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  • EV1000™ Clinical Monitoring Platform

    Introduction to the EV1000™ Clinical Monitoring Platform

    The EV1000 clinical platform from Edwards Lifesciences presents the physiologic status of the patient in an intuitive and meaningful way. Designed in collaboration with and validated by clinicians, the EV1000 clinical platform offers you scalability and adaptability for

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    and adaptability for both the OR and ICU. The EV1000 clinical platform enables you to choose the parameters needed to monitor your patients and may be used with a variety of Edwards advanced hemodynamic monitoring tools for an integrated Edwards Critical Care System.

    Key Features of the EV1000™ Clinical Monitoring Platform

    Choice

    The EV1000 clinical platform provides the choice of the parameters you want to view and how you want to view them. The platform may be used with the Edwards advanced hemodynamic monitoring portfolio, including the ClearSight finger cuff, FloTrac sensor, PreSep and PediaSat oximetry catheters, and VolumeView set. The parameters provided by each are outlined below. Furthermore, the platform provides a choice of screens so that you may view the parameters in a manner most meaningful to your clinical situation for visual clinical support.

    Visualized Physiology

    The EV1000 clinical platform presents patient hemodynamic information clearly and simply. Color-based indicators communicate patient status at a glance, and visual clinical support screens allow for immediate recognition and increased understanding of rapidly changing clinical situations to help you make better decisions.

    Real-time Physiology Screen

    The animated physiology screen visually depicts the dynamic changes occurring in your patient. By delivering parameters visually as well as numerically, the EV1000 clinical platform allows you to more easily determine the root cause of a particular situation, further assisting and guiding your clinical decisions.

    Hemodynamic Optimization

    Monitoring and optimizing Stroke Volume (SV) by fluid challenges during the surgical procedure is a strategy to help reduce postoperative complications. Stroke Volume Variation (SVV) measured can be used to tailor fluid therapy.2 Cardiac output measured continuously can be used (in combination with SaO2 and hemoglobin) to monitor and calculate DO2. These advanced hemodynamic parameters, when combined with a Perioperative Goal-Directed Therapy (PGDT) protocol, are key to maintaining the patient in the optimal volume range.

    Perioperative Goal-Directed Therapy Screens

    The EV1000 clinical platform offers the next perspective on guiding volume administration to reduce variability and help you keep your patients in the optimal volume range while supporting your Perioperative Goal-Directed Therapy (PGDT) compliance. The latest visual clinical support screens available for use with the FloTrac sensor and ClearSight finger cuff enable you to maintain your patients in the optimal volume range and reduce volume administration variability. The Time-in-Target indicator facilitates Perioperative Goal-Directed Therapy (PGDT) compliance, helping the user to track and manage key parameters and create and monitor customized protocols. The Time-in-Target indicator represents the accumulated percentage of time a parameter has been maintained within the target range during an active tracking session.

    Guiding Platform

    The EV1000 clinical platform provides a choice of screen options to provide immediate insight to aid your therapeutic interventions. Presenting the physiologic status of the patient in an intuitive and meaningful way enables you to focus on your patient. Screen options include the real-time physiology screen (both intermittent and continuous), the cockpit screen, the goal positioning screen, graphical trend screens, and the physio-relationship screen.

    Connecting to Your Hospital Information System

    Connectivity within the EV1000 clinical platform enables you to optimize your clinical workflow. Edwards provides options for connecting the platform within the clinical environment that include IFMout through a serial connection and HL7 (Health Level 7) through an Ethernet port. HL7 is a standard for exchanging information between medical applications.

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