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Neurosurgery Echlin Rongeur, Angled, 3mm Bite, 8¾″
Neurosurgery Echlin Rongeur, Angled, 4mm Bite, 8¾″
Neurosurgery Ferris Smith IVD Rongeur 10″ 3x10mm Teeth Straight
Neurosurgery Ferris Smith IVD Rongeur 10″ 4x10mm Teeth Up
The Neurosurgery Surgical 10″ Ferris-Smith IVD Rongeur 4x10mm – Teeth Up is a precision-engineered spinal surgical instrument designed for secure grasping and controlled removal of intervertebral disc material and soft tissue. Manufactured from premium surgical-grade stainless steel, it offers exceptional durability, superior tissue retention, and reliable performance during neurosurgical and orthopedic spine procedures.
Neurosurgery Ferris Smith IVD Rongeur 10″ 5x10mm Teeth Straight
Neurosurgery Ferris Smith IVD Rongeur, with Teeth, 3x10mm Jaw, Down, 10″
Neurosurgery Ferris Smith IVD Rongeur, with Teeth, 4x10mm Jaw, Down, 12″
Neurosurgery Ferris Smith IVD Rongeur, with Teeth, 5x10mm Jaw, Up, 10″
Neurosurgery Ferris Smith Kerrison Rongeur, 4mm, 40° Up, 7″
The Neurosurgery Ferris Smith Kerrison Rongeur, 4mm, 40° Up, 7″ is a precision surgical instrument designed for controlled bone removal and decompression procedures. Its angled 4mm Kerrison jaw, ergonomic design, and durable stainless steel construction provide excellent access, control, and reliability during neurosurgical applications.
Neurosurgery Ferris Smith Kerrison Rongeur, 5mm, 7″
The Neurosurgery Ferris Smith Kerrison Rongeur 5mm, 7″ is a precision spinal surgical instrument designed for controlled bone and tissue removal during neurosurgical procedures. Featuring durable construction and ergonomic handling, it provides surgeons with reliable performance in delicate operations such as laminectomy and decompression surgery.
Neurosurgery Ferris Smith Kerrison Rongeur, 5mm, 7″
The Neurosurgery Ferris Smith Kerrison Rongeur, 5mm, 7″ is a precision surgical instrument designed for controlled bone removal during neurosurgical and spinal procedures. Its 5mm Kerrison-style jaw and compact 7-inch design provide excellent accuracy, accessibility, and dependable performance in demanding surgical applications.