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CardieX

54 cited products 693 protocol citations
CardieX is a leading provider of innovative cardiovascular research products.
Their portfolio includes a range of equipment, consumables, reagents, and software solutions for use in research protocols and clinical studies.
The company's products are widely cited across scientific publications, preprints, and patents, demonstrating their impact and utility in the field of cardiovascular research and development.
Researchers can leverage the comprehensive data available on PubCompare.ai to streamline their work and make informed decisions about the CardieX products best suited for their research needs.

54 products from CardieX

Cited in 236 protocols
Sourced in Australia, United States
The SphygmoCor is a non-invasive diagnostic device that measures central blood pressure and arterial stiffness. It uses applanation tonometry to capture the pressure waveform at the radial artery and then applies a validated transfer function to estimate the aortic pressure waveform.
Cited in 121 protocols
Sourced in Australia, United States
The SphygmoCor system is a non-invasive device that measures central aortic blood pressure and related parameters. It utilizes a tonometry sensor placed on the radial artery to capture waveform data, which is then analyzed to provide information about the central hemodynamics.
Cited in 55 protocols
Sourced in Australia, United States
The SphygmoCor XCEL is a non-invasive medical device used for the assessment of central blood pressure and arterial stiffness. It utilizes applanation tonometry to capture pulse waveforms from the radial artery, providing measurements of central systolic and diastolic blood pressure, as well as pulse wave velocity and augmentation index.
Cited in 55 protocols
Sourced in Australia
The SphygmoCor device is a non-invasive diagnostic tool used to measure arterial stiffness and central blood pressure. It utilizes tonometry, a technique that senses the pressure waveform at the radial artery, to provide detailed analysis of the cardiovascular system.
Cited in 30 protocols
Sourced in Australia, United States
The SphygmoCor XCEL system is a non-invasive device used to measure central aortic blood pressure and pulse wave analysis. It utilizes applanation tonometry technology to capture the pressure waveform from the radial artery and applies a generalized transfer function to derive central aortic pressure.
Cited in 15 protocols
Sourced in Australia
The SphygmoCor XCEL device is a diagnostic tool used for the non-invasive assessment of arterial stiffness and central blood pressure. It provides accurate and reliable measurements of various cardiovascular parameters, including pulse wave velocity, augmentation index, and central aortic pressure.
Cited in 13 protocols
Sourced in Australia
The SphygmoCor software is a diagnostic tool that analyzes arterial waveforms to provide information about cardiovascular health. It measures central blood pressure and other parameters related to arterial stiffness. The software is used in clinical settings to assist healthcare professionals in the assessment and management of cardiovascular conditions.
Cited in 12 protocols
Sourced in Australia
The SphygmoCor CVMS is a non-invasive diagnostic device that measures central blood pressure and other hemodynamic parameters. It uses applanation tonometry to assess the pressure waveform in the radial artery, providing data on central aortic pressures and arterial stiffness.
Cited in 11 protocols
Sourced in Australia
The SphygmoCor version 7.1 is a non-invasive device that measures central blood pressure and other cardiovascular parameters. It uses a tonometry-based approach to provide information about the cardiovascular system.
Cited in 9 protocols
Sourced in Australia
The SphygmoCor Vx is a non-invasive medical device used to measure central blood pressure and arterial stiffness. It utilizes a pressure sensor placed on the skin over the carotid artery to capture pressure waveforms, which are then analyzed to provide information about the cardiovascular system.
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