Products

We are a recognized innovator, with a broad commercial portfolio of patented and clinically validated solutions, including advances in minimally invasive surgery, motion preservation technologies, 3D-printed implants and streamlined instrumentation. All our devices are provided single-packed, gamma-sterilized and barcoded.

Partnerships and Collaborations

Through partnerships with SpinEM Robotics and eCential, we have positioned Spineart as a leader in the rapidly emerging surgical robotics market.

Our partnership with SpinEM Robotics began with a €10 million ($11 million) strategic investment in 2024, marking the beginning of an exciting development collaboration. Together, we aim to revolutionize the field of spinal surgery by combining SpinEM Robotics’ advanced navigation and robotic assistance technology with Spineart’s expertise in surgical solutions. By focusing on accuracy and eliminating the reliance on 3D cameras in navigation and robotics, the partnership will address the evolving needs of surgeons and patients worldwide

« This collaboration underscores our commitment to delivering innovative solutions that empower surgeons, hospitals, and, most importantly, enable patients’ return to active life. »Jerome Trividic, CEO

In addition, Spineart has maintained a long-term collaboration agreement with eCential Robotics to co-develop spine surgery applications and co-market their open robotic surgery platform since 2022. With a streamlined workflow and smartphone-inspired user interface, spine surgeons benefit from eCential Robotics’ state-of-the-art integrated platform, fully compatible with Spineart’s comprehensive and proven portfolio of innovative spine implants. eCential Robotics’ platform is currently featured in the Spineart Innovation Center in Dallas, Texas, which opened in November 2024.

Clinical Development

Spineart maintains a comprehensive clinical database from patients treated with our products, adhering to all privacy regulations and standards through structured clinical studies. Each product’s Clinical Development Plan is crafted early in its lifecycle, integrating expertise from academic and private medical professionals to optimize patient outcomes and satisfaction.

To learn more about ongoing clinical trials, including information on how to participate

To reach out to our team, please email: clinic@spineart.com

Scientific Publications

THREE-DIMENSIONAL PRINTING OF BIOMIMETIC TITANIUM MIMICKING TRABECULAR BONE INDUCES HUMAN MESENCHYMAL STEM CELL PROLIFERATION: AN IN-VITRO ANALYSIS

Stephanos Papaefstathiou , Nathanaël Larochette , Rosa María Villar Liste , Esther Potier , Herve Petite , Bradley J Vivace , Joseph L Laratta Spine, July 15th, 2022  

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CERVICAL DISC ARTHROPLASTY WITH THE BAGUERA® C PROSTHESIS: CLINICAL AND RADIOLOGICAL RESULTS OF A 10‐YEAR FOLLOW‐UP STUDY

P. Fransen, D. Noriega, A. Chatzisotiriou, V. Pointillart The European Spine Journal, June 18th, 2023

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3D-PRINTED TITANIUM CAGES WITHOUT BONE GRAFT OUTPERFORM PEEK CAGES WITH AUTOGRAFT IN AN ANIMAL MODEL

Joseph L Laratta, Bradley J Vivace, Mónica López-Peña, Fernando Muñoz Guzón, Antonio Gonzalez-Cantalpeidra, Alberto Jorge-Mora, Rosa Maria Villar-Liste, Laura Pino-Lopez, Alexandr Lukvanchuk, Erik Arden Taghizadeh, Jesús Pino-Minguez  The Spine Journal,...

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EFFICACY OF A NOVEL VERTEBRAL BODY AUGMENTATION SYSTEM IN THE TREATMENT OF PATIENTS WITH SYMPTOMATIC VERTEBRAL BODY FRACTURES

Stefano Marcia; Emanuele Piras; Joshua A. Hirsch; Alessio Mereu; Mariangela Marras; Alessio Spinelli; Luca Saba CardioVascular and Interventional Radiology, October 25th, 2020

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ONE- OR TWO- LEVELS TREATMENT BY ARTHROPLASTY OF CERVICAL DEGENERATIVE DISEASE

Preliminary Results after 5 Years Postoperative Controls. Fransen P, Noriega D, Chatzisotiriou A, and Pointillart V. Journal of Spine, 2018

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CLINICAL RESULTS OF CERVICAL DISC REPLACEMENT WITH THE BAGUERA C PROSTHESIS AFTER TWO YEARS FOLLOW-UP

Patrick Fransen, Niels Hansen-Algenstaedt, Athanasos Chatzisotiriou, David Cesar Gonzalez Noriega, Vincent Pointillart. Acta Orthopaedica Belgica, 2018 

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A NOVEL NONPEDICULAR SCREW-BASED FIXATION IN LUMBAR SPONDYLOLISTHESIS

Ming-Hong Chen and Jen-Yuh Chen Hindawi Publishing Corporation BioMed Research International January 2017

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A BIOMECHANICAL ANALYSIS OF AN ARTIFICIAL DISC WITH A SHOCK-ABSORBING CORE PROPERTY BY USING WHOLE-CERVICAL SPINE FINITE ELEMENT ANALYSIS

June Ho Lee, MD, PhD, Won Man Park, PhD,y Yoon Hyuk Kim, PhD,y and Tae-Ahn Jahng, MD, PhDz Spine Biomechanics, 2016

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HETEROTOPIC OSSIFICATION IN CERVICAL DISK SURGERY IS STILL A PROBLEM. WHAT ARE THE KEY FACTORS FOR A SOLUTION?

David Cesar Noriega, Rubén Hernández Ramajo, Israel Sánchez-Lite, Borja Toribio, Emle Delen, Soner SahinWorld Neurosurgery, December 2016

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PERCUTANEOUS “K-WIRELESS” PEDICLE SCREW FIXATION TECHNIQUE

Steven M. Spitz, MD , Faheem A. Sandhu, MD , PhD, and Jean-Marc Voyadzis, MD JNS Spine, 2015

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