Mindray 3C5A 3C5s 3C5P Ultrasound Biopsy Probe for Accurate Needle Placement & Faster Diagnosis
Product Overview
| Model Number |
3C5A 3C5s 3C5P |
| Compatible Brand |
Mindray |
| Probe Type |
Convex |
| Product Description |
Biopsy Needle Guide |
| Power Source |
Manual |
Key Features
- High Precision Needle Placement: Ultrasound imaging technology ensures precise needle placement during biopsies, reducing errors and increasing procedure success rates.
- Minimally Invasive Procedure: Reduces the need for large incisions, making biopsies less invasive with faster recovery and less patient discomfort.
- Real-Time Imaging: Provides real-time imaging for dynamic needle placement adjustments during procedures, ensuring accuracy and safety.
- Reduced Risk of Complications: Helps avoid key blood vessels and nerves, minimizing complication risks during biopsy procedures.
- Faster Diagnosis: Real-time ultrasound imaging shortens procedure time, enabling faster tissue sampling and quicker diagnosis for timely medical intervention.
- Enhanced Patient Comfort: Precise needle guidance minimizes multiple insertions, reducing patient discomfort during biopsy processes.
- Non-Surgical Biopsy: Offers a non-surgical method for obtaining tissue samples, providing a less invasive alternative to traditional surgical biopsy methods.
- High-Frequency Ultrasound Technology: High-frequency ultrasound probes provide high-resolution images for better tissue structure visualization and accurate identification of abnormal areas.
- Versatile Application: Suitable for various medical fields including cancer detection, tissue sampling, and interventional radiology, adapting to diverse clinical applications.
- Enhanced Clinical Efficiency: Real-time feedback and precise guidance help physicians complete procedures efficiently, improving operating room throughput and optimizing clinical resources.
Common Uses
- Biopsies (e.g., liver, thyroid)
- Fluid drainage (e.g., abscesses)
- Regional anesthesia (e.g., nerve blocks)
Widely used in radiology, surgery, and interventional procedures to enhance real-time imaging and outcomes.