COSMED introduces Q-NRG, the new metabolic monitor for energy expenditure measurements in mechanically ventilated and spontaneous breathing patients in ICU

Posted on 08 March 2018, English, Company

indirect calorimetry

Rome (Italy) - March 2018 - COSMED, world-wide leader in the design of metabolic systems for clinical and human performance applications, announced today the release of a new product line of metabolic monitors for quick, accurate, intuitive and affordable indirect calorimetry.

Within and between-day reliability of energetic cost measures during treadmill walking

Posted on 29 December 2016, K4b2/K5, Scientific

Within and between-day reliability of energetic cost measures during treadmill walking

This study published in Cogent Engineering Journal analyses the capacity of COSMED K4b2 portable metabolic system in detecting small physiologic changes within a day on healthy adults.

Accuracy and reliability of COSMED K5 portable metabolic device versus simulating system

Posted on 29 November 2015, K4b2/K5, Scientific

Accuracy and reliability of COSMED K5 portable metabolic device versus simulating system

A first validation of the K5, the new COSMED wearable metabolic system, was presented during the 2015 edition of the Italian Sport Medicine Society (SIMSE) and published in the Sport Science for Health Journal.

Indirect Calorimetry - reliability and comparison of different methods of gas collection with Quark RMR (German language)

Posted on 17 August 2015, Quark RMR, Scientific

indirect calorimetry

A new study on Quark RMR was published in Germany validating the its accuracy for REE measurements and its test-retest reliability.

Test-retest reliability of a portable gas analysis system under free living conditions

Posted on 27 February 2015, K4b2/K5, Scientific

Test-retest reliability of a portable gas analysis system under free living conditions

A new validation paper has been published on the Indian Journal of Physiology and Pharmacology where was shown the test-retest reliability of the K4b2.

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