Neurosurgery Instruments
Neurosurgery Surgical 7¼” FineTouch Ring Tip Forceps Curved
The Neurosurgery Surgical 7¼″ FineTouch Ring Tip Forceps Curved is a precision microsurgical instrument designed for atraumatic tissue handling during neurosurgical and spinal procedures. Manufactured from premium surgical-grade stainless steel, it offers exceptional control, ergonomic handling, and long-lasting performance for demanding surgical environments.
Neurosurgery Surgical 7¼” FineTouch Ring Tip Forceps Straight
The Neurosurgery Surgical 7¼″ FineTouch Ring Tip Forceps Straight is a precision microsurgical instrument designed for atraumatic tissue handling during neurosurgical and spinal procedures. Manufactured from premium surgical-grade stainless steel, it provides exceptional control, durability, and accuracy for delicate surgical applications.
Neurosurgery Surgical 7¼” FineTouch Ring Tip Forceps Titanium, Straight
The Neurosurgery Surgical 7¼″ FineTouch Ring Tip Forceps Titanium, Straight is a premium microsurgical instrument designed for precise tissue handling during cranial, spinal, and neurological procedures. Manufactured from medical-grade titanium, it delivers exceptional strength, lightweight handling, and superior control for delicate microsurgical interventions.
Neurosurgery Surgical 7¼” Gerald DeBakey Tissue Forceps 1mm Tips
The Neurosurgery Surgical 7¼″ Gerald DeBakey Tissue Forceps 1mm Tips is a precision instrument designed for delicate tissue handling, grasping, and manipulation during neurosurgical and microsurgical procedures. Featuring fine 1mm atraumatic tips, it provides superior control, accuracy, and gentle tissue management for demanding surgical applications.
Neurosurgery Surgical 7¼” Gerald-DeBakey Tissue Forceps Titanium
The Neurosurgery Surgical 7¼″ Gerald-DeBakey Tissue Forceps Titanium is a precision surgical instrument designed for delicate tissue manipulation in neurosurgical, microsurgical, and vascular procedures. Constructed from premium titanium, it offers lightweight handling, excellent durability, and atraumatic tissue control for advanced surgical applications.