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PASS OCT™

The PASS OCT ™ is a polyaxial system that is based on the principles of PASS LP™ and adapted to OCT indications using dual-diameter rods and occipital plates.

Fully integrated into our UNiD ASI™ (Adaptive Spine Intelligence) proprietary software platform, services and technologies, our PASS OCT™ will provide the implants and instruments needed to perform the most complex cases while optimizing inventory and clinical outcomes.

Registration :

US clearance  : YES

CE Marking : YES

Leverage ​UNiD ASI™

 

UNiD LAB™ is our team of biomedical engineers who work collaboratively with you to simulate surgical strategies using proprietary data and algorithms.

Simulate Surgical Strategies
Data-driven decision support
Multiple planning options

Artificial Intelligence
Proprietary predictive models
5 000 cases
Compensatory mechanisms

Patient-Specific Implants
Match surgical plan
Intra-op confirmation
Industrially bent
Save time in the OR

Planification 

Measurements performed on calibrated x-rays
Based on anatomic parameters and literature
Surgeon’s preference taken into consideration

Features PASS OCT™

 

Friction-fit polyaxial posts for a superior visualization of surgical site and a reduction of instrument manipulation

High versatility with a wide range of screws, connectors and rods

Placement of the medial or lateral rod to better fit patient anatomy and graft space maximization

Connection at distance from the spine for load sharing and a smooth rod seating

Polyaxial screws:
Friction-fit polyaxial threaded posts (40°)

Standard screws : Ø3.5mm and Ø4.0mm, lengths: 10 to 50mm, by 2mm increments

Shank screw : Ø3.5mm, lengths: 20 to 50mm, by 2mm incemen, and Ø4.0mm, lengths: 10 to 50mm, by 2mm increments

Rods
Titanium alloy or CrCo
Lengths: 80mm to 300mm
Dual diameter rods Ø3.5 mm / Ø5.5 mm or Ø3.5 mm / Ø6.0 mm for thoracic constructs PASS OCT™ / PASS LP™

Occipital plate
Hinge-joint enables the cervical construct to be realized first
3 occipital points of fixation

Results

Our software interface, UNiD HUB™, digests scientific data to generate intelligent surgical planning through machine learning while simultaneously allowing detailed and custom analyses

Résultats
Reduced screw selection error
Improved clinical workflow
Decreased overhead costs

CASE EXAMPLE : ADULT DEFORMATION

PRE-OP

PLAN

 

POST-OP

 

PARAMETERS PRE-OP PLAN POST-OP
Cervical Lordosis (CL,°) -65 14 14
C2-C7 SVA  mm) 57 37 44
T1 Slope(T1S,°) 25 25 35
T1S-CL (°) 90 11 21
C2-T1 PELVIC ANGLE (CTPA,°) 7 5 6

Legal Notice

Posterior thoracolumbar vertebral anchoring device for the treatment of degenerative, traumatic pathologies and spinal deformities to be associated with a posterior thoracolumbar osteosynthesis device. The use of this medical device requires a healthcare professional’s opinion: please read the instructions for use carefully. CE 0459

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