RQPJ01
XCmedico
1 Pcs(72 Hours Delivery)
Humeral
Medical Stainless Steel
CE/ISO:9001/ISO13485.Etc
Custom-Made 15 Days Delivery(Excluding Shipping Time)
FedEx. DHL.TNT.EMS.Etc
Availability: | |
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Quantity: | |
Products | Pictures | Details | ||||
Tibial IntramedullaryNail Instrument Set(PN:RQPJ01) | ![]() ![]() | 1 | N-02-1 | Tibial Nail Tray | 1 | |
2 | N-02-2 | Universal Joint | 1 | |||
3 | N-02-3 | Drill Sleeve | 1 | |||
4 | N-02-4 | Fixed Connector | 1 | |||
5 | N-02-5 | Quick Coupling T-Handle | 1 | |||
6 | N-02-6 | Location Rod | 1 | |||
7 | N-02-7 | Screwdriver | 1 | |||
8 | N-02-8 | T-handle Drill Bit 5.2mm | 1 | |||
9 | N-02-9 | Depth Gague 10-100mm | 1 | |||
10 | N-02-10 | Drill Bit 5.2*300mm | 1 | |||
11 | N-02-11 | Drill Bit 4.0*300mm | 1 | |||
12 | N-02-12 | Drill Bit with Limitator 4.0*300mm | 1 | |||
13 | N-02-13 | Guide Rod | 1 | |||
14 | N-02-14 | Reamer 8mm | 1 | |||
15 | N-02-15 | Reamer 9mm | 1 | |||
16 | N-02-16 | Reamer 10mm | 1 | |||
17 | N-02-17 | Reamer 11mm | 1 | |||
18 | N-02-18 | AWL | 1 | |||
19 | N-02-19 | Hammer | 1 | |||
20 | N-02-20 | Open Wrench | 1 | |||
21 | N-02-21 | Nail Connector Solid | 1 | |||
22 | N-02-22 | Nail Connector Cannulated | 1 | |||
23 | N-02-23 | Bolt | 1 | |||
24 | N-02-24 | Bolt | 1 | |||
25 | N-02-25 | Sighting Device Handle | 1 | |||
26 | N-02-26 | Drill Sleeve | 1 | |||
27 | N-02-27 | Hex Wrench | 1 | |||
28 | N-02-28 | Hex Wrench | 1 | |||
29 | N-02-29 | Drill Sleeve | 1 | |||
30 | N-02-30 | Drill Sleeve | 1 | |||
31 | N-02-31 | Location Forcep | 1 | |||
32 | N-02-32 | Proximal Guider | 1 | |||
33 | N-02-33 | Distal Guider | 1 | |||
34 | N-02-34 | Aluminium Box | 1 |
CNC preliminary processing The computer numerical control technology is used to precisely process orthopedic products. This process has the characteristics of high precision, high efficiency, and repeatability. It can quickly produce customized medical devices that conform to the human anatomical structure and provide patients with personalized treatment plans. | Product polishing The purpose of orthopedic products polishing is to improve the contact between the implant and human tissue, reduce stress concentration, and improve the long-term stability of the implant. | Quality Inspection The mechanical properties test of orthopedic products is designed to simulate the stress conditions of human bones, evaluate the load-bearing capacity and durability of implants in the human body, and ensure their safety and reliability. |
Product package Orthopedic products are packaged in a sterile room to ensure that the product is encapsulated in a clean, sterile environment to prevent microbial contamination and ensure surgical safety. |
The storage of orthopedic products requires strict in-and-out management and quality control to ensure product traceability and prevent expiration or wrong shipment. |
The sample room is used to store, display and manage various orthopedic products samples for product technology exchanges and training. |
1. Ask Xc Medico Team For Tibial Intramedullary Nail Instrument Set Product Catalog.
2. Choose Your Interested Tibial Intramedullary Nail Instrument Set Product.
3. Ask For A Sample To Test Tibial Intramedullary Nail Instrument Set Quality.
4.Make An Order Of Xc Medico's Tibial Intramedullary Nail Instrument Set.
5.Become A Dealer Of Xc Medico's Tibial Intramedullary Nail Instrument Set.
1. Better Purchase Prices Of Tibial Intramedullary Nail Instrument Set.
2.100% The Highest Quality Tibial Intramedullary Nail Instrument Set.
3. Less Ordering Efforts.
4. Price Stability For The Period Of Agreement.
5. Sufficient Tibial Intramedullary Nail Instrument Set.
6. Quick And Easy Assessment Of XC Medico's Tibial Intramedullary Nail Instrument Set.
7. A Globally Recognized Brand - XC medico.
8. Fast Access Time To XC Medico Sales Team.
9. Additional Quality Test By XC Medico Team.
10. Track Your XC Medico Order From Start To Finish.
The Tibial Intramedullary Nail Instrument Set is a specialized surgical toolset designed for the treatment of fractures of the tibia, particularly diaphyseal (shaft) fractures. The tibia, or shinbone, is the larger and stronger of the two bones in the lower leg. Fractures in this area are common, especially due to high-energy trauma, sports injuries, and road accidents.
The intramedullary nail is a long, slender rod, typically made from biocompatible materials like titanium or stainless steel, providing a combination of strength and flexibility. The nail is designed to fit within the medullary canal of the tibia and is available in different lengths and diameters to accommodate patient-specific anatomy and fracture patterns.
A critical feature of the tibial nail is the locking mechanism. The nail includes pre-drilled holes that allow for the placement of locking screws at both ends (proximal and distal). These screws ensure that the bone fragments remain stabilized, prevent rotation, and allow the nail to function as a fixed support for the bone.
The set includes targeting jigs or guides, which aid in the precise placement of the locking screws through the pre-drilled holes in the nail. This ensures that the screws are aligned correctly with the nail and provides rotational and axial stability to the fracture site.
A reaming system is often included, allowing the surgeon to prepare the medullary canal by removing bone debris and creating a smooth path for nail insertion. This step is essential in preventing misalignment and ensuring that the nail fits snugly within the bone, reducing the risk of implant migration or failure.
The entire design of the tibial IM nail and its corresponding instrument set supports a minimally invasive surgical approach. This reduces the size of the surgical incisions, minimizing soft tissue damage, decreasing the risk of infection, and promoting faster recovery times.
The instrument set typically includes nails with different curvatures, lengths, and diameters, making it adaptable to various tibial fractures, from simple to comminuted, and ensuring that the right nail is used for the specific needs of each patient.
One of the most significant advantages of the tibial intramedullary nail is that it allows for early mobilization of the patient. Because the nail is inserted within the medullary canal, it provides strong internal support for the tibia, allowing patients to bear weight on the leg shortly after surgery.
The intramedullary position of the tibial nail offers superior biomechanical strength compared to other forms of fixation like plates and external fixation devices. By utilizing the central cavity of the tibia for support, the nail shares the load between the bone and the implant, reducing the stress on the implant and lowering the risk of mechanical failure.
The minimally invasive nature of the procedure leads to faster recovery times and a lower risk of infection. The small incisions required for nail insertion reduce soft tissue trauma, blood loss, and the overall surgical footprint.
The tibial intramedullary nail is highly versatile and can be used to treat a wide variety of tibial fractures, including simple transverse fractures, oblique fractures, spiral fractures, comminuted fractures, and fractures with significant displacement.
The nail's locking mechanism ensures that the fracture fragments remain aligned and stabilized throughout the healing process. This reduces the risk of complications such as nonunion (where the fracture does not heal) and malunion (where the fracture heals in an incorrect position). The load-sharing nature of the nail also promotes natural bone healing by allowing micromovement at the fracture site, which is known to stimulate bone regeneration.
Compared to plate fixation, which places significant stress on the implant, the tibial intramedullary nail has a lower risk of implant failure. The nail is designed to withstand the physiological stresses placed on the tibia during weight-bearing activities, making it a durable and reliable solution for fracture fixation.
Selecting the appropriate nail length and diameter is critical for ensuring optimal fixation and minimizing the risk of complications such as nail migration or malalignment. Surgeons must carefully assess the patient's anatomy and fracture pattern using preoperative imaging, such as X-rays or CT scans, to choose the right implant.
The placement of the locking screws is a technically demanding aspect of the procedure. Improper placement can result in complications such as malrotation, instability, or even damage to the surrounding soft tissues or neurovascular structures.
Care must be taken to avoid extending the nail into the knee or ankle joints, as this can lead to joint stiffness or damage to the articular cartilage. In fractures close to the joint, surgeons may consider alternative fixation methods or shorter nails to prevent iatrogenic injury to the joints.
Although the minimally invasive nature of the procedure reduces the risk of infection, proper aseptic technique and postoperative wound care are still essential to prevent infection.
In patients with osteoporosis or poor bone quality, the tibial intramedullary nail may require additional support, such as bone grafting or cement augmentation, to ensure adequate fixation.
The tibial intramedullary nail instrument set market will witness significant growth in the coming years due to advancements in orthopedic technology, an aging population, an increase in the number of fractures, and the need for minimally invasive orthopedic surgical solutions. These factors are reshaping the landscape of trauma care and orthopedic surgery, positioning the tibial intramedullary nail instrument set as an essential component of fracture management in the coming years.
In conclusion, tibial intramedullary nail instrument sets are essential tools for orthopedic surgeons treating tibial fractures. By selecting a high-quality instrument set, surgeons can improve the efficiency, accuracy, and outcomes of their procedures.
Products | Pictures | Details | ||||
Tibial IntramedullaryNail Instrument Set(PN:RQPJ01) | ![]() ![]() | 1 | N-02-1 | Tibial Nail Tray | 1 | |
2 | N-02-2 | Universal Joint | 1 | |||
3 | N-02-3 | Drill Sleeve | 1 | |||
4 | N-02-4 | Fixed Connector | 1 | |||
5 | N-02-5 | Quick Coupling T-Handle | 1 | |||
6 | N-02-6 | Location Rod | 1 | |||
7 | N-02-7 | Screwdriver | 1 | |||
8 | N-02-8 | T-handle Drill Bit 5.2mm | 1 | |||
9 | N-02-9 | Depth Gague 10-100mm | 1 | |||
10 | N-02-10 | Drill Bit 5.2*300mm | 1 | |||
11 | N-02-11 | Drill Bit 4.0*300mm | 1 | |||
12 | N-02-12 | Drill Bit with Limitator 4.0*300mm | 1 | |||
13 | N-02-13 | Guide Rod | 1 | |||
14 | N-02-14 | Reamer 8mm | 1 | |||
15 | N-02-15 | Reamer 9mm | 1 | |||
16 | N-02-16 | Reamer 10mm | 1 | |||
17 | N-02-17 | Reamer 11mm | 1 | |||
18 | N-02-18 | AWL | 1 | |||
19 | N-02-19 | Hammer | 1 | |||
20 | N-02-20 | Open Wrench | 1 | |||
21 | N-02-21 | Nail Connector Solid | 1 | |||
22 | N-02-22 | Nail Connector Cannulated | 1 | |||
23 | N-02-23 | Bolt | 1 | |||
24 | N-02-24 | Bolt | 1 | |||
25 | N-02-25 | Sighting Device Handle | 1 | |||
26 | N-02-26 | Drill Sleeve | 1 | |||
27 | N-02-27 | Hex Wrench | 1 | |||
28 | N-02-28 | Hex Wrench | 1 | |||
29 | N-02-29 | Drill Sleeve | 1 | |||
30 | N-02-30 | Drill Sleeve | 1 | |||
31 | N-02-31 | Location Forcep | 1 | |||
32 | N-02-32 | Proximal Guider | 1 | |||
33 | N-02-33 | Distal Guider | 1 | |||
34 | N-02-34 | Aluminium Box | 1 |
CNC preliminary processing The computer numerical control technology is used to precisely process orthopedic products. This process has the characteristics of high precision, high efficiency, and repeatability. It can quickly produce customized medical devices that conform to the human anatomical structure and provide patients with personalized treatment plans. | Product polishing The purpose of orthopedic products polishing is to improve the contact between the implant and human tissue, reduce stress concentration, and improve the long-term stability of the implant. | Quality Inspection The mechanical properties test of orthopedic products is designed to simulate the stress conditions of human bones, evaluate the load-bearing capacity and durability of implants in the human body, and ensure their safety and reliability. |
Product package Orthopedic products are packaged in a sterile room to ensure that the product is encapsulated in a clean, sterile environment to prevent microbial contamination and ensure surgical safety. |
The storage of orthopedic products requires strict in-and-out management and quality control to ensure product traceability and prevent expiration or wrong shipment. |
The sample room is used to store, display and manage various orthopedic products samples for product technology exchanges and training. |
1. Ask Xc Medico Team For Tibial Intramedullary Nail Instrument Set Product Catalog.
2. Choose Your Interested Tibial Intramedullary Nail Instrument Set Product.
3. Ask For A Sample To Test Tibial Intramedullary Nail Instrument Set Quality.
4.Make An Order Of Xc Medico's Tibial Intramedullary Nail Instrument Set.
5.Become A Dealer Of Xc Medico's Tibial Intramedullary Nail Instrument Set.
1. Better Purchase Prices Of Tibial Intramedullary Nail Instrument Set.
2.100% The Highest Quality Tibial Intramedullary Nail Instrument Set.
3. Less Ordering Efforts.
4. Price Stability For The Period Of Agreement.
5. Sufficient Tibial Intramedullary Nail Instrument Set.
6. Quick And Easy Assessment Of XC Medico's Tibial Intramedullary Nail Instrument Set.
7. A Globally Recognized Brand - XC medico.
8. Fast Access Time To XC Medico Sales Team.
9. Additional Quality Test By XC Medico Team.
10. Track Your XC Medico Order From Start To Finish.
The Tibial Intramedullary Nail Instrument Set is a specialized surgical toolset designed for the treatment of fractures of the tibia, particularly diaphyseal (shaft) fractures. The tibia, or shinbone, is the larger and stronger of the two bones in the lower leg. Fractures in this area are common, especially due to high-energy trauma, sports injuries, and road accidents.
The intramedullary nail is a long, slender rod, typically made from biocompatible materials like titanium or stainless steel, providing a combination of strength and flexibility. The nail is designed to fit within the medullary canal of the tibia and is available in different lengths and diameters to accommodate patient-specific anatomy and fracture patterns.
A critical feature of the tibial nail is the locking mechanism. The nail includes pre-drilled holes that allow for the placement of locking screws at both ends (proximal and distal). These screws ensure that the bone fragments remain stabilized, prevent rotation, and allow the nail to function as a fixed support for the bone.
The set includes targeting jigs or guides, which aid in the precise placement of the locking screws through the pre-drilled holes in the nail. This ensures that the screws are aligned correctly with the nail and provides rotational and axial stability to the fracture site.
A reaming system is often included, allowing the surgeon to prepare the medullary canal by removing bone debris and creating a smooth path for nail insertion. This step is essential in preventing misalignment and ensuring that the nail fits snugly within the bone, reducing the risk of implant migration or failure.
The entire design of the tibial IM nail and its corresponding instrument set supports a minimally invasive surgical approach. This reduces the size of the surgical incisions, minimizing soft tissue damage, decreasing the risk of infection, and promoting faster recovery times.
The instrument set typically includes nails with different curvatures, lengths, and diameters, making it adaptable to various tibial fractures, from simple to comminuted, and ensuring that the right nail is used for the specific needs of each patient.
One of the most significant advantages of the tibial intramedullary nail is that it allows for early mobilization of the patient. Because the nail is inserted within the medullary canal, it provides strong internal support for the tibia, allowing patients to bear weight on the leg shortly after surgery.
The intramedullary position of the tibial nail offers superior biomechanical strength compared to other forms of fixation like plates and external fixation devices. By utilizing the central cavity of the tibia for support, the nail shares the load between the bone and the implant, reducing the stress on the implant and lowering the risk of mechanical failure.
The minimally invasive nature of the procedure leads to faster recovery times and a lower risk of infection. The small incisions required for nail insertion reduce soft tissue trauma, blood loss, and the overall surgical footprint.
The tibial intramedullary nail is highly versatile and can be used to treat a wide variety of tibial fractures, including simple transverse fractures, oblique fractures, spiral fractures, comminuted fractures, and fractures with significant displacement.
The nail's locking mechanism ensures that the fracture fragments remain aligned and stabilized throughout the healing process. This reduces the risk of complications such as nonunion (where the fracture does not heal) and malunion (where the fracture heals in an incorrect position). The load-sharing nature of the nail also promotes natural bone healing by allowing micromovement at the fracture site, which is known to stimulate bone regeneration.
Compared to plate fixation, which places significant stress on the implant, the tibial intramedullary nail has a lower risk of implant failure. The nail is designed to withstand the physiological stresses placed on the tibia during weight-bearing activities, making it a durable and reliable solution for fracture fixation.
Selecting the appropriate nail length and diameter is critical for ensuring optimal fixation and minimizing the risk of complications such as nail migration or malalignment. Surgeons must carefully assess the patient's anatomy and fracture pattern using preoperative imaging, such as X-rays or CT scans, to choose the right implant.
The placement of the locking screws is a technically demanding aspect of the procedure. Improper placement can result in complications such as malrotation, instability, or even damage to the surrounding soft tissues or neurovascular structures.
Care must be taken to avoid extending the nail into the knee or ankle joints, as this can lead to joint stiffness or damage to the articular cartilage. In fractures close to the joint, surgeons may consider alternative fixation methods or shorter nails to prevent iatrogenic injury to the joints.
Although the minimally invasive nature of the procedure reduces the risk of infection, proper aseptic technique and postoperative wound care are still essential to prevent infection.
In patients with osteoporosis or poor bone quality, the tibial intramedullary nail may require additional support, such as bone grafting or cement augmentation, to ensure adequate fixation.
The tibial intramedullary nail instrument set market will witness significant growth in the coming years due to advancements in orthopedic technology, an aging population, an increase in the number of fractures, and the need for minimally invasive orthopedic surgical solutions. These factors are reshaping the landscape of trauma care and orthopedic surgery, positioning the tibial intramedullary nail instrument set as an essential component of fracture management in the coming years.
In conclusion, tibial intramedullary nail instrument sets are essential tools for orthopedic surgeons treating tibial fractures. By selecting a high-quality instrument set, surgeons can improve the efficiency, accuracy, and outcomes of their procedures.
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