Advanced orthopaedic configurations built for immediate integration within Damascus Trauma Centers and University Teaching Hospitals.
In Damascus and the wider Syrian medical network, the reconstruction of public healthcare facilities is driving demand for premium spine implants and osteosynthesis systems. Hospitals such as the Damascus Hospital (Al-Mujtahid), Al-Assad University Hospital, and the Children's Hospital in Damascus encounter a high caseload of traumatic spinal fractures, degenerative disc disorders, and pediatric deformities. These clinical realities demand access to reliable, cost-effective orthopedic systems.
"Reconstructive spinal surgery in Damascus requires robust mechanical systems that minimize operating time, improve patient mobilization rates, and adapt to complex, high-energy trauma injuries."
This is where the Usmart 5.5 Spinal Screw-Rod System steps in. Engineered to deliver stability, this system offers a reduced profile compared to legacy 6.0mm solutions, minimizing anatomical impingement while preserving fatigue strength. For Damascus surgeons navigating long operating queues with constrained post-operative monitoring resources, the implant’s self-tapping threads and secure locking mechanism reduce the risk of revision surgeries, easing the burden on the Syrian public health system.
The global spinal fusion market is shifting toward biomechanically optimized, low-profile screw-rod constructs. Key developments in material science and mechanical design are driving these market transitions:
In the Levant region and Syria specifically, procurement strategies favor suppliers that maintain comprehensive Quality Management Systems (ISO 13485) and supply reliable, CE-compliant orthopedic hardware. With a 29-year history of clinical manufacturing, our products meet these technical expectations, providing Damascus health institutions with direct access to global-standard implants without premium price markups.
Biomechanical engineering designed to support posterior spinal correction, stabilization, and osteopenia-related vertebral fixations.
The Usmart 5.5 system utilizes polyaxial screws featuring a wide angular range of motion (up to 50 degrees of cone angle). This feature accommodates complex anatomical deformities without requiring excessive pre-bending of the titanium rod. The self-tapping, dual-thread configuration enhances screw purchase in cancellous bone, reducing surgical insertion times.
Given the rising prevalence of geriatric spinal trauma in regional medical facilities, the system incorporates fenestrated pedicle screws designed for PMMA bone cement injection. This design significantly increases pull-out strength in osteoporotic bone, providing stable fixation and reducing the risk of implant migration or loosening.
Our spine systems are optimized for Damascus clinical workflows, focusing on efficiency and versatility:
Our trauma kits are designed for emergency rooms in Damascus, enabling stabilization of burst fractures and subluxations using modular screw layouts. They simplify spinal alignment when operating under high-intensity conditions.
Combining the Usmart 5.5 system with PEEK interbody fusion cages allows surgeons to treat advanced spinal stenosis and scoliosis, restoring sagittal balance and promoting fusion.
Our upcoming product generations will integrate with optical navigation and robotic surgery platforms. This update aims to improve screw placement accuracy and reduce radiation exposure for local surgical teams.
Operating a 10,000 square meter facility certified under international quality standards to supply high-reliability implants.
Addressing the technical, regulatory, and logistics queries from Damascus procurement offices and clinical departments.
Complete surgical assemblies, intramedullary nails, and articular fixation plates engineered to meet international clinical standards.