GEO MODULE For Medical Imaging Systems
You are here: Home » Products » CATH/ANGIO » Philips DSA » GEO MODULE For Medical Imaging Systems
GEO MODULE
GEO MODULE GEO MODULE

loading

GEO MODULE For Medical Imaging Systems

Share to:
facebook sharing button
twitter sharing button
line sharing button
wechat sharing button
linkedin sharing button
pinterest sharing button
whatsapp sharing button
kakao sharing button
snapchat sharing button
telegram sharing button
sharethis sharing button
  • 45980015171X

  • Philips

  • PhilipsDSA0047

  • DSA

  • Allura XPER FD 20 Allura XPER FD 10 UNIQ FD 20 Allura Centron

  • 9.896E+11

Availability:
Quantity:

Product Description

GEO MODULE is a high-precision geometric correction module adapted for high-end medical imaging equipment and optimized for CT and interventional imaging systems. It collects real-time spatial position data, automatically calibrates geometric deviations and corrects image distortion, eliminating imaging distortion caused by assembly errors and motion offset. With medical-grade stability and strong anti-interference capability, it optimizes image quality accurately, ensures scanning consistency and accuracy, and supports high-definition and standardized medical image output.

Core Performance and Algorithmic Precision

At the heart of this geometric correction unit lies a specialized processing core designed for millisecond-level real-time spatial data collection. By continuously monitoring the physical positioning of the scanning gantry and patient table, the system automatically calibrates geometric deviations before they manifest as artifacts on the technician's monitor. The internal algorithms process spatial coordinates with exceptional speed, ensuring zero-latency output even during the most demanding multiphase contrast studies. This rapid calculation capability prevents the motion blur and spatial misalignment typically associated with high-speed mechanical rotation. Consequently, diagnostic facilities experience a dramatic reduction in repeat scans, lowering patient radiation exposure while maximizing daily throughput. The mathematical models driving this correction are refined through extensive clinical data analysis, providing an unparalleled level of geometric fidelity.

System Integration and Adaptability

  • Standardized Interface Protocols: Engineered for straightforward implementation across various diagnostic platforms, the module offers native compatibility with mainstream imaging architectures, allowing rapid communication handshakes between the correction unit and the primary image reconstruction engine.

  • Hardware Compatibility: The physical dimensions and mounting points are designed to align with the internal frameworks of leading computed tomography and interventional radiology equipment, minimizing the need for custom mounting brackets.

  • Software Synchronization: Low-level driver integration ensures that the module's calibration data synchronizes perfectly with the host system's timing signals, preventing data packet loss during continuous helical scanning procedures.

  • Scalable Architecture: The underlying firmware can be updated remotely, allowing equipment manufacturers to push new calibration profiles and optimization routines without requiring physical access to the internal hardware components.

Material Craftsmanship and Anti-Interference Capabilities

The exterior of the module is encased in a heavy-duty, electromagnetically shielded alloy housing. Running a hand along the chassis reveals a finely milled, matte finish designed to dissipate heat efficiently while preventing static buildup. Inside this protective shell, industrial-grade precision components are securely anchored to a multi-layer printed circuit board. The tactile click of the locking connectors confirms a secure data transmission pathway that will not vibrate loose during heavy mechanical operation. Because clinical environments are often saturated with overlapping radio frequencies and electromagnetic fields from other diagnostic tools, this dense shielding is critical. It guarantees continuous, stable operation, protecting the delicate spatial data streams from external corruption and ensuring that the final reconstructed images represent the true anatomical reality of the patient.

Clinical and Research Application Scenarios

Application Area

Operational Benefit

High-End CT Scanning

Eliminates motion artifacts during rapid gantry rotation, preserving fine bone and tissue details.

C-Arm Systems

Provides immediate spatial orientation correction for accurate real-time surgical guidance.

Complex Interventional Procedures

Maintains absolute anatomical accuracy for precise catheter placement and vascular navigation.

Advanced Medical Research

Delivers raw, uncorrupted geometric data essential for developing experimental imaging modalities.

Medical-Grade Quality Control and Certifications

Manufacturing protocols for this component adhere strictly to ISO 13485 medical device quality management systems, ensuring that every unit produced meets the exact same exacting specifications. Before leaving the facility, each module undergoes rigorous stress testing in simulated clinical environments, including prolonged exposure to thermal fluctuations and intense mechanical vibration. This exhaustive testing regimen guarantees complete compliance with CE, FDA, and other international medical safety and electromagnetic compatibility standards. By maintaining strict oversight over the entire supply chain, from raw material procurement to final assembly, the production process eliminates variations that could compromise diagnostic accuracy. Equipment integrators can confidently incorporate this module, knowing it meets the stringent regulatory requirements demanded by healthcare institutions worldwide.

Customization and Full Lifecycle Support

  • Flexible OEM/ODM Programs: Recognizing that every diagnostic platform possesses unique architectural requirements, we provide comprehensive modular customization. From adjusting the physical form factor to fine-tuning the underlying calibration algorithms, the engineering team collaborates directly with your development staff.

  • Parameter Optimization: Specific imaging modalities require distinct correction profiles. The software can be tailored to prioritize certain spatial frequencies or response times based on the exact needs of the host equipment.

  • Assembly and Testing Guidance: Implementation is supported by detailed technical documentation and direct engineering consultation during the initial prototype integration phase, ensuring the module functions perfectly within the larger system.

  • Long-Term Warranty and Upgrades: A dedicated global support network provides rapid response times for technical inquiries. The module is backed by a comprehensive warranty and continuous software optimization updates, extending the operational lifespan of the host medical equipment.

Previous: 
Next: 

Quick Links

Product Categories

Tel

+86 13212522237
+86-186-5535-9623
​Copyright © 2026 Shanghai Maiger International Trading Co., Ltd. All Rights Reserved.  Sitemap |  Privacy Policy  沪ICP备2026038825号-1