Surgical Scissors

Showing 37–48 of 166 results

The Joseph TC 14.5 cm/5 ¾" is a surgical scissors designed for precise daily use in surgery, clinic and laboratory. It follows the Joseph pattern in a 14.5 cm/5 ¾" working size, so the working end seats predictably at the site. The stainless handle is balanced for control and tactile feedback through repeated procedures.

The Kelly operating scissors 16 cm/6 ¼" is a surgical scissors designed for precise daily use in surgery, clinic and laboratory. It follows the Kelly pattern in a 16 cm/6 ¼" working size, so the working end seats predictably at the site. The stainless handle is balanced for control and tactile feedback through repeated procedures.

The Kelly operating scissors 16 cm/6 ¼" is a surgical scissors designed for precise daily use in surgery, clinic and laboratory. It follows the Kelly pattern in a 16 cm/6 ¼" working size, so the working end seats predictably at the site. The stainless handle is balanced for control and tactile feedback through repeated procedures.

The Kelly operating scissors TC 16 cm/6 ¼" is a surgical scissors designed for precise daily use in surgery, clinic and laboratory. It follows the Kelly pattern in a 16 cm/6 ¼" working size, so the working end seats predictably at the site. The stainless handle is balanced for control and tactile feedback through repeated procedures.

The Kelly operating scissors TC 16 cm/6 ¼" is a surgical scissors designed for precise daily use in surgery, clinic and laboratory. It follows the Kelly pattern in a 16 cm/6 ¼" working size, so the working end seats predictably at the site. The stainless handle is balanced for control and tactile feedback through repeated procedures.

The La Grange S shaped 11.5 cm/4 ½" is a surgical scissors designed for precise daily use in surgery, clinic and laboratory. It follows the La Grange pattern in a 11.5 cm/4 ½" working size, so the working end seats predictably at the site. The stainless handle is balanced for control and tactile feedback through repeated procedures.

The Lexer-Fino slender pattern 16.5 cm/6 ½" is a surgical scissors designed for precise daily use in surgery, clinic and laboratory. It follows the Lexer-Fino pattern in a 16.5 cm/6 ½" working size, so the working end seats predictably at the site. The stainless handle is balanced for control and tactile feedback through repeated procedures.

The Lexer-Fino slender pattern 16.5 cm/6 ½" is a surgical scissors designed for precise daily use in surgery, clinic and laboratory. It follows the Lexer-Fino pattern in a 16.5 cm/6 ½" working size, so the working end seats predictably at the site. The stainless handle is balanced for control and tactile feedback through repeated procedures.

The Lexer-Fino slender pattern TC 16.5 cm/6 ½" is a surgical scissors designed for precise daily use in surgery, clinic and laboratory. It follows the Lexer-Fino pattern in a 16.5 cm/6 ½" working size, so the working end seats predictably at the site. The stainless handle is balanced for control and tactile feedback through repeated procedures.

The Lexer-Fino slender pattern TC 16.5 cm/6 ½" is a surgical scissors designed for precise daily use in surgery, clinic and laboratory. It follows the Lexer-Fino pattern in a 16.5 cm/6 ½" working size, so the working end seats predictably at the site. The stainless handle is balanced for control and tactile feedback through repeated procedures.

The Ligature scissors TCS 14.5 cm/5 ¾" is a surgical scissors designed for precise daily use in surgery, clinic and laboratory. It follows the Ligature scissors pattern in a 14.5 cm/5 ¾" working size, so the working end seats predictably at the site. The stainless handle is balanced for control and tactile feedback through repeated procedures.

The Ligature scissors TCS 14.5 cm/5 ¾" is a surgical scissors designed for precise daily use in surgery, clinic and laboratory. It follows the Ligature scissors pattern in a 14.5 cm/5 ¾" working size, so the working end seats predictably at the site. The stainless handle is balanced for control and tactile feedback through repeated procedures.