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XCmedico
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Custom-Made 15 Days Delivery(Excluding Shipping Time)
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Name | Picture | Item No. | Specification |
1.8 Cross-fit Emergency Screw | RSH184YJ | Φ1.8*4mm | |
RSH185YJ | Φ1.8*5mm | ||
RSH186YJ | Φ1.8*6mm | ||
RSH187YJ | Φ1.8*7mm | ||
RSH188YJ | Φ1.8*8mm | ||
RSH189YJ | Φ1.8*9mm |
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. | Product Warehouse The storage of orthopedic products requires strict in-and-out management and quality control to ensure product traceability and prevent expiration or wrong shipment. | Sample Room 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 1.8 Cross-fit Emergency Screw Product Catalog.
2. Choose Your Interested 1.8 Cross-fit Emergency Screw Product.
3. Ask For A Sample To Test 1.8 Cross-fit Emergency Screw.
4.Make An Order Of XC Medico's 1.8 Cross-fit Emergency Screw.
5.Become A Dealer Of XC Medico's 1.8 Cross-fit Emergency Screw.
1.Better Purchase Prices Of 1.8 Cross-fit Emergency Screw.
2.100% The Highest Quality 1.8 Cross-fit Emergency Screw.
3. Less Ordering Efforts.
4. Price Stability For The Period Of Agreement.
5. Sufficient 1.8 Cross-fit Emergency Screw.
6. Quick And Easy Assessment Of XC Medico's 1.8 Cross-fit Emergency Screw.
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 1.8 Cross-fit Emergency Screw is an essential component in orthopedic surgery, particularly in the emergency management of fractures. It is designed to offer fast and reliable fixation for a wide range of fracture types, providing superior stabilization in acute trauma settings. This screw is particularly beneficial in emergency situations where time and precision are critical. In this guide, we will explore the features, advantages, applications, and risks associated with the 1.8 Cross-fit Emergency Screw, along with its future market prospects.
The 1.8 Cross-fit Emergency Screw is a specialized orthopedic screw designed to offer emergency stabilization of fractures in trauma cases. Typically measuring 1.8 mm in diameter, the screw is used in situations where immediate and secure fixation is necessary. Its cross-fit design allows it to be compatible with a variety of plates and other fixation systems, making it a versatile tool in the orthopedic surgeon’s toolkit.
Made from high-quality materials such as titanium or stainless steel, the 1.8 Cross-fit Emergency Screw offers excellent strength, corrosion resistance, and biocompatibility. It is particularly suited for use in the distal extremities, small bones, or joint areas where traditional screws might be too large or invasive.
The primary function of this screw is to provide immediate stabilization, which is crucial in preventing further injury or complications during the early stages of trauma management.
The screw's unique cross-fit design ensures compatibility with a variety of plates and implants, facilitating flexibility in surgical approach and adaptation to different fracture scenarios.
The screw features finely threaded surfaces that ensure firm grip and excellent fixation in bone. This threading enhances the screw's ability to prevent loosening, even under high-stress conditions.
With a diameter of 1.8 mm, this screw is specifically designed for use in smaller bones or delicate fracture sites, such as in the distal radius, tibia, or phalanges, where larger screws may not be appropriate.
Typically made from titanium or stainless steel, the screw is highly biocompatible, reducing the risk of immune reactions and promoting faster healing.
The self-tapping mechanism allows for easy insertion without the need for pre-drilling, which is especially beneficial in emergency situations where time is of the essence.
The screw is adaptable for use in a wide range of fracture types, making it a go-to solution in urgent orthopedic care settings.
Its design allows for quick and effective fixation, which is critical in emergency settings. Rapid stabilization helps prevent further soft tissue damage and bone displacement, ensuring optimal healing conditions.
The small diameter and self-tapping design make it minimally invasive, reducing soft tissue disruption during insertion. This leads to less trauma, shorter recovery times, and less post-operative pain.
Made from materials such as titanium or stainless steel, the screw offers excellent strength and durability, ensuring that it can withstand the mechanical stresses of everyday activity while the fracture heals.
By providing quick and stable fixation, the screw helps reduce the risk of complications like malunion, non-union, or delayed healing, which can occur in fractures that are not properly stabilized.
The screw's ability to fit with various plates and its adaptability to multiple fracture types (including long bone fractures, distal extremity fractures, and joint fractures) make it a highly versatile option in emergency trauma care.
Due to its self-tapping design, the screw reduces the amount of time required for insertion, which is crucial during emergency surgeries where time management is vital.
Often seen in falls or high-impact trauma, fractures of the distal radius can be treated with the 1.8 Cross-fit Emergency Screw, ensuring quick fixation in an area where precise stabilization is necessary to restore wrist function.
In the case of fractures in the distal tibia or fibula, where small bone fragments need stabilization, the 1.8 mm screw can be employed to provide the necessary support without causing unnecessary disruption to surrounding tissues.
In smaller bones like those of the hand and fingers, the 1.8 Cross-fit Emergency Screw offers the precision required to stabilize fractures while maintaining the delicate structure of these bones.
The screw can also be used in the stabilization of fractures in the metatarsals and phalanges of the foot, where other larger screws would be too bulky and cause complications.
The screw is applicable in the stabilization of fractures in the pelvic region, especially when small bone fragments need to be held in place to prevent displacement during the early stages of healing.
As with any surgical procedure, there is always a risk of infection at the implant site. Proper sterile techniques and post-operative care are essential to minimize this risk.
Due to the proximity of nerves and blood vessels, particularly in smaller bones or joints, there is a risk of nerve damage during screw insertion. Surgeons must be cautious when navigating these areas.
Although the screw is designed for maximum stability, improper placement or excessive force on the screw can lead to loosening, screw failure, or even bone damage.
If the screw fails to adequately stabilize the fracture or if it shifts during the healing process, malunion (misalignment) or non-union (failure of the fracture to heal) can occur.
Despite being minimally invasive, there is still the potential for inadvertent injury to soft tissues during the insertion of the screw, which could cause post-operative complications.
As global urbanization and lifestyle changes contribute to higher incidences of trauma-related injuries, the demand for efficient fracture fixation devices, such as the 1.8 Cross-fit Emergency Screw, is expected to rise.
The future market for the screw will likely benefit from advancements in surgical techniques, such as minimally invasive surgery and robot-assisted surgery, which will enhance the application and precision of the screw in complex fractures.
The global aging population is more prone to fractures due to osteoporosis and decreased bone density. This demographic shift will lead to a growing demand for reliable, low-profile fixation systems.
Developing nations are experiencing rapid healthcare growth, and the increasing access to orthopedic care in these regions will contribute to the expansion of the 1.8 Cross-fit Emergency Screw market.
As surgeons increasingly demand tailored solutions for specific fractures, the development of customizable screw designs and materials will likely enhance the applicability and appeal of the 1.8 Cross-fit Emergency Screw in the future.
The 1.8 Cross-fit Emergency Screw is an indispensable tool for emergency fracture management, offering immediate, reliable, and precise stabilization in trauma settings. Its cross-fit design, small size, and self-tapping features make it versatile and ideal for use in a wide range of fracture types, particularly in the distal extremities, small bones, and joint regions. Despite the associated risks of infection, nerve damage, and screw failure, the screw's benefits in providing rapid fixation and minimizing surgery time make it a critical asset in modern orthopedic care.
As the market for orthopedic devices continues to grow, the 1.8 Cross-fit Emergency Screw is expected to see increasing demand, driven by factors such as a higher incidence of trauma, advances in surgical techniques, and broader healthcare access in emerging markets. This makes it a promising option for the future of orthopedic surgery, ensuring that patients receive fast and effective care for complex fractures.
Warm reminder: This article is for reference only and cannot replace the doctor's professional advice. If you have any questions, please consult your attending physician.
Name | Picture | Item No. | Specification |
1.8 Cross-fit Emergency Screw | RSH184YJ | Φ1.8*4mm | |
RSH185YJ | Φ1.8*5mm | ||
RSH186YJ | Φ1.8*6mm | ||
RSH187YJ | Φ1.8*7mm | ||
RSH188YJ | Φ1.8*8mm | ||
RSH189YJ | Φ1.8*9mm |
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. | Product Warehouse The storage of orthopedic products requires strict in-and-out management and quality control to ensure product traceability and prevent expiration or wrong shipment. | Sample Room 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 1.8 Cross-fit Emergency Screw Product Catalog.
2. Choose Your Interested 1.8 Cross-fit Emergency Screw Product.
3. Ask For A Sample To Test 1.8 Cross-fit Emergency Screw.
4.Make An Order Of XC Medico's 1.8 Cross-fit Emergency Screw.
5.Become A Dealer Of XC Medico's 1.8 Cross-fit Emergency Screw.
1.Better Purchase Prices Of 1.8 Cross-fit Emergency Screw.
2.100% The Highest Quality 1.8 Cross-fit Emergency Screw.
3. Less Ordering Efforts.
4. Price Stability For The Period Of Agreement.
5. Sufficient 1.8 Cross-fit Emergency Screw.
6. Quick And Easy Assessment Of XC Medico's 1.8 Cross-fit Emergency Screw.
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 1.8 Cross-fit Emergency Screw is an essential component in orthopedic surgery, particularly in the emergency management of fractures. It is designed to offer fast and reliable fixation for a wide range of fracture types, providing superior stabilization in acute trauma settings. This screw is particularly beneficial in emergency situations where time and precision are critical. In this guide, we will explore the features, advantages, applications, and risks associated with the 1.8 Cross-fit Emergency Screw, along with its future market prospects.
The 1.8 Cross-fit Emergency Screw is a specialized orthopedic screw designed to offer emergency stabilization of fractures in trauma cases. Typically measuring 1.8 mm in diameter, the screw is used in situations where immediate and secure fixation is necessary. Its cross-fit design allows it to be compatible with a variety of plates and other fixation systems, making it a versatile tool in the orthopedic surgeon’s toolkit.
Made from high-quality materials such as titanium or stainless steel, the 1.8 Cross-fit Emergency Screw offers excellent strength, corrosion resistance, and biocompatibility. It is particularly suited for use in the distal extremities, small bones, or joint areas where traditional screws might be too large or invasive.
The primary function of this screw is to provide immediate stabilization, which is crucial in preventing further injury or complications during the early stages of trauma management.
The screw's unique cross-fit design ensures compatibility with a variety of plates and implants, facilitating flexibility in surgical approach and adaptation to different fracture scenarios.
The screw features finely threaded surfaces that ensure firm grip and excellent fixation in bone. This threading enhances the screw's ability to prevent loosening, even under high-stress conditions.
With a diameter of 1.8 mm, this screw is specifically designed for use in smaller bones or delicate fracture sites, such as in the distal radius, tibia, or phalanges, where larger screws may not be appropriate.
Typically made from titanium or stainless steel, the screw is highly biocompatible, reducing the risk of immune reactions and promoting faster healing.
The self-tapping mechanism allows for easy insertion without the need for pre-drilling, which is especially beneficial in emergency situations where time is of the essence.
The screw is adaptable for use in a wide range of fracture types, making it a go-to solution in urgent orthopedic care settings.
Its design allows for quick and effective fixation, which is critical in emergency settings. Rapid stabilization helps prevent further soft tissue damage and bone displacement, ensuring optimal healing conditions.
The small diameter and self-tapping design make it minimally invasive, reducing soft tissue disruption during insertion. This leads to less trauma, shorter recovery times, and less post-operative pain.
Made from materials such as titanium or stainless steel, the screw offers excellent strength and durability, ensuring that it can withstand the mechanical stresses of everyday activity while the fracture heals.
By providing quick and stable fixation, the screw helps reduce the risk of complications like malunion, non-union, or delayed healing, which can occur in fractures that are not properly stabilized.
The screw's ability to fit with various plates and its adaptability to multiple fracture types (including long bone fractures, distal extremity fractures, and joint fractures) make it a highly versatile option in emergency trauma care.
Due to its self-tapping design, the screw reduces the amount of time required for insertion, which is crucial during emergency surgeries where time management is vital.
Often seen in falls or high-impact trauma, fractures of the distal radius can be treated with the 1.8 Cross-fit Emergency Screw, ensuring quick fixation in an area where precise stabilization is necessary to restore wrist function.
In the case of fractures in the distal tibia or fibula, where small bone fragments need stabilization, the 1.8 mm screw can be employed to provide the necessary support without causing unnecessary disruption to surrounding tissues.
In smaller bones like those of the hand and fingers, the 1.8 Cross-fit Emergency Screw offers the precision required to stabilize fractures while maintaining the delicate structure of these bones.
The screw can also be used in the stabilization of fractures in the metatarsals and phalanges of the foot, where other larger screws would be too bulky and cause complications.
The screw is applicable in the stabilization of fractures in the pelvic region, especially when small bone fragments need to be held in place to prevent displacement during the early stages of healing.
As with any surgical procedure, there is always a risk of infection at the implant site. Proper sterile techniques and post-operative care are essential to minimize this risk.
Due to the proximity of nerves and blood vessels, particularly in smaller bones or joints, there is a risk of nerve damage during screw insertion. Surgeons must be cautious when navigating these areas.
Although the screw is designed for maximum stability, improper placement or excessive force on the screw can lead to loosening, screw failure, or even bone damage.
If the screw fails to adequately stabilize the fracture or if it shifts during the healing process, malunion (misalignment) or non-union (failure of the fracture to heal) can occur.
Despite being minimally invasive, there is still the potential for inadvertent injury to soft tissues during the insertion of the screw, which could cause post-operative complications.
As global urbanization and lifestyle changes contribute to higher incidences of trauma-related injuries, the demand for efficient fracture fixation devices, such as the 1.8 Cross-fit Emergency Screw, is expected to rise.
The future market for the screw will likely benefit from advancements in surgical techniques, such as minimally invasive surgery and robot-assisted surgery, which will enhance the application and precision of the screw in complex fractures.
The global aging population is more prone to fractures due to osteoporosis and decreased bone density. This demographic shift will lead to a growing demand for reliable, low-profile fixation systems.
Developing nations are experiencing rapid healthcare growth, and the increasing access to orthopedic care in these regions will contribute to the expansion of the 1.8 Cross-fit Emergency Screw market.
As surgeons increasingly demand tailored solutions for specific fractures, the development of customizable screw designs and materials will likely enhance the applicability and appeal of the 1.8 Cross-fit Emergency Screw in the future.
The 1.8 Cross-fit Emergency Screw is an indispensable tool for emergency fracture management, offering immediate, reliable, and precise stabilization in trauma settings. Its cross-fit design, small size, and self-tapping features make it versatile and ideal for use in a wide range of fracture types, particularly in the distal extremities, small bones, and joint regions. Despite the associated risks of infection, nerve damage, and screw failure, the screw's benefits in providing rapid fixation and minimizing surgery time make it a critical asset in modern orthopedic care.
As the market for orthopedic devices continues to grow, the 1.8 Cross-fit Emergency Screw is expected to see increasing demand, driven by factors such as a higher incidence of trauma, advances in surgical techniques, and broader healthcare access in emerging markets. This makes it a promising option for the future of orthopedic surgery, ensuring that patients receive fast and effective care for complex fractures.
Warm reminder: This article is for reference only and cannot replace the doctor's professional advice. If you have any questions, please consult your attending physician.
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