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Имплантаты с коническим соединением

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FAQs

Conical (or tapered) implant-abutment connections provide enhanced mechanical stability due to their wedging effect, which offers a tight, self-locking interface. This design leads to: - Superior load distribution: The tapered interface reduces micro-movements and better directs occlusal forces along the implant axis, decreasing stress on the crestal bone. - Reduced screw loosening: The friction-fit of the conical connection significantly minimizes micro-gaps and micromotion at the abutment interface, improving long-term screw stability. - High resistance to bending moments: Especially beneficial in posterior zones or cases with off-axis loads, the deep engagement of conical designs resists flexion and maintains abutment integrity. Our implants are made from Titanium Grade 5 (Ti-6Al-4V), ensuring exceptional strength and durability under functional loading. Clinical Tip: For bruxing patients or cases involving cantilevers, conical connection implants are often a better choice due to their enhanced resistance to lateral forces
Conical connections support peri-implant tissue stability by creating a tight seal at the implant-abutment interface. This reduces the risk of bacterial microleakage, which is a known factor in crestal bone loss. Key biological benefits include: - Microgap control: The conical design often includes a platform-switching concept that moves the inflammatory cell infiltrate away from the crestal bone. - Soft tissue stability: A more stable junction supports soft tissue attachment, which is especially critical in the esthetic zone. - Reduced peri-implantitis risk: By minimizing micro-movement and bacterial ingress, conical connections help maintain a healthier peri-implant environment. This is evident in our conical connection systems, such as the CRP and CNP, which are precisely engineered to enhance mechanical stability and support long-term tissue health. Practical Advice: For implants placed subcrestally or in thin biotypes, conical connections can better maintain bone and soft tissue contours over time.
Proper seating and torqueing are critical for the performance of conical systems. Because of the friction-locking mechanism: - Component precision is vital: Always use components that are specifically designed and verified for compatibility with conical systems to ensure a proper seal and seating. Poorly matched parts may compromise the connection. - Torque control: Abutments must be torqued to the manufacturer’s specified value (commonly 25–35 Ncm) to ensure full engagement and minimize micro-movement. - Tactile and radiographic verification: Ensure full seating both by tactile feedback (distinct "lock-in" feel) and radiographic evaluation—especially for deep or narrow subgingival placements. Clinical Tip: If resistance is felt during abutment insertion, remove and inspect both mating surfaces for debris or minor damage. Even slight imperfections can prevent full seating and compromise the connection.
Experienced clinicians favor conical connection implants in cases where soft tissue esthetics, mechanical resilience, and long-term biological stability are priorities. Ideal indications include: - Esthetic zone restorations: The tight connection supports stable gingival architecture and emergence profile development. - Full-arch or multi-unit bridges: Reduced micromotion and excellent axial load transfer enhance long-term prosthetic performance. - Immediate loading protocols: Their high primary stability and reduced interface micromotion help reduce early implant failure risk. - Patients with parafunctional habits: The conical geometry better resists the bending and shearing forces generated in bruxism or clenching. Practical Advice: In full-arch cases with angled implants, conical connections provide a more secure interface for angled multi-unit abutments, improving prosthetic fit and minimizing long-term maintenance.
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