• Surgical Skull Clamp,craniocerebral surgery Skull Clamp
  • Surgical Skull Clamp,craniocerebral surgery Skull Clamp
  • Surgical Skull Clamp,craniocerebral surgery Skull Clamp

AOTA307 Carbon Fiber Craniocerebral Surgery Skull Clamp Surgical Skull Clamp

The AOTA307 is a cutting-edge surgical Skull Clamp designed for precision and safety in neurosurgical procedures. Crafted from lightweight carbon fiber-PEEK composite, it ensures full compatibility with intraoperative imaging (CT, MRI, X-ray) while minimizing radiation interference. Featuring a 500mm multi-directional adjustment range, pressure-calibrated fixation, and modular accessories, this head frame supports diverse surgical positions and enhances procedural accuracy. Ideal for craniotomies, spinal interventions, and real-time image-guided surgeries, the AOTA307 combines ergonomic adaptability with advanced material durability, redefining efficiency in modern neurosurgical practice.

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  • Technical Parameters
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Carbon Fiber Craniocerebral Surgery Skull Clamp Surgical Skull Clamp Introduction:

AOT307 Carbon fiber head frame is a high-end radiographic head frame designed for brain surgery, made of advanced carbon fiber composite material (combined with PEEK technology), both lightweight and high strength characteristics. Its innovative design is compatible with intraoperative CT, MRI, X-ray and other imaging equipment to ensure the visualization of the entire operation, while minimizing imaging interference and patient damage, and is suitable for complex surgery needs in neurosurgery, orthopedics and other fields.

Surgical Skull Clamp,craniocerebral surgery Skull Clamp Surgical Skull Clamp,craniocerebral surgery Skull Clamp Surgical Skull Clamp,craniocerebral surgery Skull Clamp

Carbon Fiber Craniocerebral Surgery Skull Clamp Surgical Skull Clamp Feature:

1. Lightweight high-strength materials
Carbon fiber -PEEK composite material structure, more than 40% weight reduction than ordinary materials, light weight, high strength, strong material long service life, but also easy to rapid installation and intraoperative rapid adjustment.

2. Precise pressure control
Equipped with pressure scale indicating system, precise control of fixation force, reduce the risk of intraoperative tissue damage.

3. Compatible with intraoperative imaging
Full radiographic design, suitable for CT, MRI, X-ray and fluoroscopic scanning, imaging without artifacts, to ensure the accuracy of surgical navigation.

4. Multi-dimensional flexible adjustment
Support up and down left and right four-way adjustment, the maximum adjustment range of 500mm; 500-degree three-java tip fixed design, suitable for a variety of surgical positions such as supine and lateral lying.

Surgical Skull Clamp,craniocerebral surgery Skull Clamp Surgical Skull Clamp,craniocerebral surgery Skull Clamp Surgical Skull Clamp,craniocerebral surgery Skull Clamp

5. Modular combination design
It can be freely matched with extension rod, horseshoe head support and other accessories, and then with extension rod, head nail and other parts, which can meet the surgical needs in different scenarios.

Surgical Skull Clamp,craniocerebral surgery Skull Clamp Surgical Skull Clamp,craniocerebral surgery Skull Clamp Surgical Skull Clamp,craniocerebral surgery Skull Clamp

6. Humanized details optimization
Adjustable camera head support cushion and transmission lens distance design, improve the operation convenience of embedded surgical extension rod.

 

Carbon Fiber Craniocerebral Surgery Skull Clamp Surgical Skull Clamp Advantages:

Safe and efficient: Reduce intraoperative imaging damage, shorten operation time, and improve patient safety.

Accurate and stable: multi-stage adjustment and fixing system to ensure the positioning accuracy of surgical instruments.

Extensive adaptation: compatible with a variety of imaging equipment and surgical scenarios, expand the scope of clinical application.

Durable: Carbon fiber composite material strong corrosion resistance, easy maintenance, reduce long-term use costs.

 

Application

Neurosurgical craniotomy, minimally invasive spinal surgery, interventional radiation therapy and other high-precision surgeries require real-time intraoperative imaging.

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