Ettori
Benjamin Ettori, Pittsburgh, PA US
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20090043355 | SYSTEM FOR EVALUATING PERFORMANCE OF AN IMPLANTABLE MEDICAL DEVICE - A system evaluates the performance of an implantable medical device, such as by using a remote external server and a user interface and stored historical physiological data of a population of congestive heart failure (CHF) patients. A processor is coupled to a patient data storage device to apply multiple algorithm variations against the same implantable physiological data from the patient to produce corresponding resulting CHF indicators. The user interface includes a display that is configured to display to a user information allowing comparison between the resulting CHF indicators from the multiple algorithm variations. The display also includes a population data selector to permit the user to select physiological data from a population that includes a different set of one or more patients or physiological data collected over a period of time from the patient. This permits optimization of an algorithm parameter or selection of a best performing algorithm. | 02-12-2009 |
20100280400 | RATE ABERRANT BEAT SELECTION AND TEMPLATE FORMATION - A cardiac rhythm management system can be used to detect episode beats associated with cardiac events in a subject's body. These events may be monitored and depolarization morphology information can be derived for candidate arrhythmic beats in an arrhythmia episode. An arrhythmic beat morphology template may be formed from selecting at least one of the candidate arrhythmic beats based upon user's labeling according to specific morphologies of one or more candidate episodes. Methods of use are also presented. | 11-04-2010 |
Benjamin Ettori, Minneapolis, MN US
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20080228093 | Systems and methods for enhancing cardiac signal features used in morphology discrimination - Methods and devices used to classify cardiac events based on morphological analysis of sensed signals are described. A signal comprising a cardiac signal component and a noise signal component is sensed. The sensed signal is processed to preferentially alter morphology of the cardiac signal component. The altered morphology of the cardiac signal component enhances detection of one or more features of the cardiac signal component. The features of the cardiac signal component are detected and the cardiac event is classified using the detected features. Processing the sensed signal may involve the use of adaptable signal processing parameters. For example, the signal processing parameters may be selected to accentuate one or more desirable features of the cardiac signal component or to mitigate one or more undesirable features of the cardiac signal component. | 09-18-2008 |
Pierre-Emmanuel Ettori, Mountain View, CA US
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20110206058 | Automatic Determination of Groupings of Communications Interfaces - A particular networked machine broadcasts packets from its interfaces resulting in patterns of returned copies of the sent broadcast packets received on its interfaces. Based on these patterns, a determination is made to identify groupings of one or more of the interfaces that are considered by remote devices as being grouped together, as a broadcast packet transmitted from an interface belonging to a grouping will be received on, and only on, a single interface in each of the other groupings, with a grouping being one or more interfaces. In one implementation, a grouping is defined as a single independent interface, or an aggregation of two or more interfaces combined into a single logical interface, such as, but not limited to that of a PortChannel. | 08-25-2011 |
Pierre-Emmanuel Ettori, Sunnyvale, CA US
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20160057025 | Policy Declarations for Cloud Management System - Some embodiments provide a method for a system that monitors a network to prevent violations of declared policies. The method stores network state data received from a plurality of data sources as a set of tables. The method receives a declaration of a policy that specifies a set of conditions for a particular set of network state entities received from at least two of the data sources. The set of conditions is specified as an existence of a set of data tuples involving the set of network state entities in the stored set of tables. The method monitors the network state data according to the declared policy. | 02-25-2016 |
20160057026 | Policy Management System with Proactive and Reactive Monitoring and Enforcement - Some embodiments provide a method for a system that monitors a network to prevent violations of network policies. The method stores network state data that describes the network. The method identifies that a first set of stored network state data violates a particular policy declared for the network. The method issues a command to a first cloud management application to modify the network state data such that the modified network state data does not violate the particular policy. The method determines whether a requested action that modifies a second set of network state data, received from a second cloud management application, violates any policies. The method responds to the second cloud management application to permit the requested change when the modified second set of network state data does not violate any policies and deny the requested change when the modified second set of network state data violates the particular policy. | 02-25-2016 |
20160057027 | Policy Management System for Heterogeneous Cloud Services - Some embodiments provide a method for a system that enforces policy for a network. The method receives (i) a first set of network state data from a first cloud management application that manages a first aspect of the network and stores its network state data in a first format and (ii) a second set of network state data from a second cloud management application that manages a second aspect of the network and stores its network state data in a second format. The method stores the first and second sets of network state data in a single, unified data format. The method monitors the stored sets of network state data to determine whether the network state violates one or more network policies that constrain the network state received from the first and second cloud management applications. | 02-25-2016 |