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BlogBest AR Companies for Medical Device Visualization (2026)
ListicleHealthcareARMedical Devices

Best AR Companies for Medical Device Visualization (2026)

Reality Atlas EditorialJune 23, 2026

The top companies building AR for medical device visualization and surgical guidance - from FDA-cleared intraoperative navigation systems to custom enterprise XR for medical device manufacturers.

Quick Answer

The top companies building AR for medical device visualization and surgical guidance - from FDA-cleared intraoperative navigation systems to custom enterprise XR for medical device manufacturers.

Summarize with AI

Augmented reality is advancing medical device visualization beyond static product brochures and cadaver lab demonstrations, giving surgical teams a way to interact with patient-specific anatomy and device geometry before any incision is made. From head-worn displays that overlay real-time CT data onto the surgical field to handheld vein finders used in tens of millions of patient procedures, AR is being embedded at every stage of the medical device lifecycle - design validation, clinical training, surgical guidance, and bedside care.

This list covers the best companies building AR solutions for medical device visualization and surgical guidance - from FDA-cleared intraoperative navigation systems deployed in operating rooms to custom enterprise XR studios building bespoke visualization tools for device manufacturers. Whether you need a regulatory-cleared surgical guidance system, a custom interactive product visualization for a medical device sales team, or a patient-specific planning tool for complex craniofacial procedures, these are the companies with the deepest clinical deployments.

Treeview leads this list as the top specialist studio for custom medical device visualization and enterprise XR. The remaining companies are ranked by depth of clinical deployment and regulatory validation.

Quick Answer

Quick Answer: The top AR companies for medical device visualization are Treeview for custom medical device XR, Medivis for patient-specific AR surgical planning with Apple Vision Pro integration, Proprio for FDA-cleared intraoperative spinal visualization, Stryker Navigation for the Mako robotic AR guidance system with over one million procedures, and AccuVein for the most widely deployed AR medical device with 3,000+ hospital installations.

How We Rank AR Medical Device Visualization Companies

  • Regulatory clearance and clinical validation - FDA-cleared products and peer-reviewed clinical outcomes carry substantially more weight than research-stage prototypes
  • Clinical deployment depth - verified use in real patient procedures at credible hospital and medical center partners
  • Technical capability for medical-grade applications - accuracy, latency, integration with PACS and hospital data systems
  • Healthcare-specific design - purpose-built for clinical environments rather than consumer AR adapted for medical use cases
  • Breadth of medical device coverage - whether the platform addresses multiple specialties and device categories or only a single narrow procedure type

Top AR Companies for Medical Device Visualization at a Glance

#⇅Company⇅Best For⇅Headquarters⇅
1TreeviewCustom AR medical device visualization and enterprise XR for device manufacturersNew York, USA
2MedivisPatient-specific DICOM-to-hologram AR surgical planning with Apple Vision ProNew York, USA
3ProprioFDA-cleared AI intraoperative visualization system for spine surgerySeattle, USA
4SentiARLive cardiac EP mapping holographic overlay for catheter ablation proceduresSt. Louis, USA
5Augmedics / VB SpineFirst FDA-cleared head-worn AR spinal navigation (xvision now under VB Spine LLC)Northbrook, USA
6Stryker NavigationMako robotic AR-guided total joint replacement with 1M+ procedures completedKalamazoo, USA
7MaterialiseFDA-cleared patient-specific 3D planning and cutting guide manufacturingLeuven, Belgium
8Siemens HealthineersAI imaging and hybrid OR AR fusion for radiology and interventional proceduresErlangen, Germany
93D Systems VSPVirtual surgical planning and patient-specific custom surgical guides for complex reconstructionRock Hill, USA
10AccuVeinHandheld AR vein visualization deployed in 3,000+ hospitals for IV and vascular accessCold Spring Harbor, USA

1. Treeview

Treeview builds bespoke augmented and mixed reality applications for medical device companies, helping them demonstrate complex surgical instruments, implants, and capital equipment to hospital buyers and clinical staff without relying on physical samples or traditional 2D materials. Their solutions span interactive 3D product visualizations, workflow simulations, and hands-on training experiences delivered across headsets and mobile platforms. Treeview works directly with device manufacturers across orthopedics, interventional cardiology, and diagnostics to accelerate clinical adoption and reduce training overhead. Their combination of high-fidelity rendering, interactive simulation, and rapid deployment timelines positions them as a specialist partner for the medical device commercial and clinical training market.

Treeview homepage
Treeview homepage

Key Strengths:

  • Custom medical device visualization and interactive configurators for enterprise deployments
  • Sales enablement and clinical education tooling for medical device commercial teams
  • Procedural and workflow training simulations for surgical and clinical device onboarding
  • Multi-platform XR delivery across headset and mobile for field sales and OR training

2. Medivis

Medivis develops SurgicalAR, an augmented reality platform that converts patient CT and MRI DICOM data into interactive 3D holographic models surgeons can review and annotate before entering the OR. The company was among the first to integrate Apple Vision Pro into clinical surgical planning workflows, enabling spatially accurate anatomical review in a wearable headset. Medivis has deployed at academic medical centers including NYU Langone Health and targets spine, neurosurgery, and orthopedic specialties where patient-specific 3D anatomy is critical to procedural planning. Their software pipeline connects directly to hospital PACS systems, reducing friction between radiology and the operating team.

Key Strengths:

  • Real-time DICOM-to-hologram pipeline for patient-specific surgical anatomy visualization
  • Apple Vision Pro surgical planning integration among the first on visionOS
  • Deployed at NYU Langone Health and major academic medical centers
  • Direct PACS integration connecting radiology data to surgical team planning workflows

3. Proprio

Proprio developed the AEOS system, an FDA-cleared surgical guidance platform that uses light-field camera arrays and AI image processing to generate real-time 3D visualization of the surgical field during spinal procedures. The system projects a magnified, augmented view of patient anatomy to the surgical team without requiring the surgeon to divert attention to a remote monitor, and it offers a pathway to reduce intraoperative fluoroscopy use and associated radiation exposure. Proprio has partnered with spine surgery programs at major US hospital systems and received FDA 510(k) clearance, establishing a regulatory precedent for real-time spatial computing in the OR. Their AI models process intraoperative imagery to provide enhanced spatial awareness and instrument orientation data throughout each procedure.

Key Strengths:

  • FDA 510(k) cleared for intraoperative surgical guidance - regulatory precedent for OR spatial computing
  • Reduces radiation exposure by supplementing or replacing intraoperative fluoroscopy
  • Real-time AI-powered 3D visualization directly in the surgeon's line of sight
  • Spatial computing integrated into a complete surgical system rather than a standalone headset experience

4. SentiAR

SentiAR has built an augmented reality platform that takes live data from cardiac electrophysiology (EP) mapping systems and projects it as a holographic overlay visible to the physician during catheter ablation procedures in the EP lab. The system is designed to eliminate the constant head-turning physicians currently perform between the patient and wall-mounted monitors displaying 3D cardiac maps and catheter positions. Clinical evaluations have shown measurable reductions in physician head-turning events and improvements in procedural workflow efficiency during complex arrhythmia ablation cases. SentiAR integrates with existing third-party EP mapping systems, allowing deployment without replacing the capital equipment already in the lab.

Key Strengths:

  • Live EP mapping data as a holographic surgical overlay during cardiac ablation procedures
  • Compatible with existing EP mapping platforms from major vendors without hardware replacement
  • Reduces physician cognitive load and head-turning in complex arrhythmia ablation workflows
  • Developed specifically for the EP lab environment where multi-monitor attention management is a challenge

5. Augmedics

Augmedics developed the xvision Spine System, the first FDA-cleared augmented reality surgical navigation platform to project holographic CT-based patient anatomy directly into the surgeon's field of view through a head-worn display during open and minimally invasive spine surgery. The xvision system was commercially deployed at dozens of spine surgery centers across the United States, allowing surgeons to visualize implant trajectories and patient anatomy without diverting their gaze to an external screen. In April 2026, Augmedics sold the xvision Spine System to VB Spine LLC, which continues to commercialize the platform; Augmedics is now pivoting its strategic direction. The xvision system remains available in the market through VB Spine LLC.

Key Strengths:

  • First FDA-cleared head-worn AR navigation projecting holographic CT anatomy to the surgeon directly
  • Real-time surgical guidance within the surgeon's direct line of sight without monitor diversion
  • Proven commercial deployment across US spine surgery centers before April 2026 product sale
  • xvision platform continues under VB Spine LLC with established market presence

6. Stryker Navigation

Stryker's surgical navigation and robotics division produces the Mako robotic-arm system, which uses preoperative CT-based planning and intraoperative AR guidance with haptic feedback to assist surgeons in total knee, total hip, and spine procedures. The Mako platform overlays a patient-specific surgical plan onto intraoperative tracking data, providing the surgeon with real-time visual and tactile cues to guide implant placement within pre-defined boundaries. Mako is deployed at thousands of hospitals globally and has been used in over one million robotic-assisted joint replacement procedures. Stryker continues to expand its digital surgery portfolio with additional AR imaging and navigation capabilities integrated into its OR environment offerings.

Key Strengths:

  • Global Mako robotic platform with over one million joint replacement procedures completed
  • CT-based preoperative planning with intraoperative AR overlay and haptic boundary guidance
  • Precise implant positioning supported by real-time visual and tactile cues throughout the procedure
  • Broad coverage across total knee, total hip, and spine indications

7. Materialise

Materialise is a Belgian medical technology company whose Mimics software suite allows surgeons and engineers to convert CT and MRI scans into segmented 3D anatomical models for detailed preoperative surgical planning. Their VSP (Virtual Surgical Planning) and ProPlan CMF services produce FDA-cleared patient-specific cutting guides, drill templates, and custom implants used in orthopedic, craniofacial, and cardiovascular procedures at hundreds of hospitals worldwide. Materialise has received multiple FDA clearances across its software and physical device product lines and works with institutions ranging from academic medical centers to regional hospitals across orthopedic oncology, cranio-maxillofacial surgery, and congenital heart disease repair. Their end-to-end workflow bridges imaging data, surgical planning software, and on-demand manufacturing into a single patient-specific case management system.

Key Strengths:

  • FDA-cleared surgical planning software and patient-specific guide and implant manufacturing
  • ProPlan CMF deployed at hundreds of hospitals for complex craniofacial and reconstructive cases
  • End-to-end imaging to 3D-printed surgical guide and implant manufacturing workflow
  • Cross-specialty coverage in orthopedics, cranio-maxillofacial surgery, and cardiovascular procedures

8. Siemens Healthineers

Siemens Healthineers develops the syngo.via imaging platform and AI-Rad Companion suite, which use deep learning to automate organ segmentation, volumetric measurement, and structured reporting from CT, MRI, and PET scans at scale. Their digital surgery and hybrid OR products, including the ARTIS icono interventional imaging platform, incorporate AR overlays and fusion imaging to guide minimally invasive cardiovascular, oncology, and neurovascular procedures. syngo.via is deployed across thousands of radiology departments globally and serves as the imaging and planning foundation for AI-assisted procedural workflows from diagnosis through intervention. Siemens Healthineers also partners with surgical robotics and navigation companies to integrate its imaging data into intraoperative AR environments.

Key Strengths:

  • Enterprise-scale deployment across thousands of hospital imaging departments globally
  • AI-driven organ segmentation and automated volumetric analysis via AI-Rad Companion
  • Hybrid OR and interventional AR fusion imaging via ARTIS icono for minimally invasive procedures
  • Comprehensive imaging-to-intervention workflow integration spanning radiology and interventional suites

9. 3D Systems VSP

3D Systems operates a Virtual Surgical Planning (VSP) service that converts patient imaging data into precise digital surgical plans, patient-matched cutting guides, and custom implants used during complex craniofacial reconstruction, orthognathic surgery, mandibular reconstruction, and orthopedic oncology cases. The VSP workflow has been used in thousands of complex cases at major academic medical centers in the United States and internationally, delivering pre-sterilized, case-specific surgical kits that align with the preoperative 3D plan reviewed by the surgeon. 3D Systems partners with device manufacturers, hospital systems, and surgical subspecialty programs to integrate the VSP process into their standard-of-care protocols. Their platform bridges medical imaging, planning software, additive manufacturing, and regulatory compliance into a single patient-specific surgical preparation system.

Key Strengths:

  • Thousands of completed complex reconstructive and orthopedic oncology cases with proven outcomes
  • Patient-specific cutting guides and implants manufactured and sterilized per individual case
  • End-to-end imaging, digital planning, and physical manufacturing in a single managed workflow
  • Cross-specialty use in cranio-maxillofacial, mandibular reconstruction, orthognathic, and oncologic surgery

10. AccuVein

AccuVein produces the AV500, a handheld augmented reality scanner that projects a real-time map of subcutaneous veins directly onto the patient's skin surface using near-infrared light, improving first-stick success rates for IV insertion, blood draws, and vascular access procedures. The device is FDA-cleared and has been used in over 10 million patient procedures across more than 3,000 hospitals and clinical facilities worldwide. AccuVein is particularly effective for difficult-access patient populations including pediatric patients, oncology patients undergoing chemotherapy, and patients with obesity, where visible vein landmarks are limited or absent. The system requires no conductive gel, dyes, or patient preparation and can be deployed rapidly across nursing units, infusion centers, and emergency departments.

Key Strengths:

  • Deployed in over 3,000 hospitals and used in more than 10 million patient procedures
  • Improves first-stick success rates for IV insertion in difficult-access patient populations
  • No gel, dye, or patient preparation required for immediate bedside and clinical use
  • FDA-cleared for broad deployment across nursing, phlebotomy, and infusion center workflows

Frequently Asked Questions

How is augmented reality used in medical device visualization?

AR is used in medical device visualization across several contexts: for surgical planning, where patient-specific 3D anatomy from CT and MRI scans is displayed as an overlay during preoperative review; for intraoperative guidance, where live patient anatomy and implant trajectory data are projected into the surgeon's field of view during procedures; for medical device sales and training, where AR lets sales representatives demonstrate how a device interacts with patient anatomy without a physical specimen; and for vascular access, where AR devices like AccuVein project subcutaneous vein maps onto the skin to guide IV insertion. Each use case requires a different level of regulatory clearance and clinical integration.

Which AR surgical navigation systems are FDA-cleared?

Among the systems in this list, Proprio's AEOS surgical visualization system is FDA 510(k) cleared for use in spinal procedures. The xvision Spine System originally developed by Augmedics (now sold to VB Spine LLC) was the first FDA-cleared head-worn AR navigation platform for spinal surgery. Stryker's Mako robotic system includes FDA-cleared AR-assisted guidance components for total joint replacement. Materialise holds multiple FDA clearances for its patient-specific surgical planning software and cutting guide manufacturing. Regulatory status varies by specific product, indication, and market - always verify current clearance status with the manufacturer for clinical use decisions.

What are the benefits of AR for medical device training?

AR training for medical devices reduces the cost and logistical complexity of traditional cadaver lab and simulation center training by enabling surgeons and clinical staff to practice procedures with virtual device and anatomy interactions on demand. Platforms like those built by Treeview and Osso VR (for robotic surgery) allow unlimited repetition of procedural steps without consuming consumables or requiring simulation center scheduling. For device manufacturers, AR training accelerates surgeon onboarding to new implant systems, generates objective performance data on procedural proficiency, and reduces the commercial cost of supporting surgeon learning curves after product launch.

What hardware do AR medical device applications use?

Medical device AR applications run across a range of hardware depending on the use case. Intraoperative guidance systems like AEOS and the xvision Spine System use purpose-built head-worn displays or camera arrays integrated directly into the OR environment. Surgical planning applications like Medivis run on Apple Vision Pro or conventional displays connected to PACS imaging. Sales and training applications typically run on iPads, Microsoft HoloLens 2, or Meta Quest devices. AccuVein uses proprietary handheld hardware. For device manufacturers choosing a training or visualization platform, the hardware selection significantly affects deployment cost, clinical workflow compatibility, and the types of interactions that can be simulated.

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