HospiMedica

Download Mobile App
Recent News AI Critical Care Surgical Techniques Patient Care Health IT Point of Care Business Focus

Interbody Fusion Implant Fully Integrates with Vertebral Bodies

By HospiMedica International staff writers
Posted on 06 Nov 2018
Print article
Image: The ENZA-A Titanium ALIF system (Photo courtesy of Camber Spine Technologies).
Image: The ENZA-A Titanium ALIF system (Photo courtesy of Camber Spine Technologies).
A new minimally invasive anterior lumbar interbody fusion (ALIF) device provides support and integrated fixation.

The Camber Spine Technologies (Wayne, PA, USA) ENZA-A Titanium ALIF system is an interbody fusion device indicated for use with autogenous bone graft in patients suffering from degenerative disc disease (DDD) at one or two contiguous levels from L2 to S1. The implants may be placed via a laparoscopic or an open anterior approach, and feature two anchor plates—housed within the three-dimensional (3D) printed titanium body—that are deployed into adjacent vertebrae to provide fixation. The use of supplementary fixation systems is also recommended.

ENZA-A Titanium ALIF has a roughened surface texture designed to encourage bone growth onto the cranial and caudal surfaces of the device. The upper and lower facets are deliberately designed with pores that average a large 500 microns in diameter, the optimal environment for bone ingrowth. In addition, the implant has multiple openings that allow large volumes of autogenous bone graft to be easily packed inside, further facilitating fusion. Proprietary inline instrumentation is used to insert the device, deploy the anchor plates, and lock it in place.

“ENZA-A leverages two of Camber Spine's highly innovative platform technologies,” said Daniel Pontecorvo, CEO of Camber Spine Technologies. “The vast interest and success of our first generation ENZA with Duo Presa anchor technology and our line of SPIRA products with Surface By Design inspired us to combine their defining attributes to create this next generation ENZA-A Titanium ALIF.”

Interbody devices are designed to replace the intervertebral disc of the spine, enhancing stability in the region while the spine fuses. Over time, the packed bone graft material is gradually replaced by natural bone. Fusion procedures also typically use a posterior fixation device to the associated level, since the surgeons will implant interbody devices from an anterior approach and flip the patient over to implant a posterior pedicle screw device. This combination increases fusion success.

Related Links:
Camber Spine Technologies

Gold Member
12-Channel ECG
CM1200B
Gold Member
SARS‑CoV‑2/Flu A/Flu B/RSV Sample-To-Answer Test
SARS‑CoV‑2/Flu A/Flu B/RSV Cartridge (CE-IVD)
Silver Member
Compact 14-Day Uninterrupted Holter ECG
NR-314P
New
Oxidized Zirconium Implant Material
OXINIUM

Print article

Channels

Critical Care

view channel
Image: The new risk assessment tool determines patient-specific risks of developing unfavorable outcomes with heart failure (Photo courtesy of 123RF)

Powerful AI Risk Assessment Tool Predicts Outcomes in Heart Failure Patients

Heart failure is a serious condition where the heart cannot pump sufficient blood to meet the body's needs, leading to symptoms like fatigue, weakness, and swelling in the legs and feet, and it can ultimately... Read more

Patient Care

view channel
Image: The portable, handheld BeamClean technology inactivates pathogens on commonly touched surfaces in seconds (Photo courtesy of Freestyle Partners)

First-Of-Its-Kind Portable Germicidal Light Technology Disinfects High-Touch Clinical Surfaces in Seconds

Reducing healthcare-acquired infections (HAIs) remains a pressing issue within global healthcare systems. In the United States alone, 1.7 million patients contract HAIs annually, leading to approximately... Read more

Health IT

view channel
Image: First ever institution-specific model provides significant performance advantage over current population-derived models (Photo courtesy of Mount Sinai)

Machine Learning Model Improves Mortality Risk Prediction for Cardiac Surgery Patients

Machine learning algorithms have been deployed to create predictive models in various medical fields, with some demonstrating improved outcomes compared to their standard-of-care counterparts.... Read more

Point of Care

view channel
Image: The Quantra Hemostasis System has received US FDA special 510(k) clearance for use with its Quantra QStat Cartridge (Photo courtesy of HemoSonics)

Critical Bleeding Management System to Help Hospitals Further Standardize Viscoelastic Testing

Surgical procedures are often accompanied by significant blood loss and the subsequent high likelihood of the need for allogeneic blood transfusions. These transfusions, while critical, are linked to various... Read more