Neurosurgery Instruments
Neurosurgery Surgical 9½” Semb Dissecting & Ligature Forceps Slightly Curved Jaws
The Neurosurgery Surgical 9½” Semb Dissecting & Ligature Forceps Slightly Curved Jaws is a precision surgical instrument designed for delicate tissue dissection, vessel isolation, and ligature placement during neurosurgical and microsurgical procedures. Its slightly curved jaws provide superior visibility, controlled access, and accurate manipulation in deep operative fields.
Neurosurgery Surgical 9½” Tischler Cervical Biopsy Punch Forceps
The Neurosurgery Surgical 9½” Tischler Cervical Biopsy Punch Forceps are precision-engineered biopsy instruments designed for accurate tissue sampling during specialized diagnostic and surgical procedures. Manufactured from premium surgical-grade stainless steel, these forceps provide exceptional cutting performance, reliable specimen collection, and superior clinical durability.
Neurosurgery Surgical 9½” Willauer Intra-Thoracic Forceps
The Neurosurgery Surgical 9½” Willauer Intra-Thoracic Forceps (Lightweight, Full Curve) are precision-engineered surgical forceps designed for delicate tissue manipulation in neurosurgical, thoracic, and microsurgical procedures. Featuring a lightweight design and fully curved jaws, these forceps provide exceptional visibility, superior control, and long-lasting clinical performance.
Neurosurgery Surgical 9½″ Heiss Artery Forceps Delicate, 90° Jaws
Neurosurgery Surgical 9½″ Heiss Artery Forceps Delicate, Curved
The Neurosurgery Surgical 9½″ Heiss Artery Forceps Delicate, Curved is a precision surgical instrument designed for delicate vessel manipulation, hemostasis, and controlled tissue handling. Its curved jaw design provides improved access and enhanced maneuverability during complex surgical procedures.
Neurosurgery Surgical 9½″ Heiss Artery Forceps Delicate, Straight
The Neurosurgery Surgical 9½″ Heiss Artery Forceps Delicate, Straight is a precision surgical instrument designed for delicate vessel control, hemostasis, and accurate tissue manipulation. Its straight delicate jaws provide direct access and excellent control during complex neurosurgical and vascular procedures.
Neurosurgery Surgical 9½″ Simon Bone Curette – 4.5 × 6mm
Neurosurgery Surgical 9¼” Bayonet DeBakey Forceps
The Neurosurgery Surgical 9¼” Bayonet DeBakey Forceps are precision surgical instruments designed for delicate tissue manipulation in neurosurgical and microsurgical applications. Featuring a bayonet profile, DeBakey atraumatic design, and durable surgical-grade stainless steel construction, these forceps provide excellent control, visibility, and reliable performance.
Neurosurgery Surgical 9¼” Gerald Tissue Forceps 1×2 Teeth
The Neurosurgery Surgical 9¼” Gerald Tissue Forceps 1×2 Teeth is a precision microsurgical instrument designed for secure tissue grasping during delicate neurosurgical and spinal procedures. Its 1×2 toothed tip ensures a firm, atraumatic grip while providing excellent control and tactile feedback in microsurgical environments.
Neurosurgery Surgical 9¼” Gerald Tissue Forceps Serrated
The Neurosurgery Surgical 9¼” Gerald Tissue Forceps Serrated is a high-precision microsurgical instrument designed for delicate tissue handling during neurosurgical and spinal procedures. Its finely serrated jaws provide a secure, atraumatic grip while offering excellent tactile feedback and control in deep surgical fields.
Neurosurgery Surgical 9¼” Mosquito Forceps Curved
The Neurosurgery Surgical 9¼” Mosquito Forceps Curved is a precision hemostatic instrument designed for delicate vessel clamping and tissue dissection during neurosurgical and microsurgical procedures. Its curved jaws provide enhanced access, controlled hemostasis, and exceptional maneuverability in confined operative fields.
Neurosurgery Surgical 9¼″ Forceps Strong Curve
The Neurosurgery Surgical 9¼″ Forceps Strong Curve is a premium microsurgical instrument designed for secure tissue manipulation and enhanced access to deep operative sites. Its pronounced curved profile provides exceptional visibility and control during delicate neurosurgical and spinal procedures while minimizing tissue trauma.