Showing 49–60 of 312 results

Bone surgery , Bone curette, acc. to Williger, oval

Williger Oval Bone Curette

  • Purpose: Designed for scraping and debriding bone and soft tissue during surgical procedures.
  • Design:
    • Features an oval-shaped blade that allows for effective removal of bone fragments and debris.
    • The oval shape helps in contouring bone surfaces and reaching curved anatomical areas.
  • Handle:
    • Typically equipped with a sturdy handle that ensures a secure and comfortable grip for precision during use.
    • The handle may have a textured surface or ergonomic design for enhanced control.
  • Material:
    • Made from high-quality stainless steel, providing strength, durability, and resistance to corrosion.
    • Often polished for easy cleaning and maintenance.
  • Size:
    • Available in various lengths and blade widths to accommodate different surgical needs and preferences.
  • Applications:
    • Commonly used in orthopedic surgeries for procedures such as joint debridement, osteochondral repairs, and bone grafting.
  • Advantages:
    • The oval blade design allows for optimal access and maneuverability in complex surgical fields, facilitating precise bone and tissue management.

Bone surgery , Bone curette, model USA, with hollow Handle, oval, left angled

Bone Curette (Model USA, Hollow Handle, Oval, Left Angled)

  • Purpose: Designed for scraping and debriding bone and soft tissue during surgical procedures.
  • Design:
    • Features an oval-shaped blade that allows for effective tissue removal and bone contouring.
    • Left-angled design facilitates access to areas that are difficult to reach, enhancing surgical precision.
  • Handle:
    • Hollow handle design provides a lightweight yet sturdy tool, allowing for easy maneuverability during procedures.
    • The handle may be textured for improved grip and control.
  • Material:
    • Constructed from high-quality stainless steel to ensure durability and resistance to corrosion.
    • Polished finish for easy cleaning and maintenance.
  • Size:
    • Available in various lengths and blade sizes to accommodate different surgical needs and preferences.
  • Applications:
    • Commonly used in orthopedic surgeries, particularly in procedures involving joint debridement, osteochondral defects, and other bone-related interventions.
  • Advantages:
    • The left-angled design allows for optimal access to specific anatomical sites, improving the surgeon's ability to perform delicate procedures.

Bone surgery , Bone cutting forceps, acc. to Boehler, curved

Boehler Curved Bone Cutting Forceps

  • Purpose: Designed for cutting and shaping bone in various orthopedic surgical procedures.
  • Design:
    • Features a curved jaw design that allows for enhanced access to intricate anatomical areas.
    • Jaws are typically sharp and may have a serrated edge for effective cutting through bone.
  • Material:
    • Made from high-quality stainless steel, ensuring durability and resistance to corrosion.
    • Often has a polished finish for ease of cleaning and maintenance.
  • Size:
    • Available in various lengths and curve angles to suit different surgical needs and preferences.
  • Mechanism:
    • Non-locking design enables continuous cutting action, allowing the surgeon to maintain control over the procedure.
  • Applications:
    • Commonly used in orthopedic surgeries such as osteotomies, fracture repairs, and other procedures requiring precise bone manipulation.
  • Advantages:
    • The curved design enhances visibility and access, making it easier to navigate around bones and surrounding tissues in complex surgical fields.

Bone surgery , Bone cutting forceps, acc. to Cleveland

Cleveland Bone Cutting Forceps

  • Purpose: Designed for cutting and shaping bone during various orthopedic surgical procedures.
  • Design:
    • Features a strong scissor-like structure with a robust hinge for optimal leverage.
    • The jaws are typically angled or curved, with sharp cutting edges to facilitate precise bone cutting.
  • Material:
    • Made from high-quality stainless steel for durability and resistance to corrosion.
    • Often finished with a polished surface for easy cleaning and maintenance.
  • Size:
    • Available in various lengths and jaw sizes to accommodate different surgical needs and anatomical considerations.
  • Mechanism:
    • Non-locking design allows for continuous control of cutting pressure, providing flexibility during use.
  • Applications:
    • Commonly used in orthopedic surgeries for procedures such as osteotomies, fracture repairs, and other bone manipulations.
  • Variations:
    • May include straight or curved configurations to enhance access and maneuverability in different surgical scenarios.

Bone surgery , Bone cutting forceps, acc. to Cleveland, curved

Cleveland Curved Bone Cutting Forceps

  • Purpose: Specifically designed for cutting and shaping bone in orthopedic surgeries.
  • Design:
    • Features a curved jaw design, which allows for better access to difficult-to-reach areas during surgery.
    • The jaws are sharp and serrated to facilitate effective bone cutting.
  • Material:
    • Constructed from high-quality stainless steel for strength and durability.
    • Often has a polished or matte finish to resist corrosion and enhance grip.
  • Size:
    • Available in various lengths and curvature degrees to suit different surgical requirements.
  • Mechanism:
    • Typically non-locking, enabling continuous cutting action and precise control by the surgeon.
  • Applications:
    • Commonly used in orthopedic procedures such as osteotomies, fracture repairs, and other interventions requiring bone manipulation.
  • Advantages:
    • The curved design allows for enhanced visibility and access in confined surgical spaces, making it easier to navigate complex anatomical structures.

Bone surgery , Bone cutting forceps, acc. to Semb

Semb Bone Cutting Forceps

  • Purpose: Specifically designed for cutting and shaping bone during orthopedic surgical procedures.
  • Design:
    • Features a robust scissor-like structure for effective leverage and cutting capability.
    • Typically includes tapered jaws with sharp, serrated edges for precise bone cutting.
  • Material:
    • Constructed from high-quality stainless steel for durability and resistance to corrosion.
    • Often has a polished or matte finish to enhance grip and facilitate cleaning.
  • Size:
    • Available in various lengths to accommodate different surgical requirements and access points.
  • Mechanism:
    • Usually designed as non-locking, allowing for a smooth and continuous cutting action while maintaining control.
  • Applications:
    • Commonly utilized in orthopedic procedures such as fracture repair, osteotomies, and resection of bone.
  • Variations:
    • May come in different configurations, including straight or slightly curved jaws, to suit specific surgical techniques and access needs.

Bone surgery , Bone cutting forceps, acc. to Stille-Liston

Stille-Liston Bone Cutting Forceps

  • Purpose: Designed for cutting and trimming bone during surgical procedures.
  • Design:
    • Features a scissor-like mechanism for enhanced leverage and control.
    • Jaws are typically tapered with sharp cutting edges for effective bone cutting.
  • Material:
    • Made from high-quality stainless steel for durability and resistance to corrosion.
    • Often has a polished finish for ease of cleaning.
  • Size:
    • Available in various sizes to suit different surgical applications and patient anatomies.
  • Mechanism:
    • Non-locking design allows for smooth and continuous cutting motion, providing the surgeon with the flexibility to control force and precision.
  • Applications:
    • Commonly used in orthopedic surgeries for procedures involving bone resection, fracture repair, and osteotomies.
  • Variations:
    • May include straight or curved jaws to accommodate various surgical approaches and access points.

Bone surgery , Bone file, acc. to Miller-Colburn

Miller-Colburn Bone File

  • Purpose: Specifically designed for smoothing and shaping bone surfaces during surgical procedures.
  • Design:
    • Features a flat or slightly curved profile for versatility in use.
    • Often has a double-sided design, with one side finely serrated and the other more coarse.
  • Material:
    • Constructed from high-grade stainless steel to ensure durability and resistance to corrosion.
    • Polished surface for easy cleaning and maintenance.
  • Size:
    • Available in various lengths and widths to accommodate different surgical needs and anatomical areas.
  • Surface:
    • The serration pattern on the filing surfaces enhances the effectiveness of bone removal while allowing for precision in shaping.
  • Applications:
    • Widely used in orthopedic surgeries, particularly for refining bone edges during procedures like fracture fixation or arthroplasty.
  • Variations:
    • Can be found in different shapes, such as straight or slightly curved, to provide access to various anatomical sites.

Bone surgery , Bone file, cross serration

Cross-Serrated Bone File

  • Purpose: Designed for shaping and smoothing bone surfaces while providing an effective grip on hard tissue.
  • Design:
    • Features a flat, elongated body with cross-serrated edges to enhance cutting efficiency.
    • Typically equipped with a handle for improved control during use.
  • Material:
    • Made from high-quality stainless steel or carbon steel for strength and durability.
    • Often has a polished finish for ease of cleaning and resistance to corrosion.
  • Size:
    • Available in various lengths and widths to suit different surgical applications and preferences.
  • Surface:
    • The cross-serration pattern increases the surface area for filing, allowing for effective removal of bone material while minimizing debris.
  • Applications:
    • Commonly used in orthopedic surgeries, particularly for shaping and refining bone edges during procedures like osteotomies or fracture repairs.
  • Variations:
    • May come in different shapes (e.g., curved or angled) to accommodate various surgical approaches and anatomical areas.

Bone surgery , Bone file, flat

Flat Bone File

  • Purpose: Used to smooth and contour bone surfaces during surgical procedures.
  • Design:
    • Flat, elongated shape with a straight edge for precise filing.
    • Usually features a handle for easy maneuvering and control.
  • Material:
    • Typically made from stainless steel or high-carbon steel for durability and strength.
    • May have a textured or coarse surface to enhance the filing process.
  • Size:
    • Available in various lengths and widths to accommodate different surgical needs.
  • Surface:
    • One or both sides may have a rough texture (coarse) for aggressive filing, while other sides may be smoother for finer finishing.
  • Applications:
    • Commonly used in orthopedic and reconstructive surgeries to refine bone edges and promote proper healing.
  • Variations:
    • May come in different shapes (e.g., curved or angled) for specific applications and access to various anatomical sites.

Bone surgery , Bone holding forceps, acc. to acc. to Lane, without lock

one Holding Forceps (Lane, Non-Locking)

  • Purpose: Used to securely hold and stabilize bone fragments during surgical procedures.
  • Design:
    • Characterized by a simple, scissor-like structure for easy handling.
    • Features broad, flat jaws that provide a stable grip on bone surfaces.
  • Material:
    • Typically made from high-quality stainless steel for strength and corrosion resistance.
    • Polished finish for easy cleaning and maintenance.
  • Size:
    • Available in various lengths and jaw widths to suit different surgical requirements.
  • Mechanism:
    • Non-locking design allows for manual control of grip strength; the surgeon maintains pressure to hold the bone in place.
  • Applications:
    • Widely used in orthopedic surgeries, particularly in fracture fixation and joint reconstruction.
  • Variations:
    • Comes in different configurations, including straight and curved options, to accommodate different surgical approaches.

Bone surgery , Bone holding forceps, acc. to Farabeuf

Bone Holding Forceps (Farabeuf)

  • Purpose: Designed to securely grasp and hold bone fragments during surgical procedures.
  • Design:
    • Typically features a scissor-like design for ease of use.
    • Includes serrated jaws for enhanced grip on bone surfaces.
  • Material:
    • Made from stainless steel for durability and resistance to corrosion.
    • May have a polished finish for smooth operation and easy cleaning.
  • Size:
    • Available in various sizes to accommodate different surgical needs and patient anatomies.
  • Mechanism:
    • Often equipped with a locking mechanism to maintain grip without continuous pressure from the surgeon.
  • Applications:
    • Commonly used in orthopedic surgeries, trauma procedures, and reconstructive surgeries.
  • Variations:
    • May come in different configurations, such as straight or curved jaws, depending on the surgical approach.