Foræps Reposition Forceps
Intro Description Engineered for secure bone grasping, fracture reduction, and precise anatomical realignment during orthopedic interventions, the SIRGIKAL 17-147 Bone Reposition Forceps delivers exceptional gripping strength, structural rigidity, and rugged durability in the operating theatre. Featuring specialized curved or clawed tips designed to engage and hold bone fragments securely without slippage, this precision instrument ensures optimal stabilization during fixation. Crafted from certified medical-grade stainless steel with a dependable ratchet locking mechanism, it guarantees structural integrity, smooth mechanical action, and long-lasting performance across rigorous hospital sterilization cycles.
Spécifications du produit
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Item Code: 17-147
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Matériau : Acier inoxydable de qualité médicale certifiée (conforme à la norme ASTM F899)
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Configuration: Bone Fracture / Reduction Forceps Pattern
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Finition : Satinée (anti-reflet) / Miroir
Caractéristiques principales
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Atraumatic Clawed Jaw Geometry: Precision-machined pointed or angled prongs engage bone fragments firmly, distributing clamping pressure evenly to prevent slippage and cortical damage.
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Integrated Ratchet Locking Mechanism: Adjustable multi-position box-lock ratchet enables hands-free, secure bone holding under constant tension, reducing surgeon hand fatigue.
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Rigid High-Tensile Construction: Premium stainless steel heavy-duty body prevents flexing under high operational leverage, maintaining absolute alignment control.
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Passivation résistante à l'autoclave : La passivation chimique citrique forme une couche protectrice dense d'oxyde de chrome, garantissant une résistance totale à la corrosion lors des cycles répétés de stérilisation hospitalière à haute température.
Utilisation
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Orthopaedic & Trauma Surgery: Reducing, holding, and temporarily fixing bone fractures and segment fragments prior to internal plate or screw fixation.
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Operating Theatre Utility: Essential bone-holding instrument relied upon by orthopedic surgeons requiring dependable clamping power, precise fragment control, and secure reduction stability.
