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Enhances stability without relying on plate compression.
Ensures anatomical accuracy and surgical efficiency.
Minimizes soft tissue irritation in small patients.
Supports fixation across intersecting bone planes.
Optimized for small animal bone geometry
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Provides controlled fixation across head and shaft regions.
Maintains alignment without relying on plate compression.
Optimized for small animal bone structure and fracture patterns.
Reduces soft tissue disruption in small patients.
Improves placement accuracy and surgical efficiency.
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Supports stabilization across branching or junctional bone regions.
Balances linear and angular fixation requirements.
Maintains stability without compressing bone surfaces.
Minimizes soft tissue irritation in small anatomical areas.
Tailored for small animal orthopedic applications.
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Improves stability at bone junctions with increased head fixation.
Enhances proximal control in joint-adjacent applications.
Supports linear alignment and load sharing.
Maintains construct integrity without bone compression.
Designed for small animal anatomy and soft tissue preservation.
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Provides increased longitudinal support across larger fracture spans.
Improves proximal stability in metaphyseal and periarticular regions.
Maintains construct integrity without relying on bone compression.
Reduces localized stress through multi-point anchorage.
Designed for small animal anatomy and soft tissue protection.