Balban

Showing 673–684 of 1964 results

The Hatchet Fig. 53/54 is an enamel instrument designed for precise daily use in surgery, clinic and laboratory. It follows the Hatchet pattern, so the working end seats predictably at the site. A knurled double-ended handle supports control and tactile feedback through repeated procedures.

The Hatchet Fig. 8/9H is an enamel instrument designed for precise daily use in surgery, clinic and laboratory. It follows the Hatchet pattern, so the working end seats predictably at the site. A knurled double-ended handle supports control and tactile feedback through repeated procedures.

The Heath mallet 18.5 cm / 7 ¼", Ø 40 mm, 700 g is a surgical mallet designed for precise daily use in surgery, clinic and laboratory. It follows the Heath pattern in a 18.5 cm / 7 ¼" working size, so the working end seats predictably at the site. A ø 40 mm / 700 g handle supports control and tactile feedback through repeated procedures.

The Hegar-Baumgartner needle holder is a needle holder designed for precise daily use in surgery, clinic and laboratory. It follows the Hegar-Baumgartner pattern in a 14 cm / 5 1/2" 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 Hegar-Baumgartner needle holder TC is a needle holder designed for precise daily use in surgery, clinic and laboratory. It follows the Hegar-Baumgartner pattern in a 13 cm / 5 1/4" working size, so the working end seats predictably at the site. A tC gold rings handle supports control and tactile feedback through repeated procedures.

The Hegar-Baumgartner needle holder TC is a needle holder designed for precise daily use in surgery, clinic and laboratory. It follows the Hegar-Baumgartner pattern in a 14 cm / 5 1/2" working size, so the working end seats predictably at the site. A tC gold rings handle supports control and tactile feedback through repeated procedures.

The Heidbrink root elevator Fig. 1 is a root elevator designed for precise daily use in surgery, clinic and laboratory. It follows the Heidbrink pattern, so the working end seats predictably at the site. A flat tapered handle supports control and tactile feedback through repeated procedures.

The Heidbrink root elevator Fig. 1 (double-ended) is a root elevator designed for precise daily use in surgery, clinic and laboratory. It follows the Heidbrink pattern, so the working end seats predictably at the site. A double-ended knurled handle supports control and tactile feedback through repeated procedures.

The Heidbrink root elevator Fig. 2 is a root elevator designed for precise daily use in surgery, clinic and laboratory. It follows the Heidbrink pattern, so the working end seats predictably at the site. A flat tapered handle supports control and tactile feedback through repeated procedures.

The Heidbrink root elevator Fig. 2 (double-ended) is a root elevator designed for precise daily use in surgery, clinic and laboratory. It follows the Heidbrink pattern, so the working end seats predictably at the site. A double-ended knurled handle supports control and tactile feedback through repeated procedures.

The Heidbrink root elevator Fig. 23 (double-ended) is a root elevator designed for precise daily use in surgery, clinic and laboratory. It follows the Heidbrink pattern, so the working end seats predictably at the site. A double-ended knurled handle supports control and tactile feedback through repeated procedures.

The Heidbrink root elevator Fig. 3 is a root elevator designed for precise daily use in surgery, clinic and laboratory. It follows the Heidbrink pattern, so the working end seats predictably at the site. A flat tapered handle supports control and tactile feedback through repeated procedures.