Tibia osteotomy plate
proximallockingtitanium

Tibia osteotomy plate - Aplus Biotechnology - proximal / locking / titanium
Tibia osteotomy plate - Aplus Biotechnology - proximal / locking / titanium
Tibia osteotomy plate - Aplus Biotechnology - proximal / locking / titanium - image - 2
Tibia osteotomy plate - Aplus Biotechnology - proximal / locking / titanium - image - 3
Tibia osteotomy plate - Aplus Biotechnology - proximal / locking / titanium - image - 4
Tibia osteotomy plate - Aplus Biotechnology - proximal / locking / titanium - image - 5
Tibia osteotomy plate - Aplus Biotechnology - proximal / locking / titanium - image - 6
Tibia osteotomy plate - Aplus Biotechnology - proximal / locking / titanium - image - 7
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Characteristics

Applications
tibia
Part of bone
proximal
Locking
locking
Materials
titanium

Description

Aplus High Tibial Osteotomy (HTO) anatomical plate is specifically designed for corrective surgery and is suitable for various proximal tibial osteotomy procedures. We provide multiple-curve plates to meet the different correction needs and enhance stability with locking screws after surgery. The customized Patient-Specific Instrument (PSI) further reduces surgery time, ensures precise correction, and minimizes complications. FEATURES 1. Multiple curves of the medial and lateral plates designed for the needs of different degrees of correction. 2. Directional locking screws improve postoperative stability. 3. Combined with patient-specific instrument (PSI) surgical guide, precise correction is achieved and clinical complications are reduced. 4. Suitable for various proximal tibial osteotomy procedures. Product Information High tibial osteotomy (HTO) has been recognized as an effective method for treating knee osteoarthritis. However, traditional surgery often resulted in unstable postoperative outcomes, mainly due to poor implant fixation and inaccurate correction, leading to various complications. Aplus high tibial osteotomy system integrates clinical imaging, preoperative planning, and digital modeling technology to tailor unique surgical guides for each patient, significantly reducing surgery time, and radiation exposure, and improving surgical accuracy while reducing complications. The implant design follows the Asian curve, and multiple curves are developed to meet the needs of different correction degrees, providing stable postoperative fixation.

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