Product Overview
The C3-10-D is a specialized high-frequency curved array transducer designed for precise imaging in pediatric and neonatal applications. With its exceptional resolution and compact design, it provides detailed visualization of small anatomical structures, making it ideal for abdominal, cranial, and small parts imaging. Lightweight and ergonomically designed, the C3-10-D ensures operator comfort during extended procedures while delivering superior diagnostic performance.
Technical Specifications
Frequency Range: 3.0 – 10.0 MHz for high-resolution imaging of superficial and mid-depth structures.
Scan Modes: B-Mode, Color Doppler, Pulse Wave Doppler.
Field of View: 50° optimized for pediatric and neonatal anatomy.
Depth of Field: Up to 12 cm for precise imaging of shallow and mid-depth structures.
Footprint: Compact curved array design for improved accessibility to small and challenging anatomical regions.
Connector Type: Standard GE proprietary connector.
Design: Lightweight and ergonomic for operator comfort and maneuverability during pediatric imaging.
Applications
Pediatric Imaging: Provides detailed imaging of small and delicate anatomical structures.
Neonatal Imaging: Optimized for high-resolution imaging of neonatal brain and abdominal organs.
Abdominal Imaging: Enables precise assessment of pediatric abdominal organs.
Small Parts Imaging: Supports imaging of small anatomical regions, including cranial and soft tissues.
Clinical Performance Highlights
High-frequency imaging ensures clear visualization of small and intricate structures.
Advanced Doppler sensitivity provides accurate hemodynamic assessments.
Reliable performance for routine and specialized pediatric and neonatal imaging.
Operational Efficiency and Design
Compact and lightweight design enhances maneuverability in tight clinical settings.
Ergonomic handle minimizes operator fatigue during prolonged use.
Seamless integration with GE ultrasound systems facilitates efficient workflows.
Advanced Imaging Features
Superior image resolution supports confident diagnostics in pediatric and neonatal cases.
Wide frequency range adapts to diverse clinical needs.
Compact design improves accessibility for challenging anatomical areas.