Size: The plate is 1.5mm thick, making it a slender and discreet option for various surgical procedures.
Shape: The plate is straight, providing a linear support structure for bone healing.
Material: The plate appears to be made of titanium, a biocompatible metal commonly used in orthopedic implants due to its strength and corrosion resistance.
Holes: The plate has evenly spaced holes along its length, which are likely used for securing the plate to the bone with screws.
Size: The plate thickness can vary from 1.5mm to 3.5mm, making it suitable for various bone sizes and surgical procedures.
Material: The plate appears to be made of titanium, a common material used in orthopedic implants due to its strength and biocompatibility. The blue color is likely due to a coating or treatment applied to the plate.
Shape: The plate has a simple rectangular shape with evenly spaced holes along its length. The “LCP-DCP” in the name likely stands for “Locking Compression Plate-Dynamic Compression Plate,” suggesting that the plate can be used with both locking and non-locking screws, providing flexibility in surgical applications.
Holes: The plate has evenly spaced holes along its length, which are likely used for securing the plate to the bone with screws.
High quality and titanium grade v made maxillofacial cross head mini titanium screws with the head diameter of 1.5mm. This high quality reconstruction set is bundled with a compact and precise cross head screwdriver.
Size: The plate is 2.7mm thick, making it a relatively thin plate suitable for use in the distal radius area.
Material: The plate is made of stainless steel, a common material used in orthopedic implants due to its strength and biocompatibility.
Shape: The plate has a distinctive shape designed to match the anatomy of the distal radius bone. It has a broad, flat portion with multiple holes for screw fixation, and a narrower, curved portion that extends towards the distal end of the radius.
Holes: The plate has evenly spaced holes along its length, which are likely used for securing the plate to the bone with screws.
Size: The screw has a diameter of 2mm, 2.4mm, 2.7mm, 3.5mm, making it a relatively small screw suitable for use in smaller bones or delicate areas.
Material: The screw appears to be made of titanium, a common material used in orthopedic implants due to its strength and biocompatibility. The blue color is due to a coating applied to the screw.
Shape: The screw has a cylindrical body with a sharp tip for easy insertion into bone. It also features a distinct head with a flat top, which likely has a slot for a screwdriver or a specialized tool for tightening the screw.
Thread: The screw has a threaded shaft, which helps to secure it in place within the bone and provides a strong mechanical hold.
Locking Mechanism: The most distinctive feature of this screw is the locking mechanism. The head of the screw appears to have a small hole or channel. This is where a locking pin or screw would be inserted to prevent the screw from backing out. This locking mechanism is crucial for ensuring the stability of the implant.
Size: The screw has a diameter of 2mm, 2.4mm, 2.7mm and 4.5mm making it a relatively small screw suitable for use in smaller bones or delicate areas.
Material: The screw is made of stainless steel, a common material used in orthopedic implants due to its strength and biocompatibility.
Shape: The screw has a cylindrical body with a sharp tip for easy insertion into bone. It also features a distinct head with a flat top, which likely has a slot for a screwdriver or a specialized tool for tightening the screw.
Thread: The screw has a threaded shaft, which helps to secure it in place within the bone and provides a strong mechanical hold.
Size: The plate is 2mm thick, making it a relatively thin plate suitable for use in smaller bones or delicate areas.
Material: The plate appears to be made of titanium, a common material used in orthopedic implants due to its strength and biocompatibility. The blue color is likely due to a coating or treatment applied to the plate.
Shape: The plate has a distinctive Y-shape, with a central stem and two branches extending outwards. This shape is designed to provide stability and support in areas where a simple straight plate might not be sufficient.
Holes: The plate has evenly spaced holes along its length, which are likely used for securing the plate to the bone with screws.
£193.38Original price was: £193.38.£115.00Current price is: £115.00.
Size: The plate is 3.5mm thick, making it a relatively thin plate suitable for use in smaller bones or delicate areas.
Material: The plate is made of stainless steel, a common material used in orthopedic implants due to its strength and biocompatibility.
Shape: The plate has a simple rectangular shape with evenly spaced holes along its length. The plate is designed specifically for use on the medial side of the distal tibia bone.
Holes: The plate has evenly spaced holes along its length, which are likely used for securing the plate to the bone with locking screws.
Locking Mechanism: The plate is designed to be used with locking screws. These screws have a special thread that engages with the plate, preventing them from backing out and providing a more secure fixation.
Without Tab: The “without tab” designation indicates that the plate does not have a small extension or tab at one end, which is sometimes used to provide additional stability.
£167.92Original price was: £167.92.£100.00Current price is: £100.00.
Size: The plate is 3.5mm thick, making it a relatively thin plate suitable for use in smaller bones or delicate areas.
Material: The plate appears to be made of stainless steel, a common material used in orthopedic implants due to its strength and biocompatibility.
Shape: The plate has a distinctive L-shape, designed to match the anatomy of the distal tibia bone. It has a long, straight portion that runs along the lateral side of the tibia, and a shorter, curved portion that extends towards the medial side. This shape provides stability and support to the distal tibia.
Holes: The plate has evenly spaced holes along its length, which are likely used for securing the plate to the bone with locking screws.
Locking Mechanism: The plate is designed to be used with locking screws. These screws have a special thread that engages with the plate, preventing them from backing out and providing a more secure fixation.
Size: The plate is 3.5mm thick, making it a relatively thin plate suitable for use in smaller bones or delicate areas.
Material: The plate is made of stainless steel, a common material used in orthopedic implants due to its strength and biocompatibility.
Shape: The plate has a simple rectangular shape with evenly spaced holes along its length. The “DCP” in the name likely stands for “Dynamic Compression Plate,” which suggests that the plate is designed to compress bone fragments together during healing.
Holes: The plate has evenly spaced holes along its length, which are likely used for securing the plate to the bone with screws.
£196.48Original price was: £196.48.£137.00Current price is: £137.00.
Size: The screw has a diameter of 3.5mm, making it a relatively small screw suitable for use in smaller bones or delicate areas.
Material: The screw appears to be made of titanium, a common material used in orthopedic implants due to its strength and biocompatibility. The blue color is likely due to a coating or treatment applied to the screw.
Shape: The screw has a cylindrical body with a sharp tip for easy insertion into bone. It also features a distinct head with a flat top, which likely has a slot for a screwdriver or a specialized tool for tightening the screw.
Thread: The screw has a threaded shaft, which helps to secure it in place within the bone and provides a strong mechanical hold.
Special Features: Herbert screws are designed with a unique thread pattern that allows them to self-tap into bone, reducing the risk of cortical penetration.
Size: The screw has a diameter of 3.5mm, making it a relatively small screw suitable for use in smaller bones or delicate areas.
Material: The screw is made of stainless steel, a common material used in orthopedic implants due to its strength and biocompatibility.
Shape: The screw has a cylindrical body with a sharp tip for easy insertion into bone. It also features a distinct head with a flat top, which likely has a slot for a screwdriver or a specialized tool for tightening the screw.
Thread: The screw has a threaded shaft, which helps to secure it in place within the bone and provides a strong mechanical hold. The thread pattern on cancellous screws is designed to engage with cancellous bone, which is a type of spongy bone found in the interior of bones.
Locking Mechanism: The most distinctive feature of this screw is the locking mechanism. The head of the screw appears to have a small hole or channel. This is where a locking pin or screw would be inserted to prevent the screw from backing out. This locking mechanism is crucial for ensuring the stability of the implant.