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These Caspar distraction pins provide the traction foundation for cervical vertebral body separation during anterior cervical fusion approaches. The pin geometry interfaces with the distractor body to maintain stable, anti-slip contact under load. Stainless steel construction withstands repeated sterilization and the mechanical stress of spinal distraction.
Features & Benefits
This Caspar distractor screw driver provides precise engagement with the threaded screw mechanism that controls vertebral distraction force during anterior cervical procedures. The driver tip geometry prevents cam-out and slippage under high mechanical loads. Stainless steel construction remains reliable across routine surgical use and sterilization.
This left-right‑specific Caspar distractor drill guide maintains alignment and entry angle during pilot-hole preparation for cervical distraction pin placement. The guide interfaces with the distractor body to ensure perpendicular approach to vertebral bodies. Stainless steel construction supports the mechanical stress of drilling through cortical bone.
This Caspar distractor twist drill is a specialized 1.7mm pilot instrument for initiating vertebral body distraction during anterior cervical fusion. The straight geometry aligns with the typical anterior midline approach to the cervical spine, and the compact 146mm length maintains operative field clarity. Stainless‑steel rigidity transfers torque reliably without deflection.
Cervical distractor set delivers complete instrumentation for controlled multi‑level vertebral body separation during anterior cervical fusion. The set includes left and right 100mm rack distractors, precision distraction screws (12mm and 14mm), dedicated screwdrivers, and anodized aluminum storage case for organized sterilization. All components optimize disc‑space exposure and maintain anatomic alignment.
The cervical vertebral body distractor is designed for right-sided approach use, enabling controlled separation of vertebral bodies from C5 through T1‑T2, and left-sided approaches for upper cervical spine access. Its geometry aligns with trajectory-specific surgical approaches during anterior cervical fusion and discectomy. Stainless‑steel construction provides the rigidity and corrosion resistance required for high-tension distraction.
Distraction screw, 12mm profile, threads precisely into vertebral body anterior surfaces during Caspar‑style cervical distraction protocols. The 12mm diameter matches common vertebral body widths in adult cervical spine. Reusable design supports repeated sterilization cycles without thread degradation.
Distraction screw, 14mm profile, accommodates larger vertebral body dimensions in adult cervical spine anatomy during multi‑level distraction protocols. The 14mm diameter extends thread purchase into vertebral cancellous bone, improving load distribution. Reusable stainless steel sustains thousands of sterilization cycles.
This distractor with calibration lines and built‑in guides delivers precise spacing control up to 2.4mm (3/32 inch) for orthopedic gap management during fracture reduction. The guide system prevents drift during distraction, and the compact 152mm overall length supports hand positioning in confined fracture sites.
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