Spatial image guidance across complex procedures.

A shared registration and tracking platform designed for application-specific clinical views.

Spine surgery

Patient-specific vertebral anatomy, planned trajectories, and tracked instruments presented together for workflows where direct anatomical visibility is limited.

01

VERTEBRAL MAP

A conceptual information layer intended to support spatial understanding within this workflow.

02

PLANNED PATH

A conceptual information layer intended to support spatial understanding within this workflow.

03

INSTRUMENT

A conceptual information layer intended to support spatial understanding within this workflow.

Orthopedic oncology

Tumor targets, relevant anatomy, and planned boundaries visualized in patient-specific spatial context to support orientation during complex procedures.

01

TARGET

A conceptual information layer intended to support spatial understanding within this workflow.

02

BOUNDARY

A conceptual information layer intended to support spatial understanding within this workflow.

03

ORIENTATION

A conceptual information layer intended to support spatial understanding within this workflow.

Biopsy

Planned access paths and instrument trajectory shown relative to the target and surrounding anatomy during image-guided localization.

01

ACCESS PATH

A conceptual information layer intended to support spatial understanding within this workflow.

02

TARGET

A conceptual information layer intended to support spatial understanding within this workflow.

03

DEPTH

A conceptual information layer intended to support spatial understanding within this workflow.

Interventional radiology

Registered imaging and tracked instrument information brought into spatial context for percutaneous and image-guided interventions.

01

IMAGE FUSION

A conceptual information layer intended to support spatial understanding within this workflow.

02

TRACKING

A conceptual information layer intended to support spatial understanding within this workflow.

03

SPATIAL VIEW

A conceptual information layer intended to support spatial understanding within this workflow.

Endoscopic spine surgery, reimagined in spatial context.

As of June 2026, AMAR CAS TECHNOLOGIES INC. has formed strategic R&D partnerships with MaxMore Spine Products in the United States and Hoogland Spine Products in Germany.

Together, these collaborations are intended to explore a new generation of spatially guided endoscopic workflows—with the shared ambition of fundamentally reshaping the endoscopic spine procedure landscape.

A surgeon wearing an XR headset performs endoscopic spine surgery over a blue-draped patient while an aligned lumbar spine and access corridor appear in the operative field.
01United States

AMAR × MaxMore

Joint R&D focused on bringing spatial image guidance into endoscopic spine workflows.

02Germany

AMAR × Hoogland

Joint R&D focused on advancing device-aware visualization and procedural context for endoscopic spine workflows.

Partnership information and effective date supplied by AMAR CAS. Technology under development.

LET'S WORK / COLLABORATION

Bring image guidance into the field of view.

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