(edit with the Customer Reassurance module)
(edit with the Customer Reassurance module)
(edit with the Customer Reassurance module)
The Philips Affiniti CVx ultrasound system is a dedicated cardiovascular solution designed to meet the everyday demands of cardiology – helping you deliver better care to more patients.
Automation for robust, proven reproducible cardiac quantification in both 2D and 3D
Auto Measure AI provides fully automated 2D Doppler and length measurements. AutoStrain delivers fast, reproducible 2D strain quantification for the LV, LA and RV. Dynamic HeartModel and 3D Auto RV offer full 3D quantification for LV, LA and RV volumes and functional assessment. 3D Auto MV provides dynamic analysis of the mitral valve.
Next-generation TEE imaging
The xMATRIX X8-2t transducer brings exceptional image quality and confidence to TEE imaging. Live 3D and Live 3D color flow, together with latest capabilities such as xPlane Doppler and MultiVue, help you to make a confident diagnosis in even the most complex cases.
Customizable cardiology-focused interface
Designed to optimize cardiac workflow, the new interface delivers “walk-up usability” so that users can perform exams with minimal training. The interface can be configured to match your specific workflow, which means you can focus on the patient and images, rather than searching for controls.
Exceptional advances for pediatric imaging
From fetal echo to pediatrics to adult congenital patients, Affiniti CVx offers a depth of imaging capability combined with streamlined cardiac workflow to reduce the steps and time needed for challenging exams such as TTE and TEE.
3D Auto MV for mitral valve quantification
Analyze the complex anatomy of the mitral valve in 3D as well as its dynamic mechanics. This is useful from the initial discovery of mitral valve disease or pathology, to support device planning, and through monitoring of pre- and postoperative cases.
3D Auto LAA for left atrial appendage sizing
Acquire the LAA ostium size quickly and easily. Automation reduces inter- or intra-user variability, increasing confidence during procedures.