The Orthodontic forceps straight college 12.5 cm/5" is an orthodontic instrument designed for precise daily use in surgery, clinic and laboratory. It follows the Orthodontic forceps pattern in a 12.5 cm/5" 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 Orthodontic forceps straight dressing 12.5 cm/5" is an orthodontic instrument designed for precise daily use in surgery, clinic and laboratory. It follows the Orthodontic forceps pattern in a 12.5 cm/5" 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 Orthodontic forceps straight fine 12.5 cm/5" is an orthodontic instrument designed for precise daily use in surgery, clinic and laboratory. It follows the Orthodontic forceps pattern in a 12.5 cm/5" 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 Orthodontic forceps straight serrated 12.5 cm/5" is an orthodontic instrument designed for precise daily use in surgery, clinic and laboratory. It follows the Orthodontic forceps pattern in a 12.5 cm/5" 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 Orthodontic forceps tapered pad tip 12.5 cm/5" is an orthodontic instrument designed for precise daily use in surgery, clinic and laboratory. It follows the Orthodontic forceps pattern in a 12.5 cm/5" 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 Orthodontic forceps wide angled tip 12.5 cm/5" is an orthodontic instrument designed for precise daily use in surgery, clinic and laboratory. It follows the Orthodontic forceps pattern in a 12.5 cm/5" 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 Palmer rubber-dam clamp forceps is a matrix retainer designed for precise daily use in surgery, clinic and laboratory. It follows the Palmer pattern in a 17 cm / 6 3/4" 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 Partsch mallet 18 cm / 7 ¼", Ø 27 mm, 300 g, hollow handle is a surgical mallet designed for precise daily use in surgery, clinic and laboratory. It follows the Partsch pattern in a 18 cm / 7 ¼" working size, so the working end seats predictably at the site. A hollow handle, 300 g supports control and tactile feedback through repeated procedures.
The Pean artery forceps is a hemostatic forceps designed for precise daily use in surgery, clinic and laboratory. It follows the Pean pattern in a 14.5 cm / 5 3/4" 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 Pean artery forceps is a hemostatic forceps designed for precise daily use in surgery, clinic and laboratory. It follows the Pean pattern in a 16 cm / 6 1/4" 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 Pean artery forceps is a hemostatic forceps designed for precise daily use in surgery, clinic and laboratory. It follows the Pean pattern in a 13 cm / 5" 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 Pean artery forceps is a hemostatic forceps designed for precise daily use in surgery, clinic and laboratory. It follows the Pean 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.
