What Microbot Medical Builds
Microbot Medical builds robotic systems for minimally invasive endovascular catheter procedures. Its central product is the LIBERTY Surgical Robot, an endovascular robotic system designed to guide standard guidewires, microcatheters, and therapeutic devices through human blood vessels. Unlike traditional capital-heavy multi-arm surgical consoles, Microbot Medical focuses on a compact profile with a single-use disposable consumable model. The operational unit mounts directly to the patient catheterization table, which eliminates the need for large dedicated floor tracks or extensive operating room renovations. The business model combines an initial equipment fee for the reusable drive and controller workstation with ongoing recurring revenue from single-use disposable robotic cassettes. Hospitals and ambulatory surgery centers purchase the system through capital procurement or structured placement agreements, followed by procedure-based consumable orders for each surgical case. Microbot Medical targets interventional radiologists, interventional cardiologists, and vascular surgeons who perform catheter-based stenting, embolization, and angioplasty. The core hardware architecture isolates sterile patient-contact mechanical components within the disposable cartridge, which removes hospital reprocessing cycles and lowers post-procedure turnaround time between scheduled patient interventions.
Microbot Medical Robots and Models
These are the Microbot Medical models a buyer is most likely to be evaluating, and what each one actually does.
- LIBERTY Endovascular Robotic System — The LIBERTY Endovascular Robotic System is a table-mounted electromechanical robotic drive designed for vascular catheter navigation. It mounts directly to standard fluoroscopy procedure tables, which preserves floor space in crowded catheterization suites. Linear drive motors advance, retract, and rotate standard off-the-shelf guidewires and microcatheters. This mechanized steering provides millimeter-level positional feedback during vessel traversal, which reduces manual device buckling during difficult arterial navigation. The system operates alongside standard hospital fluoroscopy C-arms without requiring specialized structural ceiling suspensions.
- LIBERTY Single-Use Disposable Drive Cassette — The LIBERTY Single-Use Disposable Drive Cassette is a pre-sterilized consumable module that interfaces between the drive motor and standard interventional guidewires. The cassette houses the mechanical drive rollers that physically grip and rotate delicate surgical wires. Because the cassette arrives sterile and is discarded after a single patient intervention, clinical staff avoid post-operative sterilization workflows and biological cross-contamination risks. Its mechanical track accepts commercial guidewires from third-party manufacturers, allowing physicians to choose familiar vascular tools.
- LIBERTY Remote Operating Console — The LIBERTY Remote Operating Console is a mobile workstation featuring ergonomic joysticks and control screens for the operating physician. Interventionalists steer the table-mounted drive unit from behind a radiation protection shield or outside the immediate procedure room. This remote interface removes the clinician from direct scattered X-ray radiation exposure, which eliminates the need to wear heavy lead aprons during long procedures. Programmable speed settings and rotational locks allow fine motor control during precise intracranial or peripheral catheter placements.
Microbot Medical Pricing and Availability
Microbot Medical has not published fixed commercial list prices for the LIBERTY platform. Capital equipment costs in endovascular robotics generally range between $250,000 and $600,000 for remote operating consoles, while single-use sterile drive cassettes typically add $1,000 to $2,500 per clinical procedure. Hospital buyers should clarify whether Microbot Medical requires an outright capital purchase, an operational lease, or a committed consumable volume placement agreement. In consumable placement models, the vendor amortizes console hardware fees across scheduled procedure pack orders, which reduces initial cash outlays for high-volume centers. Regulatory clearances govern commercial availability. The company has pursued regulatory approval routes with the United States Food and Drug Administration (FDA) and international bodies for peripheral and coronary indications. Delivery lead times depend on manufacturing batch allocation and local electrical safety clearance certifications. Buyers must also calculate routine software license renewals, preventative maintenance contracts, and warranty coverage, which typically cost 8% to 12% of hardware value annually after the initial warranty expires.
Who Microbot Medical Robots Are For
The LIBERTY platform suits high-volume catheterization laboratories and ambulatory surgical centers running daily peripheral vascular, cardiology, or neurovascular interventions. Operators seeking to lower occupational orthopedic strain and scattered fluoroscopy radiation exposure benefit from the remote console design. Facilities with restricted operating room square footage can mount the compact unit without displacing existing fluoroscopy imaging tables or mobile C-arms. Conversely, hospitals seeking a multi-specialty general surgical robot for soft-tissue abdominal, thoracic, or urological procedures should look elsewhere, as the LIBERTY platform exclusively handles endovascular lumen navigation. Small community clinics with low monthly angiographic caseloads will struggle to justify annual software service fees and recurring single-use consumable pack commitments. Teams that rely exclusively on manual tactile touch during complex aortic aneurysm repairs may also find motorized joystick steering restrictive without adequate visual feedback systems. Buyers must balance the procedural volume of vascular interventions against the per-case cost of single-use disposable cassettes.
- Verify regulatory clearance status with the Food and Drug Administration (FDA) and regional health authorities for the specific anatomical indications your clinical team plans to treat.
- Evaluate consumable unit economics by calculating the per-procedure disposable cassette cost against local insurance reimbursement rates for catheter-based robotic procedures.
- Inspect physical catheterization table mounting brackets to ensure mechanical stability and compatibility with your facility's existing fluoroscopic imaging equipment.
- Assess third-party device compatibility to confirm that the robotic drive accepts your hospital's preferred brands of commercial microcatheters, guidewires, and delivery sheaths.
- Review technical service coverage and spare unit availability to prevent operating suite downtime if a motor drive or controller console malfunctions.
- Calculate lead shielding room alterations or control console network cable routing needs to ensure the remote workstation operates without introducing room hazards.
Microbot Medical Alternatives
Robots and vendors a buyer typically cross-shops against Microbot Medical.
- Siemens Healthineers Corindus CorPath GRX — The Corindus CorPath GRX is a dedicated vascular robotic platform cleared for coronary and peripheral interventions. It uses a bedside articulating arm and single-use cassettes. Unlike the lightweight table-mount LIBERTY design, CorPath uses a heavier robotic arm assembly that requires more floor footprint in the procedure suite.
- Intuitive Surgical da Vinci — The Intuitive Surgical da Vinci is a multi-quadrant soft-tissue surgical system built for urology, gynecology, and general surgery. It operates on laparoscopy principles using multi-jointed surgical tools rather than endovascular catheter guidance, making it a completely different clinical tool category from Microbot Medical's endovascular platform.
- Johnson and Johnson Auris Health Monarch — The Auris Health Monarch platform from Johnson and Johnson uses a flexible robotic endoscope primarily for diagnostic and therapeutic bronchoscopy in pulmonary nodules. While both utilize flexible lumen navigation, Monarch targets endoscopic airway procedures, whereas the LIBERTY robot specifically manipulates intravascular blood vessel wires.
- Medtronic Hugo — The Medtronic Hugo system provides modular multi-arm soft-tissue robotic surgery for urological and gynecological operations. Hugo competes against laparoscopic surgical robots and does not perform endovascular guidewire manipulation. Catheterization teams evaluating intravascular access cannot use Hugo for endovascular arterial interventions.
- CMR Surgical Versius — CMR Surgical Versius consists of portable, modular robotic arms designed for minimal access abdominal and thoracic surgeries. It offers flexible room-to-room transit for laparoscopic cases. Versius does not support intravascular wire feeds or catheter navigation, separating it functionally from the vascular focus of Microbot Medical.
Recent news
A dated log of developments, each tied to its primary source.
- 2026-09 — Microbot Medical reported that its second-quarter sales more than doubled following the launch of its LIBERTY Surgical Robot. Medical & surgical robots
- Expansion of cleared clinical indications from peripheral vascular applications to complex neurovascular stroke interventions.
- Published clinical trial data evaluating procedural times, fluoroscopy radiation exposure reductions, and technical success rates compared to manual vascular catheterization.
- Distribution partnerships and regional hospital commercial supply agreements across North American, European, and Asian healthcare systems.
Bottom Line
Microbot Medical offers an alternative to heavy, capital-intensive vascular robotics by emphasizing a compact, table-mounted motor drive and disposable sterile cassettes. The LIBERTY Surgical Robot aims to lower physician radiation exposure while fitting into existing catheterization rooms without major architectural changes. Buyers should evaluate procedure case volumes, third-party catheter compatibility, and the ongoing expense of single-use consumables before choosing this platform over conventional manual interventional techniques.
Explore our comprehensive directory of surgical robots and medical automation systems to compare clinical deployment costs.
FAQs
What type of surgical procedures does the LIBERTY robot perform?
The LIBERTY robot performs minimally invasive endovascular catheterization procedures in peripheral, coronary, and neurovascular anatomy. Interventional specialists use it to navigate arterial paths, deliver diagnostic imaging fluids, and deploy therapeutic devices like stents or balloons. It does not perform open abdominal, thoracic, orthopaedic, or general laparoscopic soft-tissue operations.
How does the LIBERTY system reduce radiation exposure for physicians?
The LIBERTY system reduces radiation exposure by moving the operator away from the fluoroscopy table to a remote operating console. Clinicians steer the motorized guidewire drive using joysticks behind lead protective barriers or outside the catheterization room. This separation cuts direct exposure to scattered X-ray beams and eliminates the need to wear heavy lead aprons during operations.
Is the LIBERTY system compatible with standard surgical guidewires?
The LIBERTY platform works with standard off-the-shelf microcatheters, vascular guidewires, and delivery sheaths from major medical device manufacturers. Because the drive cassette accommodates industry-standard diameters, hospital procurement teams do not have to replace their existing catheter inventories with proprietary therapeutic wires, which helps maintain existing supply chain relationships.
What is the primary difference between LIBERTY and the da Vinci robot?
The primary difference is clinical purpose and mechanical architecture. Intuitive Surgical's da Vinci is an expansive multi-arm soft-tissue platform designed for laparoscopic abdominal and pelvic surgery. The LIBERTY system is a compact, table-mounted electromechanical feeder engineered strictly to advance and rotate flexible vascular catheters through blood vessels.
Does the LIBERTY robot use disposable or reusable components?
The LIBERTY platform combines a reusable robotic base drive with single-use disposable cassettes. The drive base, motor system, and remote control console remain in the hospital suite as permanent assets. The mechanical cassette that touches the sterile guidewires is discarded after each patient intervention, which eliminates instrument reprocessing and cross-contamination risks.
What infrastructure changes does a hospital need to install LIBERTY?
A hospital needs minimal infrastructure changes to install the LIBERTY system because it mounts directly to standard fluoroscopic procedure tables. Facilities do not need reinforced ceiling mounts, structural floor anchors, or specialized dedicated equipment rooms. The main requirement is routing safe control cables or wireless links between the procedure table and the remote console.