Technology

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Innovation

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BeSpine was born from the need to have implants with the latest technology in all regions of Chile along, with high quality and specific instruments to perform high complexity spine surgeries with the same standard as in Santiago.

We always keep our patients and their surgical outcomes as our main objective, so they will benefit from world-class support and technology.

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Our products have been designed by internationally accredited spine surgeons, who combined their professional experience with the latest available technology, achieving products that enable the best results in each of the patients.

As a company we hope to be close to medical teams, maintaining fluid communication in order to improve our service dynamically and in line with the great speed of technological advances. We believe that evolving together will allow us to remain at the fore front of technology and be pioneers in the search for a better quality of life for patients.

BeSpine is committed to provide the  best available technology to every patient operated by spine surgeons in Chile.

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Stand-Alone Cage

The screws allow the stabilization of the cage. The screw head has micro threads and a conical shape

Reducing the risk of screw loosening once locked into the cage.

Perfil Zero

Once locked in the cage, the screw heads are flush with the cage’s surface, reducing the risk of dysphagia.

Ease of use

The BORJA system combines the technology of an interbody cage with a cervical self-supporting plate in a single implant.

The profile of the implant allows an anatomical fit between the vertebral endplates.

Titanium

The device design considers a wide central cavity to be filled with the bone graft or substitute of your choice.

The polished titanium surface of the implant facilitates primary stability.

Sizes

The BORJA system has an anteroposterior and lateral size options: small and large, with heights ranging from 6 to 9 mm.

This wide range of sizes allows perfect adjustment to the individual vertebral anatomy of the patient, achieving greater primary stability, reducing the risk of implant subsidence.

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