Cervical Extrication Collar MD-CEC-1000 features 16 adjustable height settings, providing a precise fit within a height range of 100 mm to 145 mm. It accommodates neck circumferences ranging from 33 to 46 cm for optimal patient positioning. Its anterior and posterior openings facilitate airway management, allowing for intubation and cervical spine palpation. This product is an essential tool for emergency responders and trauma care specialists, delivering superior cervical spine immobilization in critical care settings.
Specifications
| Adjustable height range | 16 settings 100 to 145 mm |
| Neck circumference range | 33 to 46 cm |
| Material | High-density polyethylene (HDPE) shell with hypoallergenic, closed-cell foam padding |
| Imaging Compatibility | X-ray, CT, MRI compatible |
| Flip-Up Chin Support | Auto flip-up for compact storage |
| Anterior & Posterior Openings | Allows for intubation, pulse checks, and emergency care |
| Specializations | Nasal Cannula Holder Lock Status Indicators |
| Size | Adult |
| No. of pieces | 100 |
| Flat Dimensions | 570 × 180 × 24 mm |
| Unit Weight | approx. 126 grams |
Features
High-Density Polyethylene Shell
Multi-Position Height Adjustability
Auto Flip-Up Chin Support
Integrated Lock Status Indicators
Built-In Nasal Cannula Holder
Advanced Radiolucent Construction
Moisture & Chemical Resistance
Lightweight, Low-Profile Design
Applications
Cervical Extrication Collar MD-CEC-1000 is designed for cervical spine trauma, degenerative disc disease, rheumatoid arthritis, and spinal metastases thus facilitating airway management, and precise imaging for accurate diagnosis and targeted treatment.
Medical Deals Cervical Extrication Collars are meticulously engineered medical devices designed to provide exceptional cervical spine immobilization. These collars feature a multi-position height adjustment system, allowing for seamless customization. Their advanced anterior and posterior aperture systems include angulated access channels for airway management. Our product revolutionizes cervical spine immobilization by combining advanced structural mechanics, innovative biomaterials, and neuromuscular stabilization.