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Ergoselect 12

  • Optimised for Stress Echo: Specifically designed to provide the ideal horizontal and lateral inclination (up to 45°), allowing for unobstructed acoustic windows during echocardiographic imaging.
  • Superior Patient Accessibility: The ultra-low couch height and clear entry path ensure that even patients with significant physical limitations can be positioned quickly and safely.
  • Vibration-Free Stability: The extremely sturdy frame supports up to 200 kg, eliminating mechanical interference and movement artifacts to ensure undisputed diagnostic clarity.
  • Motorised Multi-Axis Adjustment: Features precision remote-controlled motors to adjust both horizontal and lateral tilt, allowing the clinician to find the perfect angle for every patient.
  • Silent, High-Performance Drive: Utilises a whisper-quiet belt drive with a versatile load range of 6 to 450 watts (expandable to 1000 watts), suitable for both rehabilitation and high-intensity testing.
  • Modular Clinical Integration: Equipped with universal interfaces for seamless connectivity to ECG systems and a wide array of expansion options to meet the specific needs of any cardiology department.

The Ergoselect 12 combines trailblazing functionality with an expressive, ergonomic design to create the definitive stress echo reclining ergometer. Engineered specifically for the high demands of echocardiography, this system provides the perfect patient positioning for clear imaging while maintaining the rigorous performance required for clinical stress testing.

Precision Stability and Patient Access
Accessibility and stability are the foundations of the Ergoselect 12. The couch features an exceptionally low entry height, allowing elderly or mobility-impaired patients to mount the device conveniently without interference from the ergometry unit or seat. Its robust, heavy-duty construction supports patient weights of up to 200 kg, ensuring a vibration-free environment during testing—a critical factor for acquiring high-quality ultrasound images during peak exertion.

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