Product Description
The 3.5mm Pediatric Eight-Plate is designed for guided growth procedures in children, allowing controlled correction of angular deformities in long bones while preserving normal growth potential.
This system uses a figure-eight plate design combined with screws to guide bone growth safely and predictably, reducing the risk of overcorrection or rebound deformities.
The plate’s slim and low-profile structure minimizes soft tissue irritation, postoperative discomfort, and prominence under the skin.
The plate is pre-contoured to match pediatric bone anatomy, ensuring an accurate fit with minimal intraoperative bending or adjustments.
Manufactured from medical-grade titanium alloy or stainless steel, the plate offers excellent corrosion resistance, strength, and long-term biocompatibility.
The system includes instruments for precise plate positioning, screw insertion, and temporary fixation, supporting efficient and safe surgical procedures.
Used for temporary hemiepiphysiodesis to correct genu varum, genu valgum, and other angular deformities.
Applicable in pediatric patients requiring guided growth to correct limb alignment while maintaining normal longitudinal growth.
Suitable for selective use in pediatric trauma cases where growth modulation is indicated.
Widely used in pediatric orthopedic departments, growth modulation centers, and trauma hospitals.
Designed for both standard and minimally invasive approaches to reduce soft tissue trauma.

| Product Name | 3.5mm Pediatric Eight-Plate |
| Material | TA3 |
| Certificate | CE Certificate |
| Brand | TOOLMED |
| MOQ | 1 Pcs |
| OEM | Avaliable |
| Package | PE Inner Bag+Carton |
| Payment Method | T/T,Bank transfer, Western Union |
| Delivery Time | 5-15 Days |
| Shipping | DHL EMS UPS TNT FEDEX |


The 3.5mm Pediatric Eight-Plate is a specialized orthopedic implant used for growth modulation in children. It temporarily restricts growth on one side of the physis (growth plate) to gradually correct angular deformities in the long bones.
Commonly used in pediatric orthopedic surgery for hemiepiphysiodesis to treat genu valgum, genu varum, and other angular deformities of the knee and long bones.
Controlled Growth Correction: Gradual, predictable adjustment of angular deformities.
Minimized Soft Tissue Impact: Low-profile design reduces irritation and discomfort.
Durability: High-quality materials ensure long-term implant integrity.
Ease of Use: Complete instrumentation supports safe and efficient surgical placement.
The eight-plate functions as a tension-band implant, guiding one side of the growth plate while allowing normal growth on the opposite side. This controlled mechanism gradually corrects angular deformities without compromising longitudinal bone growth.
After surgical exposure of the physis, the plate is positioned over the growth plate and temporarily fixed with screws. The plate remains in place until the desired correction is achieved, after which it can be removed to allow normal growth continuation.
Patients typically require follow-up imaging to monitor correction progress. The plate’s temporary nature allows natural growth to resume once the intended alignment is achieved.
The 3.5mm Pediatric Eight-Plate is a reliable solution for pediatric growth modulation and angular deformity correction. Its low-profile design, guided growth technology, and precise instrumentation provide safe, predictable, and effective outcomes for pediatric orthopedic patients.
What is the 3.5mm Pediatric Eight-Plate used for?
It is used for guided growth and temporary hemiepiphysiodesis to correct angular deformities in children.
Is it suitable for both knees and other long bones?
Yes, it can be used for femur and tibia angular deformities, including knee corrections.
Is the plate permanent?
No, the plate is temporary and removed once the desired correction is achieved.
What material is the plate made from?
Titanium alloy or stainless steel, providing durability and biocompatibility.
Can it be implanted minimally invasively?
Yes, the system is compatible with minimally invasive surgical techniques.

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