Quark CPET – State of the art metabolic cart for gas exchange analysis VO2 MAX

Quark CPET – State of the art metabolic cart for gas exchange analysis VO2 MAX

The Quark CPET sets the benchmark for metabolic carts, offering advanced gas exchange analysis capabilities for both exercise and resting protocols. Built with high-quality components and ultra-fast analyzers, it ensures unparalleled accuracy, reliability, and real-time monitoring of pulmonary gas exchange, even during high-intensity exercises.

Key Features:

  1. Breath-by-Breath Sampling Technology & Mixing Chamber: The Quark CPET incorporates Breath-by-Breath sampling technology, enhancing precision in gas analysis. Additionally, it includes a physical Mixing Chamber, crucial for cardiopulmonary exercise tests conducted at elevated intensities.
  2. Spirometry and Exercise Flow/Volume Loops: Seamlessly transition from basic spirometry assessments to exercise flow-volume loops with the intuitive workflow provided by the Quark CPET. This feature simplifies ergospirometry tests, ensuring a comprehensive evaluation.
  3. Walking Tests Module: Enhance the Quark CPET’s functionalities with the optional Walking and Titration Test Module. This extension allows for the assessment of functional exercise capacity across various protocols and setup configurations.
  4. ECG Integration: Achieve complete cardiovascular assessment by integrating wired or wireless 12-lead Stress Testing ECGs with the Quark CPET. Benefit from high-resolution data and advanced analysis tools for comprehensive insights.
  5. Connected with HIS: Seamlessly exchange data with Hospital Information Systems (HIS) or Electronic Medical Records (EMR) through HL7®, DICOM®, or GDT protocols. The Quark CPET ensures efficient workflow management with a dedicated worklist and real-time visit status updates.
  6. OMNIA Software: Experience the power of OMNIA, the modular software suite from COSMED, included with the Quark CPET. With its innovative user interface and intuitive workflow, OMNIA simplifies device operation, eliminating the need for extensive training periods.