HALSTED MOSQUITO Delicate Haemostatic Forceps
Intro Description Engineered for fine, delicate, and micro-surgical interventions, the SIRGIKAL 04-404–04-407 Halsted Mosquito Delicate Haemostatic Forceps deliver pinpoint vessel occlusion, precise tissue grasping, and absolute tactile control in restricted operative fields. Featuring ultra-slender, delicate jaws (available in straight or curved configurations with fine transverse serrations) and a lightweight box-lock construction, this specialized hemostat allows surgeons to clamp small-caliber blood vessels and handle fragile tissues with minimal surrounding trauma. Crafted from certified medical-grade stainless steel with a secure low-profile ratchet locking mechanism, it ensures dependable durability, smooth jaw alignment, and long-lasting performance across rigorous hospital sterilization cycles.
Product Specifications
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Item Code: 04-404 to 04-407
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Material: Certified Medical-Grade Stainless Steel (ASTM F899 compliant)
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Size: Standard Fine-Surgical Length (Halsted Mosquito profile)
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Finish: Satin (Anti-glare) / Mirror
Key Features
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Ultra-Slender Serrated Jaws: Precision-machined fine tips engineered for secure clamping of minute blood vessels and delicate subcutaneous layers without crushing adjacent tissue.
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Low-Profile Ratchet Mechanism: Provides adjustable, secure locking tension while maintaining smooth release control during meticulous interventions.
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Lightweight Balanced Shank: Optimized weight distribution ensures ergonomic handling, reduced hand fatigue, and superior tactile feedback under magnification.
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Autoclave-Resistant Passivation: Chemical citric passivation forms a dense chromium-oxide protective barrier, guaranteeing complete corrosion resistance across repeated high-temperature hospital sterilization cycles.
Usage
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Plastic, Pediatric & Micro-Surgery: Precise control and clamping of small blood vessels, fine capillaries, and delicate tissues.
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Operating Theatre Utility: Essential hemostatic instrument relied upon by specialists requiring absolute precision and minimal tissue displacement in narrow operative sites.
