Patients have successfully received a newly implanted 3D printed cervical cage.

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3D printing has been a game-changer in the medical field, particularly when it comes to prostheses. These innovative solutions have allowed patients to regain comfort and mobility, ultimately helping them return to a normal life. While the most significant advancements have usually been in areas like the skull, hips, or knees, researchers from Florida Atlantic University’s Research Park recently made a groundbreaking discovery in spinal surgery.

Utilizing 3D printing technology, medical implant company FloSpine LLC successfully implanted the first-ever 3D printed cervical cage. This implant, named the Ti-Largo 3D Printed Cervical Cage, is specifically designed to hold open the space between two levels of the spine, promoting bone growth and eventual fusion. Such spinal cages are commonly used to treat injuries or conditions related to spinal disk or vertebral damage. They also aid in repairing bone growth, posture, and increasing support in the spine.

The Ti-Largo 3D Printed Cervical Cage is crafted from robust materials like PEEK, ceramic, or a titanium alloy. Through 3D printing, the cages can be customized to fit each patient’s unique needs. The designers of the implant were particularly focused on maximizing biocompatibility and promoting bone growth within the cage area. These features ensure that the device optimally integrates with the living body and facilitates post-surgery recovery.

While the installation of the cervical cage requires surgery, the Ti-Largo design aims to minimize invasiveness and associated risks, in addition to accelerating recovery time. Given its FDA clearance, successful surgeries have already been performed at Florida Atlantic University’s Research Park, with promising prospects for future treatments. Dr. John Afshar from the Palm Beach Neuroscience Institute expressed his excitement about the implant, stating that it represents a significant advancement in cervical spine surgery and has the potential to revolutionize procedures, leading to improved outcomes for patients.

FloSpine’s Ti-Largo 3D Printed Cervical Cage breakthrough design has garnered attention and positive reviews within the medical community. This innovative use of 3D printing technology demonstrates the tremendous potential it holds for enhancing the quality of medical treatments and transforming the field of spinal surgery. To learn more about the Ti-Largo 3D Printed Cervical Cage, you can read the report on FloSpine’s website.

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Cover Photo Credits: Research Park at FAU / FloSpine

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