Operating Table Accessories

Carbon-Fiber Microsurgical Frames & Hand Surgical Tables — Extended-Reach Operating Platforms for Hand Surgery, Microsurgery, Plastic Surgery & Ophthalmology

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Carbon-Fiber Microsurgical Frames & Hand Surgical Tables — Extended-Reach Operating Platforms for Hand Surgery, Microsurgery, Plastic Surgery & Ophthalmology

Product Title

Carbon Fiber Microsurgical Frame and Hand Surgical Table | U-Shaped and Bow-Shaped Hand Support | Connected to Operating Table Head Section with Bilateral Protrusion | Anti-Static PU Leather and High-Density Memory Sponge Cushions | Customizable Thickness | Compatible with Any Brand of Surgical Bedside Rail

Product Overview

This specialized range of carbon-fiber microsurgical frames and hand surgical tables provides the extended-reach operating platforms that hand surgeons, microsurgeons, plastic surgeons, and ophthalmic surgeons require to perform lengthy, precision-intensive procedures in ergonomic comfort. Each frame is designed to connect to the head section of the operating table and protrude from both ends, creating an extended surgical workspace that allows the entire surgical team — surgeon, assistant, and scrub nurse — to sit comfortably at the patient's side during micro procedures that may last many hours.

The extended-reach design is not merely a convenience — it is an ergonomic and clinical necessity in microsurgery. Hand surgery, free-flap reconstruction, nerve repair, replantation, and ophthalmic microsurgery demand that the surgeon maintain a stable, close-range viewing position through an operating microscope for extended periods. Without an extended platform, the surgeon is forced to stand or perch on an unstable stool at the edge of the standard operating table, leading to fatigue, tremor, and compromised precision. The microsurgical frame eliminates this problem by extending the working surface beyond both ends of the operating table, creating a broad, stable platform at the exact height and distance needed for comfortable seated microsurgical technique.

All frames in the range are constructed from carbon fiber for maximum rigidity with minimum weight, and are compatible with any brand of surgical bedside rail via universal mounting interfaces. The patient-contact surfaces are available in anti-static PU leather or high-density rebound memory sponge covered with PU leather, providing comfortable, pressure-distributing support for the patient's upper limb during prolonged procedures. Thickness is customizable per request, allowing facilities to specify the exact platform dimensions needed for their specific operating room setup, surgical discipline, and patient population.

Key Features & Clinical Advantages

  • Carbon fiber construction — All microsurgical frames are fabricated from carbon fiber, delivering exceptional rigidity with minimal weight. Carbon fiber's high strength-to-weight ratio ensures that the extended platform remains absolutely stable under the weight of the patient's limb and the surgeon's hands without sagging, flexing, or vibrating — critical for microsurgical precision where even sub-millimeter platform movement can compromise anastomotic suturing or nerve repair.

  • Extended-reach bilateral protrusion design — The frame connects to the head section of the operating table and protrudes from both ends, creating an extended surgical workspace that allows the surgeon, assistant, and scrub nurse to sit comfortably at the patient's side during lengthy micro procedures. The bilateral protrusion ensures that the surgical team has adequate working space on both sides of the patient's limb, enabling the two-surgeon technique commonly used in free-flap reconstruction and replantation surgery.

  • U-shaped and bow-shaped hand support options — The hand support is available in U-shaped or bow-shaped configurations, each designed to cradle the patient's hand and forearm while leaving the dorsal and palmar surfaces fully accessible for surgical manipulation. The U-shaped design provides open access from three sides, while the bow-shaped design offers enhanced lateral support for procedures requiring the limb to be stabilized against rotational forces.

  • Anti-static PU leather surface — Select models feature anti-static PU leather covers that prevent electrostatic charge buildup on the platform surface — a critical safety feature in microsurgery where static discharge could damage sensitive electronic monitoring equipment, disrupt microsurgical instruments, or create sparks in the presence of supplemental oxygen.

  • High-density rebound memory sponge cushioning — Models with memory sponge cushioning provide superior pressure redistribution for the patient's limb during prolonged procedures, preventing focal compression of nerves and vessels in the upper extremity — particularly important in hand surgery where the ulnar, median, and radial nerves are vulnerable to compression injury during extended positioning.

  • Customizable thickness — Platform thickness is customizable per request, allowing facilities to specify the exact dimensions needed to match their operating room setup, surgical discipline, and patient population — from ultra-thin platforms for ophthalmic procedures where minimal profile is preferred, to thicker platforms for hand and upper-limb surgery where enhanced cushioning and structural depth are required.

  • Universal bedside rail compatibility — Every frame is compatible with any brand of surgical bedside rail, eliminating the need for brand-specific adapters and enabling seamless integration across multi-brand hospital environments.

  • Space-efficient storage — The carbon-fiber construction and modular design allow the frames to be stored compactly when not in use — the U-shaped FP-017-A1, in particular, is designed so that storage does not take up significant space, an important consideration in operating rooms where floor space is at a premium.

Model Variants & Specifications

Microsurgical Frames — Carbon Fiber Bed Board

FP-017-A1 — Microsurgical Frame, U-Shaped (Carbon Fiber, 830 × 600 × 500–950 mm)
The flagship microsurgical frame in the range, featuring a carbon fiber bed board measuring 830 × 600 mm with an adjustable height range of 500–950 mm, configured in a U-shaped design that connects to the head section of the operating table and protrudes from both ends. The 830 mm length provides ample working surface for the patient's entire upper limb — from the upper arm to the fingertips — while the 600 mm width offers broad lateral support that prevents the limb from rolling or shifting during microsurgical manipulation. The adjustable height range of 500–950 mm allows the platform to be set at the exact working height preferred by each surgeon, accommodating both seated and standing microsurgical techniques.

The U-shaped configuration cradles the patient's limb from below while leaving the dorsal, palmar, and both lateral surfaces completely exposed — providing unobstructed surgical access from every angle. This is essential in hand surgery and microsurgery where the surgeon must approach the operative site from multiple directions — for example, when performing a volar approach for carpal tunnel release followed by a dorsal approach for extensor tendon repair in the same procedure. The carbon fiber construction ensures that the 830 mm extended platform remains absolutely rigid and vibration-free, even when the surgeon's hands rest on the platform during microsurgical suturing under the operating microscope.

A key practical advantage of this model is its space-efficient storage design — the U-shaped frame can be stored compactly against a wall or in a dedicated storage cabinet without occupying significant operating room floor space, an important consideration in facilities where operating room real estate is limited.

FP-017-A2 — Microsurgical Frame (Carbon Fiber, 600 × 400 × 10 mm, Customizable Thickness)
A more compact microsurgical frame with a carbon fiber bed board measuring 600 × 400 × 10 mm and a 750 × 480 mm cushion, designed for procedures where a smaller working surface is sufficient or where operating room space constraints favor a more compact platform. The 10 mm standard thickness provides a low-profile platform that minimizes the vertical distance between the operating table surface and the working plane — preferred in ophthalmic surgery and certain microsurgical procedures where the surgeon operates through a microscope with a short working distance.

The 750 × 480 mm cushion extends beyond the carbon fiber bed board dimensions, providing additional padded support surface for the patient's limb while maintaining the rigid, vibration-free platform at the core. The cushion is constructed from high-density memory sponge that conforms to the patient's limb contour, distributing pressure evenly and preventing focal compression during prolonged procedures. Thickness is customizable per request, allowing facilities to specify a thicker platform for enhanced cushioning or a thinner platform for reduced profile, depending on the specific procedural requirements.

Upper Limb Microsurgical Frame

FP-018-A1 — Upper Limb Microsurgical Frame (600 × 400 × 50 mm, Anti-Static PU Leather)
An upper-limb-specific microsurgical frame measuring 600 × 400 × 50 mm, surfaced with anti-static PU leather that prevents electrostatic charge buildup on the platform — a critical safety feature in microsurgery where static discharge could damage sensitive electronic equipment or create sparks in the presence of supplemental oxygen. The 50 mm thickness provides enhanced structural depth and cushioning compared to the 10 mm FP-017-A2, making this model the preferred choice for upper-limb procedures where the patient's arm rests on the platform for extended periods and where enhanced pressure distribution is needed to protect the brachial plexus, median nerve, ulnar nerve, and radial nerve from compression injury.

The frame is suitable for any brand of bedside rail, connecting to the operating table via a universal mounting interface that accommodates the full range of side-rail profiles found across major operating table manufacturers. The anti-static PU leather surface is easy to wipe clean and disinfect between cases, resisting absorption of bodily fluids and withstanding repeated exposure to hospital-grade disinfectants without cracking, peeling, or degradation of the anti-static properties.

Hand Microsurgical Frame

FP-018-C1 — Hand Microsurgical Frame (900 mm, Customizable Thickness)
A dedicated hand microsurgical frame with a 900 mm extended length, providing the longest working surface in the range — designed for complex hand surgery procedures including replantation, free-flap reconstruction, and multi-digit repair where the entire hand and forearm must be supported on the platform with ample working space for the surgical team on both sides. The 900 mm length ensures that the patient's hand, wrist, and forearm are fully supported from the mid-forearm to the fingertips, with additional platform length extending beyond the hand to provide a stable resting surface for microsurgical instruments and the surgeon's hands during the procedure.

Thickness is customizable per request, allowing facilities to specify the exact platform thickness needed to fit their specific operating room setup — whether the procedure requires a low-profile platform for microscope-focused ophthalmic-style hand surgery or a thicker platform for enhanced cushioning during lengthy replantation procedures that may last eight hours or more. The customizable thickness option ensures that the frame can be tailored to match the exact ergonomic requirements of each surgical discipline and each surgeon's preference.

Upper Arm Operating Board

FP-018-D1 — Upper Arm Operating Board (High-Density Rebound Memory Sponge, PU Leather)
A specialized upper arm operating board constructed with high-density rebound memory sponge covered with PU leather, designed to provide comfortable, pressure-distributing support for the patient's upper arm during hand surgery, microsurgery, and upper-limb procedures where the arm must be elevated, abducted, or extended on a support surface for extended periods. The high-density rebound memory sponge conforms to the contour of the patient's upper arm, distributing pressure evenly across the contact surface and preventing focal compression of the brachial plexus, axillary nerve, and radial nerve that can occur when the upper arm rests on a rigid or inadequately padded surface.

The memory sponge's high-rebound characteristics ensure that the cushion maintains its shape and support properties throughout the procedure without bottoming out under the weight of the arm — even during lengthy microsurgical procedures lasting many hours. The PU leather cover provides a smooth, non-porous surface that can be wiped clean and disinfected rapidly between cases. Thickness is customizable to match the specific requirements of each facility's surgical setup and patient population.

Clinical Applications

This carbon-fiber microsurgical frame and hand surgical table range supports procedures across the full spectrum of hand surgery, microsurgery, plastic surgery, and ophthalmology:

  • Hand trauma and replantation — The extended-reach platform provides stable, vibration-free support for the injured hand and forearm during replantation surgery, where the surgeon must perform microvascular anastomosis of digital arteries and veins under the operating microscope for many hours — requiring absolute platform stability and comfortable seated positioning.

  • Free-flap reconstruction — The bilateral protrusion design allows two surgeons to work on opposite sides of the patient's limb simultaneously — one preparing the recipient site and the other harvesting and preparing the free flap — with the carbon fiber platform providing rigid, vibration-free support for microvascular anastomosis.

  • Peripheral nerve repair — The extended platform supports the entire length of the upper limb, providing stable positioning for nerve grafting, nerve transfer, and tendon transfer procedures where the surgeon must access the nerve at multiple points along the arm and forearm.

  • Carpal tunnel release and trigger finger surgery — The U-shaped hand support provides open access to the palmar surface of the hand and wrist for endoscopic and open carpal tunnel release, trigger finger release, and Dupuytren's contracture fasciectomy.

  • Tendon repair and reconstruction — The platform supports the hand and forearm in the optimal position for flexor and extensor tendon repair, tendon grafting, and tendon transfer procedures, with the U-shaped or bow-shaped design providing access from multiple angles.

  • Microsurgical lymphaticovenular anastomosis — The vibration-free carbon fiber platform provides the absolute stability needed for super-microsurgery procedures where anastomosis of lymphatic vessels as small as 0.3–0.8 mm is performed under high-magnification microscopy.

  • Ophthalmic microsurgery — The low-profile carbon fiber platform provides a stable, vibration-free working surface for cataract surgery, vitreoretinal surgery, corneal transplantation, and glaucoma surgery where the surgeon operates through a high-magnification operating microscope.

  • Plastic and reconstructive surgery — The extended platform provides comfortable support for the patient's limb during flap elevation, skin grafting, tissue expansion, and reconstructive procedures of the upper extremity where prolonged positioning is required.

  • Burn contracture release — The memory sponge cushioning provides comfortable, pressure-distributing support for the burn patient's limb during contracture release, skin grafting, and reconstructive procedures where the skin and soft tissues are particularly vulnerable to pressure injury.

  • Arthroscopic hand and wrist surgery — The platform provides stable positioning for wrist arthroscopy, small joint arthroscopy of the fingers, and arthroscopically assisted fracture fixation where the hand must be stabilized in a fixed position under traction.

  • Pediatric hand surgery — The customizable thickness and universal rail compatibility allow the platform to be configured for the smaller dimensions of pediatric patients undergoing congenital hand surgery, syndactyly release, and polydactyly correction.

  • Two-surgeon microsurgical technique — The bilateral protrusion design creates working space on both sides of the patient's limb, enabling the two-surgeon technique commonly used in free-flap reconstruction, replantation, and complex hand trauma where one surgeon operates on the volar surface while the other works on the dorsal surface simultaneously.

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Meta Description (for product listing pages)

Carbon fiber microsurgical frames and hand surgical tables for hand surgery, microsurgery, plastic surgery, and ophthalmology. U-shaped and bow-shaped hand support connected to the operating table head section with bilateral protrusion for comfortable seated microsurgical technique. Anti-static PU leather and high-density rebound memory sponge cushion options. Customizable thickness per request. Compatible with any brand of surgical bedside rail. Ideal for replantation, free-flap reconstruction, peripheral nerve repair, carpal tunnel release, ophthalmic microsurgery, and all hand and upper-limb microsurgical procedures.

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