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Peadistric L.R.S. Micrometric Swivelling Clamp Template

  1. Pediatric Focus: Specifically designed for pediatric use.
  2. Micrometric Adjustment: Allows for precise settings.
  3. Swivelling Feature: Provides flexibility in positioning.
  4. Durable Material: Long-lasting and reliable.
  5. Easy to Use: Simple for medical professionals.
CODEPRODUCTIONDESCRIPTIONMATERIAL
ZF203Peadistric L.R.S. Micrometric Swivelling Clamp Template/Aluminum

 

Key Features and Benefits of the Pediatric L.R.S. Micrometric Swivelling Clamp Template

Key Features

  • Micrometric Adjustment for Precise Control
    The micrometric adjustment feature of the Pediatric L.R.S. Micrometric Swivelling Clamp Template is a standout aspect. It allows for extremely precise control over the clamping action. With this micrometric system, medical professionals can make fine-tuned adjustments in increments as small as a few micrometers. This level of precision is crucial in pediatric orthopedic procedures where the delicate nature of children’s bones and tissues demands exact positioning. For example, when applying a clamp during a corrective surgery for a congenital limb deformity, surgeons can use the micrometric adjustment to ensure that the clamping force is just right and that the clamp is positioned at the most accurate location on the bone. This precision helps in achieving the desired anatomical correction without causing unnecessary damage to the surrounding tissues or affecting the growth plates in growing bones.
  • Swivelling Function for Flexibility in Positioning
    The swivelling function provides significant flexibility in positioning the clamp. It enables the template to adapt to the unique anatomical contours and angles of a child’s body. In pediatric orthopedic surgeries, where bones may be in unusual positions due to deformities or where access to certain areas might be restricted, the ability to swivel the clamp is invaluable. For instance, during a procedure on a child’s knee joint with limited surgical access, the swivelling clamp can be adjusted to reach the optimal position for clamping around the joint structures. This flexibility ensures that the clamp can be placed precisely where it’s needed, regardless of the specific anatomical challenges presented by the pediatric patient.
  • High-Quality Materials for Durability and Safety
    Constructed from high-quality materials, this clamp template is built to last and is safe for use on children. The materials are carefully selected to meet strict pediatric medical device requirements. They are typically biocompatible, meaning they have a low risk of causing allergic reactions or other adverse effects in a child’s body. Additionally, these materials possess excellent mechanical properties to ensure durability. They can withstand the forces exerted during surgical procedures, repeated sterilization processes (if applicable), and normal handling by medical staff. For example, high-quality stainless steel or medical-grade plastics might be used, depending on the specific components of the template, to provide both strength and resistance to wear and tear over time.

Benefits

  • Accurate Clamping for Optimal Treatment Results
    The accurate clamping provided by this template is a key benefit. It ensures that the necessary fixation or positioning during pediatric orthopedic procedures is achieved with the highest level of precision. In procedures like fracture fixation or bone realignment surgeries, precise clamping helps maintain the correct position of the bones throughout the healing process. This accurate positioning promotes proper bone healing, reduces the risk of complications such as malunion (healing in an incorrect position) or non-union (failure of the bone to heal), and ultimately leads to better functional and cosmetic outcomes for the child. By allowing medical professionals to clamp with such accuracy, the template plays a vital role in achieving the best possible treatment results.
  • Ease of Use, Saving Time and Effort for Medical Professionals
    The Pediatric L.R.S. Micrometric Swivelling Clamp Template is designed to be user-friendly, which saves valuable time and effort for medical professionals. Its intuitive design, combined with the easy-to-operate micrometric adjustment and swivelling functions, enables surgeons to quickly set up and position the clamp during a procedure. For example, instead of spending excessive time trying to adjust a clamp manually to the right position and tension, the micrometric controls and swivelling mechanism allow for efficient and precise adjustments in a shorter amount of time. This ease of use not only streamlines the surgical process but also reduces the likelihood of errors that could occur due to difficulties in handling the device, contributing to a smoother and more successful surgical experience.
  • Essential Tool for Pediatric Orthopedic Procedures
    Overall, this clamp template is an indispensable tool for pediatric orthopedic procedures. Whether it’s for routine surgeries like setting fractures in children or more complex procedures such as corrective surgeries for congenital skeletal deformities, its combination of precise control, flexibility, and ease of use makes it highly valuable. It caters specifically to the unique needs of pediatric patients, where accuracy and safety are of the utmost importance. By providing these features and benefits, it helps medical professionals achieve better surgical outcomes, ensuring that children receive the best possible care and have a greater chance of a successful recovery and normal skeletal development

Indications for Pediatric L.R.S. Micrometric Swivelling Clamp Template

  1. Pediatric Fracture Repair
    In cases of pediatric fractures, the Pediatric L.R.S. Micrometric Swivelling Clamp Template is highly beneficial. When setting a fractured bone in a child, precise clamping is essential to ensure proper alignment of the bone fragments. The micrometric adjustment of the clamp allows surgeons to fine – tune the position and pressure exerted on the fragments with a high level of accuracy. For example, in a forearm fracture in a child, the clamp can be adjusted to hold the two ends of the broken bone precisely in the correct anatomical position. This precision is crucial because any misalignment can lead to problems during the healing process, such as the bone healing in a crooked position (malunion) or not healing at all (non – union). The swivelling feature is also useful as it enables the clamp to adapt to the natural curvature and shape of the child’s bone. Different fractures may present with various angles and orientations, and the swivelling clamp can be adjusted to fit around the bone optimally, providing stable fixation during the healing period.
  2. Corrective Surgeries for Deformities
    In corrective surgeries for pediatric skeletal deformities, this clamp template is an indispensable tool. Whether the deformity is congenital, like clubfoot or spinal deformities such as scoliosis, or acquired due to trauma or other factors, accurate clamping and adjustable positioning are key. The micrometric adjustment allows for the precise manipulation of the deformed bones. For instance, in a corrective surgery for a congenital limb deformity, the clamp can be used to gradually reposition the bone to its correct alignment. The ability to make small, precise adjustments with the micrometric feature is vital for achieving the desired correction without causing damage to the surrounding tissues or growth plates. The swivelling function is equally important as it provides the flexibility to work around the complex anatomical structures of the deformed area. In cases of spinal deformities, the clamp can swivel to fit the contours of the vertebrae and apply the necessary corrective force at the appropriate angle, facilitating the realignment process and ensuring the success of the corrective surgery.
  3. Bone Lengthening Procedures
    In pediatric bone lengthening procedures, often used for children with limb length discrepancies, the Pediatric L.R.S. Micrometric Swivelling Clamp Template is a valuable asset. During these procedures, the bone is gradually distracted to stimulate new bone growth. The clamp can be used to hold the external fixation devices in place with precise control. The micrometric adjustment ensures that the distraction force is applied accurately and evenly, which is crucial for proper bone formation and elongation. The swivelling feature allows the clamp to be adjusted to the changing angles and positions of the bone and fixation devices as the lengthening process progresses. This helps in maintaining the stability of the distraction process and promotes healthy bone growth, ensuring that the child’s limb length is corrected as effectively as possible.
  4. Complex Pediatric Orthopedic Interventions
    For other complex pediatric orthopedic interventions, such as surgeries for children with neuromuscular disorders that affect the skeletal system or procedures involving multiple bone segments and joints, the clamp template is indicated. The need for precise clamping and adaptable positioning is paramount in these cases. The micrometric adjustment and swivelling function together provide the necessary flexibility and accuracy to handle the complex anatomical arrangements and surgical requirements. For example, in a procedure to correct a complex deformity caused by a combination of muscle weakness and skeletal malformation, the clamp can be used to hold different bone segments in the correct position during the reconstruction, with the micrometric control ensuring accurate alignment and the swivelling mechanism allowing for adjustment to the unique patient anatomy. Overall, it is a specialized tool that meets the specific demands of pediatric orthopedic interventions where precision and flexibility are essential for successful treatment outcomes

How Does The Pediatric L.R.S. Micrometric Swivelling Clamp Template Work

  1. Placement of the Template
    During a pediatric orthopedic procedure, the first step is to position the Pediatric L.R.S. Micrometric Swivelling Clamp Template in the appropriate location. Surgeons rely on their pre – operative planning, which includes a detailed understanding of the patient’s anatomy through imaging studies such as X – rays, CT scans, or MRIs. Based on this information, they place the template near the area where the clamp will be needed. For example, if it’s a fracture repair, the template is positioned around the fractured bone segments. The correct placement of the template is crucial as it serves as a guide for the subsequent attachment and adjustment of the clamp.
  2. Attachment of the Clamp
    Once the template is in the right position, the clamp is attached to it. The attachment process is designed to be secure and precise. The clamp is usually connected to the template through a mechanism that allows for easy installation and a snug fit. This connection ensures that the clamp inherits the positional accuracy provided by the template. The clamp itself is typically designed with a structure that can grip the bone or other relevant anatomical structures firmly but without causing excessive damage.
  3. Micrometric Adjustment for Accuracy
    After the clamp is attached, the micrometric adjustment feature comes into play. This allows medical professionals to make extremely precise adjustments to the clamp’s position and the force it exerts. The micrometric system is often equipped with a fine – threaded screw or a similar mechanism that enables adjustments in very small increments, sometimes as small as a few micrometers. For example, in a corrective surgery for a pediatric limb deformity, surgeons can use this adjustment to precisely position the clamp on the bone to achieve the exact alignment needed for the corrective procedure. By making these small, accurate adjustments, the clamp can hold the bone or tissue in the optimal position for the surgical intervention, ensuring that the treatment is carried out with the highest level of precision.
  4. Swivelling for Optimal Placement
    The swivelling feature of the clamp provides flexibility in its placement. It allows the clamp to rotate around a certain axis or pivot point, enabling it to adapt to the unique anatomical contours and angles of the pediatric patient’s body. In a surgical situation where the bone or the area to be clamped has an irregular shape or is in a difficult – to – reach position, the swivelling clamp can be adjusted to fit perfectly. For instance, in a knee joint surgery, the swivelling clamp can be rotated to align with the curved surface of the femur or tibia, ensuring that the clamping force is evenly distributed and that the clamp is in the most effective position for the procedure.
  5. Function during the Procedure
    Throughout the surgical procedure, the micrometrically adjusted and swivelled clamp provides stable fixation and support. It holds the relevant anatomical structures in the correct position, allowing surgeons to perform other aspects of the operation such as bone realignment, implant placement, or tissue repair. The precise clamping force exerted by the clamp, thanks to the micrometric adjustment, prevents any unwanted movement of the structures during the procedure. This stability is essential for achieving the desired surgical outcomes, especially in delicate pediatric orthopedic surgeries where any misalignment or movement could have significant consequences for the patient’s long – term skeletal health and function.
  6. Removal after the Procedure
    After the surgical procedure is completed and the clamp has served its purpose, the Pediatric L.R.S. Micrometric Swivelling Clamp Template is removed. The removal process is carefully carried out to avoid any disruption to the newly treated area. Once removed, the patient can then begin the post – operative recovery process, with the surgical site healing under the appropriate post – operative care protocols. The use of this template throughout the procedure helps to ensure that the pediatric orthopedic surgery is carried out with precision and that the best possible results are achieved for the patient

Frequently Asked Questions

Q1: What is it made of?

A:
The Pediatric L.R.S. Micrometric Swivelling Clamp Template is typically constructed from medical - grade materials that are carefully selected to be suitable for pediatric use. These materials are biocompatible, which means they are well - tolerated by a child's body and have a low risk of causing adverse reactions like infections, allergic responses, or irritation. Commonly used materials may include high - quality metals such as titanium or stainless steel for parts that require strength and durability, like the clamp's structure. Additionally, certain medical - grade plastics might be used for components that need flexibility or ease of manufacturing into specific shapes. For example, the parts that enable the swivelling function could be made of durable plastics with smooth surfaces to allow for easy rotation. The combination of these materials ensures that the template functions effectively while being safe for use in children

Q2: How accurate is the micrometric adjustment?

A:
It provides very precise adjustment for optimal positioning. The micrometric adjustment mechanism is engineered to allow for extremely fine-tuned changes. It often utilizes features like fine - threaded screws or calibrated dials that enable adjustments in increments as small as a few micrometers. This level of precision is crucial in pediatric orthopedic surgeries where even a slight misalignment can have significant consequences for a child's growing bones and overall skeletal development. For instance, in corrective surgeries for limb deformities or fracture repair, surgeons can rely on this precise adjustment to position the clamp exactly where it's needed to hold bones or tissues in the correct anatomical position, ensuring the best possible surgical outcomes

Q3: Is it easy to use?

A:
Yes, it is designed to be user - friendly for medical professionals. The overall design of the Pediatric L.R.S. Micrometric Swivelling Clamp Template takes into account the practical needs of surgeons and other medical staff during procedures. The micrometric adjustment controls are intuitive, usually easy to manipulate to make the necessary precise adjustments. The swivelling feature also operates smoothly, allowing for quick and flexible positioning. Additionally, the template's attachment and detachment processes are typically straightforward, minimizing the time and effort required for handling during a surgical operation. However, like any medical device, proper usage does require a certain level of familiarity and skill, which comes with experience in pediatric orthopedic surgeries

Q4: Can it be sterilized?

A:
Yes, it can be sterilized to ensure safety during procedures. Sterilization is an essential step to eliminate any potential microorganisms that could cause infections in pediatric patients. Different sterilization methods can be employed depending on the materials used in the template. For metal components like titanium or stainless steel, autoclaving (steam sterilization under high pressure) is often a viable option. For plastic parts, methods such as ethylene oxide gas sterilization or plasma sterilization might be more suitable. Manufacturers usually provide specific guidelines regarding the recommended sterilization procedures to maintain the integrity and functionality of the template while ensuring it remains sterile for each use

Q5: Does it come in different sizes?

A:
It may come in various sizes to fit different pediatric patients. Since children vary significantly in size depending on their age, body build, and the specific area of the body being treated, having size options is vital. Smaller templates are available for younger children or for procedures involving smaller bones and anatomical structures, while larger sizes are designed for older children or when dealing with larger skeletal areas. Surgeons can assess the patient's needs through preoperative evaluations, including physical examinations and imaging studies like X - rays or CT scans, and then select the most appropriate size of the template to ensure effective and precise use during the surgical procedure.

Q6: How durable is it?

A:
Made from durable materials, the Pediatric L.R.S. Micrometric Swivelling Clamp Template can withstand multiple uses. The high - quality metals and plastics used in its construction possess excellent mechanical properties that allow them to endure the rigors of surgical handling, repeated sterilization processes (if it's a reusable device), and the normal wear and tear that occurs during procedures. For example, the clamp's structure should maintain its strength and the micrometric adjustment mechanism should continue to function accurately over time. However, the durability also depends on proper storage, handling, and adherence to the recommended sterilization and usage guidelines to ensure its long - term performance

Q7: Can it be reused?

A:
Depending on the material and sterilization process, some Pediatric L.R.S. Micrometric Swivelling Clamp Templates may be reusable. If the template is made of materials that can tolerate repeated sterilization without significant degradation in quality or functionality, and if it passes the necessary quality checks after sterilization, it could potentially be reused. However, many healthcare facilities have strict policies regarding the reuse of medical devices, especially those used in pediatric patients where safety and sterility are of the utmost importance. In some cases, due to concerns about potential damage during use or difficulties in ensuring complete sterilization, these templates may be designated as single - use items

Q8: What procedures is it used in?

A:
It is used in pediatric orthopedic surgeries. Specifically, it is valuable in procedures where precise clamping and flexible positioning are required. This includes surgeries for pediatric fracture repair, where accurate alignment of bone fragments is crucial. It is also used in corrective surgeries for deformities such as congenital limb deformities (like clubfoot or bowed limbs), spinal deformities (such as scoliosis), or deformities acquired due to trauma. Additionally, it can be employed in other complex pediatric orthopedic interventions like bone lengthening procedures or surgeries for children with neuromuscular disorders that affect the skeletal system, where precise control over clamping and positioning is essential for optimal surgical outcomes

Q9: How does the swivelling feature work?

A:
The swivelling feature allows for flexible positioning during procedures. It typically involves a mechanical design where the clamp is connected to the template through a pivot point or a joint that enables rotation. This connection is engineered to allow smooth movement in multiple directions, usually within a certain range of angles that are relevant for pediatric orthopedic applications. For example, in a surgical situation where the bone or the area to be clamped has an irregular shape or is at an odd angle, the swivelling clamp can be rotated to adjust its position and fit snugly around the anatomical structure. This flexibility ensures that the clamp can be optimally positioned regardless of the specific anatomical challenges presented by the patient's body, facilitating better surgical access and more accurate application of the clamping force

Q10: Does it require special training to use?

A:
Some training may be beneficial to ensure proper usage of the Pediatric L.R.S. Micrometric Swivelling Clamp Template. While the device is designed to be relatively intuitive, understanding its specific features, such as the operation of the micrometric adjustment mechanism, the proper use of the swivelling feature for different surgical scenarios, and the correct handling during sterilization and storage, is important. Training programs typically cover aspects like how to select the appropriate size of the template for a particular patient, how to position it accurately during surgery, how to make the most effective micrometric adjustments, and how to ensure its proper removal after the procedure. Additionally, training may also include knowledge about potential risks and how to avoid them, as well as an understanding of the role of the template in various pediatric orthopedic procedures to help medical professionals use it effectively and safely for optimal surgical outcomes

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