AIBLE™ SMART ECOSYSTEM
AiBLE™ for complex spine
Helping simplify complexity across the spine surgical workflow.
Complex spine procedures require a connected workflow that links planning, execution, reconciliation, and continuous improvement. The AiBLE™ smart ecosystem makes that connection possible. Get procedural consistency and informed decision-making throughout the complex spine surgical journey.
AiBLE™ technologies support comprehensive assessment of global alignment, deformity characteristics, surgical objectives, and implant trajectories before surgery begins. By connecting imaging and AI-guided planning, surgeons can enter the operating room with a personalized procedural roadmap.
Capture global alignment and curve flexibility with standing, seated, and supine full-body slot scans and weight-bearing 3D lumbar imaging to inform a patient-specific deformity plan.
Leverage AI-driven, patient-specific surgical plan options from an AiBLE™ Clinic Engineer utilizing adult deformity predictive models that anticipate post-operative compensation, integrating the global alignment plan with the screw trajectory plan.
Complex spine procedures require continual assessment throughout surgery. AiBLE™ technologies connect navigation, robotics, imaging, alignment technologies, and reconciliation tools to help support execution of the surgical plan while enabling informed decision-making at critical procedural moments.
Restore disc height with the versatile interbody designed to support multi-level degenerative scoliosis and sagittal deformity, while advanced surface technology and honeycomb structure promote strong bone growth and reliable stability.
Establish exposure and maintain visualization through hemostatic sealing of soft tissue and bone, enabling a clear pathway for robotic screw placement and procedural access.
Execute the surgical plan with robotic screw placement and a modular fixation platform designed for surgical flexibility, supporting shank-first and pre-assembled workflows and delivering over 120 implant configuration options to help optimize constructs across a wide range of deformity procedures.
Reconcile the surgical plan intraoperatively through dynamic visualization of vertebral motion as it occurs — without additional radiation.
Perform precise bone cutting and decompression with navigated drilling and real-time visual feedback.
Apply controlled distraction through versatile shank or head attachment options to facilitate interbody and biologic placement.
Achieve planned alignment with a patient-specific rod manufactured to serve as a physical template from the approved surgical plan.
Deliver highly osteoinductive demineralized allograft in a resorbable mesh that conforms to anatomy and helps prevent graft migration.
Verify the final construct with 2D long-film and 3D imaging, confirming implant placement and global alignment against the surgical plan.
By linking outcomes back to planning and execution, the ecosystem supports ongoing learning and more informed decision-making across future cases.
Enable longitudinal review of patient reported and radiographic outcome data to help surgeons learn, compare, and evolve their practice over time.
† Siemens Healthineers AG is the legal manufacturer of the Multitom Rax
‡ ePRO is an offering of OBERD™*
§ O-arm™ 3D Long Scan (3DLS) requires use with the StealthStation™ or Stealth AXiS™ Core navigation system.
◊ Data on file. Animal studies are not necessarily indicative of human clinical outcomes.