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The global market for cervical interbody fusion cages Market was robust in 2023 and is expected to grow significantly during the forecast period. The growth is attributed to factors such as increasing global geriatric population, rising incidence of spinal cord injuries, and the availability of technologically advanced implantable medical devices. Interbody cages have evolved to become successful devices in achieving maximum spinal fusion with shorter hospital stays and lower post-operative complications and pain. However, the high cost associated with spinal fusion surgeries, the difficulty in designing cages, and the unavailability of optimized cages are some of the factors expected to restrain the market growth.
The market has been segmented into type, implant, surgery, and end-use outlooks. PEEK cages have better radiological outcomes and are preferred over metallic cages for cervical spine fusion surgeries. The prefilled segment is expected to account for a sizeable revenue share due to its high stability and improved functional outcomes. The anterior surgery segment is expected to register a robust revenue CAGR due to the increasing number of anterior cervical surgeries performed worldwide. North America is expected to account for a significantly large revenue share due to the region's robust healthcare facilities, increasing incidence of spinal injuries and trauma, and growing cases of age-related spinal problems. Key players in the market include Benvenue Medical, Inc., Aurora Spine, Inc., Ulrich Medicals USA, NuVasive, Inc., and Johnson & Johnson. Major companies are engaged in extensive R&D activities to develop technologically advanced products that are safe and offer better clinical outcomes.
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The cervical interbody fusion cages market has witnessed several notable innovations in recent years, driven by rapid technological advancements in implant design and material to improve fusion rates and decrease post-operative complications. Here are some of the most significant innovations in the market:
3D Printed Interbody Cages: 3D printing technology has enabled the development of patient-specific interbody cages, allowing surgeons to customize the implants according to the patient's anatomy. These cages provide a better fit, reduce the risk of implant subsidence, and improve fusion rates. For instance, in 2019, K2M launched its CASCADIA TL Curved 3D printed interbody system for transforaminal lumbar interbody fusion (TLIF) surgeries.
Porous Interbody Cages: Porous interbody cages have gained popularity in recent years due to their ability to promote bone growth and facilitate fusion. These cages have a high surface area and pore volume, which allows for better bone ingrowth and fusion. In 2020, SI-BONE launched its proprietary iFuse-3D implant, which features a porous structure for enhanced osseointegration.
Expandable Interbody Cages: Expandable interbody cages have gained popularity due to their ability to be inserted through a smaller incision and then expand to the desired size once in place, reducing tissue damage and blood loss during surgery. In 2018, Globus Medical launched its Excelsius GPS expandable interbody system for minimally invasive spinal surgeries.
Hybrid Interbody Cages: Hybrid interbody cages are a combination of two or more materials, such as metal and polymer, designed to leverage the advantages of each material. For instance, metal cages provide greater stability and strength, while polymer cages have a lower risk of subsidence and better radiological outcomes. In 2021, Medtronic launched its Infinity OCT System, which features a hybrid construct with a PEEK core and a titanium shell.
Implantable Sensors: Implantable sensors are being developed to monitor spinal fusion progress and detect early signs of complications. These sensors can provide real-time feedback to surgeons and enable early intervention in case of any issues. In 2020, Orthofix launched its M6-C artificial cervical disc, which features an embedded pressure sensor to monitor disc pressure and motion.
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