. The procedure's length and efficiency can be lowered while still delivering excellent patient outcomes. Cases like difficult anomalies can be dealt with more efficiently using precise 3D printed guide templates that fit directly onto the bone.
From rulers to angle tools and simulated cuts, 3D printing can be used in a variety of ways with preoperative planning solutions. Every orthopedic surgeon can easily combine simulations of various scenarios in both 2D and 3D environments.
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