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Lower Molares (24)

Lower Molars:

  • Extraction Forceps
    • Material: Stainless steel
    • Features:
      • Designed for extracting lower molars; features a robust, angled beak for optimal grip and leverage on the tooth.
      • Ergonomic handle design enhances control and comfort during extraction.
  • Elevators
    • Material: Stainless steel
    • Features:
      • Used to loosen lower molars prior to extraction; various shapes provide effective access to the roots.
      • Minimizes trauma to surrounding tissues during the extraction process.
  • Bone Chisels and Rongeurs
    • Material: Stainless steel
    • Features:
      • Employed for removing bone around the lower molar during surgical extractions; rongeurs allow for precise and controlled bone removal.
  • Surgical Scissors
    • Material: Stainless steel
    • Features:
      • Sharp blades for making incisions in soft tissue during molar extractions or surgical procedures.
  • Irrigation Needles
    • Material: Stainless steel or plastic
    • Features:
      • Long, slender tips for delivering irrigants, helping maintain a clean surgical field during extraction.
  • Suction Tips
    • Material: Plastic or stainless steel
    • Features:
      • Essential for clearing blood and debris during the extraction, ensuring visibility and a clean field.
  • X-ray Film or Sensors
    • Material: Photographic film or digital sensors
    • Features:
      • Used to assess the position and roots of lower molars; critical for planning and executing extractions.

Specific Instrument: 24

  • 24 Forceps
    • Material: Stainless steel
    • Features:
      • Specifically designed for the extraction of lower molars.
      • Features a robust, angled beak that effectively grips the tooth, allowing for strong leverage during extraction.
      • Ergonomic handle design promotes clinician comfort and precision during procedures.

Additional Notes

  • Instruments are typically autoclavable for sterility and hygiene.
  • Proper selection and handling of instruments are crucial for the efficiency and success of lower molar extractions. Ergonomic designs help improve clinician comfort and control during these challenging procedures.

Lower Roots

Lower Roots:

Description:
  • Lower roots refer to the root structures of teeth located in the lower jaw (mandible), providing anchorage and support for the teeth. They are critical for the stability and functionality of lower teeth, especially molars and premolars.
Characteristics:
  • Number: Each tooth typically has one to three roots, depending on the type of tooth. For example, lower molars usually have two or three roots.
  • Shape: Roots are conical or flattened, tapering toward the apex (tip) and are embedded in the alveolar bone.
  • Length: Root length varies by tooth type, with molar roots being generally longer and more complex than those of incisors.
Anatomy:
  • Root Canal: The interior space within the root that contains the pulp (nerves and blood vessels).
  • Cementum: A bone-like tissue covering the root, aiding in attachment to the periodontal ligament.
  • Periodontal Ligament: A connective tissue that anchors the tooth roots to the jawbone, allowing for slight movement during chewing.
Function:
  • Anchorage: Roots anchor the teeth securely in the jawbone, providing stability for chewing and biting.
  • Support: They help distribute forces generated during chewing across the jawbone, reducing stress on the teeth and surrounding structures.
Common Dental Considerations:
  • Infection: Root infections can occur, leading to pain and the need for root canal treatment.
  • Periodontal Disease: Gum disease can lead to root exposure and loss of bone support, potentially resulting in tooth loss.
  • Fractures: Roots can fracture due to trauma or excessive force, which may require surgical intervention.
Care:
  • Maintaining good oral hygiene through regular brushing, flossing, and dental check-ups is crucial for the health of lower roots. This helps prevent periodontal disease and other issues that can compromise root integrity and overall dental health.

Lower Roots

Lower Roots:

Description:
  • Lower roots refer to the root structures of teeth located in the lower jaw (mandible), providing anchorage and support for the teeth. They are critical for the stability and functionality of lower teeth, especially molars and premolars.
Characteristics:
  • Number: Each tooth typically has one to three roots, depending on the type of tooth. For example, lower molars usually have two or three roots.
  • Shape: Roots are conical or flattened, tapering toward the apex (tip) and are embedded in the alveolar bone.
  • Length: Root length varies by tooth type, with molar roots being generally longer and more complex than those of incisors.
Anatomy:
  • Root Canal: The interior space within the root that contains the pulp (nerves and blood vessels).
  • Cementum: A bone-like tissue covering the root, aiding in attachment to the periodontal ligament.
  • Periodontal Ligament: A connective tissue that anchors the tooth roots to the jawbone, allowing for slight movement during chewing.
Function:
  • Anchorage: Roots anchor the teeth securely in the jawbone, providing stability for chewing and biting.
  • Support: They help distribute forces generated during chewing across the jawbone, reducing stress on the teeth and surrounding structures.
Common Dental Considerations:
  • Infection: Root infections can occur, leading to pain and the need for root canal treatment.
  • Periodontal Disease: Gum disease can lead to root exposure and loss of bone support, potentially resulting in tooth loss.
  • Fractures: Roots can fracture due to trauma or excessive force, which may require surgical intervention.
Care:
  • Maintaining good oral hygiene through regular brushing, flossing, and dental check-ups is crucial for the health of lower roots. This helps prevent periodontal disease and other issues that can compromise root integrity and overall dental health.

Lower Third Molars

Lower Third Molars:

  • Extraction Forceps
    • Material: Stainless steel
    • Features: Designed specifically for lower third molars; features curved beaks for effective gripping and leverage.
  • Elevators
    • Material: Stainless steel
    • Features: Used to loosen third molars before extraction; various shapes for access to the roots and surrounding bone.
  • Bone Chisels and Rongeurs
    • Material: Stainless steel
    • Features: Used for removing bone around the molar during surgical extractions; rongeurs have a scissor-like action for precise bone removal.
  • Surgical Scissors
    • Material: Stainless steel
    • Features: Used for cutting soft tissue during extraction procedures; various styles for different surgical needs.
  • Suction Tips
    • Material: Plastic or stainless steel
    • Features: Essential for maintaining a clear field by removing blood and debris during surgery.
  • Scalpel Blades
    • Material: Stainless steel
    • Features: Sharp blades for making incisions in soft tissue during surgical extractions.
  • Irrigation Needles
    • Material: Stainless steel or plastic
    • Features: Used to flush out the extraction site and keep the area clean during surgery.
  • Sutures
    • Material: Absorbable or non-absorbable materials
    • Features: Used to close incisions after extraction; various types for different healing needs.
  • X-ray Film or Sensors
    • Material: Photographic film or digital sensors
    • Features: Used for assessing the position and roots of lower third molars; essential for planning extractions.

Additional Notes

  • Instruments are often autoclavable to ensure cleanliness and sterility.
  • Ergonomic designs enhance comfort and control during procedures, especially given the complexities associated with lower third molars.

Lower Third Molars

Lower Third Molars:

  • Extraction Forceps
    • Material: Stainless steel
    • Features: Designed specifically for extracting lower third molars; features angled beaks for effective gripping and leverage.
  • Elevators
    • Material: Stainless steel
    • Features: Used to loosen lower third molars before extraction; various shapes to access the roots effectively, especially in tight spaces.
  • Bone Chisels and Rongeurs
    • Material: Stainless steel
    • Features: Used for removing bone around the third molar during surgical extractions; rongeurs allow for precise and controlled bone removal.
  • Surgical Scissors
    • Material: Stainless steel
    • Features: Sharp blades for making incisions in soft tissue during surgical extractions.
  • Irrigation Needles
    • Material: Stainless steel or plastic
    • Features: Long, slender tips for delivering irrigants to maintain a clean field during the extraction procedure.
  • Suction Tips
    • Material: Plastic or stainless steel
    • Features: Essential for removing blood and debris during the extraction process to keep the surgical area clear.
  • X-ray Film or Sensors
    • Material: Photographic film or digital sensors
    • Features: Used to assess the position and roots of lower third molars; critical for planning and executing extractions.

Additional Notes

  • Instruments are typically autoclavable to ensure sterility and hygiene.
  • Ergonomic designs enhance clinician comfort and control, which is especially important when dealing with the complex anatomy of lower third molars. Proper selection and use of instruments can significantly improve the efficiency and success of extraction procedures.

Lucks Set Of 4 Instruments Condensation Endodontic

Lucks Set of 4 Instruments for Condensation Endodontic Material

  • Precision Engineering: Each instrument is crafted for optimal precision in endodontic procedures, ensuring effective condensation of materials.
  • Durable Material: Made from high-quality stainless steel, these instruments resist corrosion and maintain sharpness for long-lasting use.
  • Ergonomic Design: Designed for comfortable handling, allowing for better control and reduced hand fatigue during procedures.
  • Variety of Shapes: The set includes four distinct instruments, each tailored for specific tasks in the condensation process, enhancing versatility in treatment.
  • Autoclavable: Suitable for sterilization, ensuring compliance with infection control protocols and safety standards.
  • Lightweight: Each instrument is designed to be lightweight, promoting ease of use and maneuverability.
  • Versatile Application: Ideal for use in a variety of endodontic procedures, including root canal filling and sealing.
This set is essential for dental professionals looking to achieve precision and efficiency in endodontic treatments.

Matheiu

Mathieu Pliers

  • Precision Tool: Designed specifically for the placement and adjustment of orthodontic components, such as brackets and bands, ensuring accurate and efficient handling.
  • Durable Construction: Made from high-quality stainless steel, providing strength and longevity, with resistance to corrosion for reliable use in clinical settings.
  • Ergonomic Design: Features comfortable handles that enhance grip and control, reducing hand fatigue during extended procedures.
  • Versatile Functionality: Ideal for a range of orthodontic applications, including the placement of ligatures, making it a valuable tool in orthodontic practices.
  • Lightweight and Balanced: Promotes easy maneuverability, allowing for precise adjustments and control during use.
  • Autoclavable: Safe for sterilization, complying with infection control standards to ensure patient safety and hygiene.
  • Enhanced Access: The design allows for better visibility and reach when working in the oral cavity, streamlining orthodontic procedures.
Mathieu Pliers are essential instruments for dental and orthodontic professionals, enhancing the efficiency and accuracy of various clinical tasks.

Mathieu Needle Holder 12cm

Mathieu Needle Holder 12cm:

  • Material Composition: Typically constructed from high-quality stainless steel, ensuring durability, resistance to corrosion, and long-lasting performance.
  • Size: Measures 12cm in length, making it compact and suitable for precise handling in various surgical procedures.
  • Design Features: Features a curved jaw with a locking mechanism, designed to securely grasp needles while suturing and during other delicate tasks.
  • Handle Design: Ergonomically shaped handles for a comfortable grip, allowing for enhanced control and reduced hand fatigue during extended use.
  • Finish: Polished surface for easy cleaning and maintenance, minimizing the risk of contamination.
  • Usage: Commonly used in surgical settings for holding needles, suturing, and other tasks that require precise manipulation of materials.
  • Sterilization Compatibility: Designed to withstand autoclaving and other sterilization methods to ensure compliance with hygiene standards in medical environments.

Mathieu Needle Holder 14cm

Mathieu Needle Holder 14cm:

  • Material Composition: Typically constructed from high-quality stainless steel, ensuring durability, resistance to corrosion, and long-lasting performance.
  • Size: Measures 12cm in length, making it compact and suitable for precise handling in various surgical procedures.
  • Design Features: Features a curved jaw with a locking mechanism, designed to securely grasp needles while suturing and during other delicate tasks.
  • Handle Design: Ergonomically shaped handles for a comfortable grip, allowing for enhanced control and reduced hand fatigue during extended use.
  • Finish: Polished surface for easy cleaning and maintenance, minimizing the risk of contamination.
  • Usage: Commonly used in surgical settings for holding needles, suturing, and other tasks that require precise manipulation of materials.
  • Sterilization Compatibility: Designed to withstand autoclaving and other sterilization methods to ensure compliance with hygiene standards in medical environments.

Matrix Ivory 86mm

Matrix Ivory 86mm:

  • Material Composition: Typically made from high-quality, durable plastic or resin, providing flexibility and strength for dental applications.
  • Size: Measures 86 mm in length, designed for optimal use in various restorative dental procedures.
  • Design Features: Features a smooth surface with a contoured shape, allowing for easy placement and adaptation to tooth morphology during restorations.
  • Usage: Commonly used as a matrix band for holding restorative materials in place, ensuring proper contour and contact during cavity fillings.
  • Color: Ivory color aids in visibility and helps to distinguish it from dental materials during procedures.
  • Flexibility: Designed to be flexible yet sturdy, enabling easy manipulation and adaptation around tooth surfaces.
  • Sterilization Compatibility: Often designed for single-use, but some variants may be suitable for autoclaving or other sterilization methods, depending on the material.

Mayo Hegar Needle Holder

Mayo Hegar Needle Holder:

  • Material Composition: Typically made from high-quality stainless steel for durability, strength, and resistance to corrosion.
  • Blade Design: Features a blunt, rounded tip designed for securely grasping and controlling needles during suturing and surgical procedures.
  • Size: Available in various sizes, providing options for different surgical needs and preferences, usually longer for better reach.
  • Handle Design: Ergonomically shaped handles, often with a locking mechanism for secure closure, allowing for controlled handling of needles.
  • Finish: Smooth, polished surface for easy cleaning and maintenance, reducing the risk of contamination during use.
  • Usage: Commonly used in surgical settings for holding needles while suturing, as well as for tissue manipulation and other procedures.
  • Sterilization Compatibility: Designed to withstand autoclaving and other sterilization processes to ensure hygiene and safety in medical environments.

Mayo Hegar needle holder 12cm

Mayo Hegar needle holder 12cm:

  • Material Composition: Made from high-quality stainless steel, providing strength, durability, and resistance to corrosion for long-term use.
  • Size: Measures 14 cm in length, offering an ideal balance of control and reach for various surgical applications.
  • Design Features: Features a straight jaw design with fine tips, allowing for precise gripping and manipulation of needles during suturing.
  • Handle Design: Ergonomically shaped handles with a locking mechanism for a secure grip, facilitating easy operation and reducing hand fatigue.
  • Finish: Typically has a polished surface for smooth handling and easy cleaning, minimizing the risk of contamination.
  • Usage: Commonly used in microsurgery and delicate surgical procedures for holding needles and suturing materials with precision.
  • Sterilization Compatibility: Designed to withstand autoclaving and other sterilization methods, ensuring compliance with hygiene standards in medical environments.