OEM Microsurgery Bed
for OEM Integration and Microsurgical Applications

The OEM Microsurgery Bed delivers precise, vibration-free motion for complex surgical procedures in ophthalmology, neurosurgery, and microsurgery. Its motorized height, tilt, and rotation controls enable exact patient positioning and superior surgical accuracy. With a modular, customizable design, it adapts seamlessly to clinical workflows and OEM system integrations worldwide.

Feature Specification
Height Adjustment 500 – 800 mm
Tilt Angles ±15° (Trendelenburg / Reverse)
XY Movement ±50 mm
Load Capacity up to 200 kg

Why Conventional Surgical Beds Fall Short in Microsurgery

Modern microsurgery requires submillimeter stability and ergonomic access under high magnification. Conventional operating tables often lack the motion precision, modularity, and control flexibility demanded by today’s surgical and OEM applications.

Limited Fine Adjustment

Most standard OR tables provide only coarse mechanical motion, restricting precise alignment for microscope-guided procedures.

Vibration and Motion Drift

Vibration or instability can compromise surgical accuracy, especially under high magnification in ophthalmic or neurosurgical settings.

Complex Integration

Typical surgical tables cannot connect directly to microscopes, navigation systems, or digital control interfaces – complicating OEM system development.

Lack of Mobility and Battery Operation

Fixed installations and the absence of backup power reduce flexibility for mobile ORs and R&D environments.

Advantages and Benefits

The OEM Microsurgery Bed eliminates these limitations through advanced motorization, modular design, and OEM integration flexibility. Built in Germany under ISO13485, it ensures precise, repeatable positioning and long-term reliability across surgical and research environments.

Motorized Adjustments

Precision-controlled height, tilt, and rotation for accurate surgical access.

Modular System Architecture

Removable head, leg, and arm supports for maximum flexibility.

Patient-Centered Design

Low entry height and stable surface increase patient safety and comfort.

Remote Control & Memory Function

Save time through repeatable positioning and ergonomic control.








    Get in Touch
    Co-Develop Your Surgical Positioning System with gKteso Precision

    Contact us to learn how to integrate the OEM Microsurgery Bed for precise, motorized patient positioning and seamless system integration in ophthalmic, neurosurgical, and microsurgical applications.

    • Modular platform with customizable motion profiles and support geometry
    • Seamless integration with microscopes and digital control systems
    • CE-compliant, FDA-ready, and built for long-term clinical performance

    Seamless Integration
    into Clinical Workflows

    The OEM Microsurgery Bed integrates effortlessly into operating rooms and OEM development environments. It connects directly with surgical microscopes, navigation systems, and imaging devices via customizable interfaces. The platform supports analog, digital, and API-based control – enabling synchronized motion logic, memory functions, and system-level automation.

    Fully EU MDR 2017/745 compliant and tested under IEC 60601-1, the system is also available with FDA-ready documentation for North American partners. Its low entry height improves accessibility and safety, while the stable base ensures vibration-free operation, even under heavy microscope setups.

    Our Applications
    for Microsurgery and OEM Development

    Precise, ergonomic, and adaptable – the OEM Microsurgery Bed supports a wide range of microsurgical and research applications. From ophthalmic and neurosurgical procedures to robotics and preclinical testing, it delivers motion control that meets the highest technical and clinical standards.

    • Motorized height, tilt, and rotation for precision workflows
    • Stable, low-vibration platform for microscope-based procedures
    • Compatible with Zeiss, Leica, and Haag-Streit surgical microscopes

    Ophthalmic Surgery

    Micro and Neurosurgery

    ENT & Skull Base

    Surgical Research & Robotics

    Veterinary Microsurgery

    Device Testing & Development

    Learn more about our projects

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    Frequently Asked Questions

    How does the programmable memory function improve throughput and setup consistency in automated surgical research or robotic setups?
    The OEM Microsurgery Bed features an advanced remote control system with programmable memory presets for repeatable positioning workflows. This capability allows robotic development teams and researchers to save specific coordinates, ensuring identical patient orientation across multiple testing cycles. By automating complex alignment sequences, the table significantly reduces system setup times and eliminates human positioning errors under the microscope. It serves as a vital component for independent system integrators looking to implement standardized, software driven motion logic into their surgical platforms.

    Engineered for seamless multi-vendor integration, the bed connects effortlessly with leading surgical microscopes. It supports analog, digital, and API based communication protocols to allow direct synchronization with external optical or navigation hardware. This open interface approach enables real time data exchange, allowing the table’s motion logic to adapt dynamically to the microscope’s focus parameters. The stable base is structurally reinforced to guarantee vibration free operation, even when heavy microscope setups are physically attached to the system.

    The inclusion of both battery and mains power operation gives the platform exceptional versatility for mobile operating rooms and rapid device testing environments. This dual power configuration provides a reliable backup source, preventing sudden voltage drops from disrupting sensitive micromanipulations during live surgery or R & D procedures. It allows developers to move the entire setup freely between different laboratory stations without losing system calibrations or active presets. Combined with low vibration mechanics, it ensures consistent geometric stability regardless of whether the system is connected to a fixed wall outlet.
    To provide optimal surgical access under high magnification, the platform delivers motorized tilt angles of plus or minus 15 degrees for Trendelenburg and reverse positioning. This physical flexibility is augmented by a highly modular system architecture featuring completely removable head, leg, and arm supports. These interchangeable components allow developers to tailor the patient support geometry for highly specialized ENT, skull base, or ophthalmic entry angles. Throughout these steep adjustments, the robust mechanical frame safely supports up to 200 kg while maintaining strict submillimeter dimensional stability.
    The platform features a highly modular system architecture with completely removable head, leg, and arm supports to easily adapt to different clinical disciplines. This structural flexibility allows independent system integrators to customize the patient support geometry for specialized ophthalmic, neurosurgery, or skull base procedures. Throughout these diverse configurations, the motorized height and tilt controls deliver precise alignment and superior surgical accuracy under high magnification microscopes.

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