Abstract:
A method for optimally maintaining the execution of a first application, wherein the first application is further configured to received a set of sequential data elements from a second application, and the set of sequential data elements further includes a first data element and a second data element. The method includes establishing a connection between the first application and the second application. The method further includes transmitting a request to send the set of sequential data elements; receiving the first data element from the second application; and determining if the connection is still active. If not, the method also includes reestablishing the connection; transmitting a request to the second application to resend the first data element; receiving the first data element; and, if necessary, receiving the second data element.
Abstract:
A method for optimizing pen-based annotations on a non-pen enabled window. The method includes starting a visible non-pen-enabled window further including position indicia and size indicia; starting a transparent pen-enabled window; and associating the visible non-pen-enabled window with the transparent pen-enabled window based on the position indicia and size indicia. The method further includes aligning the transparent pen-enabled window with the visible non-pen-enabled window, and accepting user input comprising a message. If the message further includes pen indicia, the method also includes forwarding the message to the transparent pen-enabled window. Else, the method includes forwarding the message to the first application.
Abstract:
The invention is an oxygen system, including a home care system, for patients who require supplemental oxygen. Built around an intelligent portable oxygen concentrator, the system incorporates a variety of patient monitoring and reporting function enabled by the processing and communications channels built into the concentrator.
Abstract:
A method for optimizing pen-based annotations on a non-pen enabled window. The method includes starting a visible non-pen-enabled window further including position indicia and size indicia; starting a transparent pen-enabled window; and associating the visible non-pen-enabled window with the transparent pen-enabled window based on the position indicia and size indicia. The method further includes aligning the transparent pen-enabled window with the visible non-pen-enabled window, and accepting user input comprising a message. If the message further includes pen indicia, the method also includes forwarding the message to the transparent pen-enabled window. Else, the method includes forwarding the message to the first application.
Abstract:
A method for optimally maintaining the execution of a first application, wherein the first application is further configured to received a set of sequential data elements from a second application, and the set of sequential data elements further includes a first data element and a second data element. The method includes establishing a connection between the first application and the second application. The method further includes transmitting a request to send the set of sequential data elements; receiving the first data element from the second application; and determining if the connection is still active. If not, the method also includes reestablishing the connection; transmitting a request to the second application to resend the first data element; receiving the first data element; and, if necessary, receiving the second data element.
Abstract:
In an embodiment, the invention is an improved interface to a conserver for therapeutic gas delivery. The improved circuit allows for fine control of the frequency response of a feedback element, which permits a high gain interface. The result is excellent compensation of transducer drift with little distortion of the frequencies of interest for breath detection, even for low breath pressure scenarios.
Abstract:
A portable gas fractionalization apparatus that provides oxygen rich air to patients is provided. The apparatus is compact, lightweight, and low-noise. The components are assembled in a housing that is divided into two compartments. One compartment is maintained at a lower temperature than the other compartment. The lower temperature compartment is configured for mounting components that can be damaged by heat. The higher temperature compartment is configured for mounting heat generating components. An air stream is directed to flow from an ambient air inlet to an air outlet constantly so that there is always a fresh source of cooling air. The apparatus utilizes a PSA unit to produce an oxygen enriched product. The PSA unit incorporates a novel single ended column design in which all flow paths and valves can be co-located on a single integrated manifold. The apparatus also can be used in conjunction with a satellite conserver and a mobility cart.
Abstract:
A portable gas fractionalization apparatus that provides oxygen rich air to patients is provided. The apparatus is compact, lightweight, and low-noise. The components are assembled in a housing that is divided into two compartments. One compartment is maintained at a lower temperature than the other compartment. The lower temperature compartment is configured for mounting components that can be damaged by heat. The higher temperature compartment is configured for mounting heat generating components. An air stream is directed to flow from an ambient air inlet to an air outlet constantly so that there is always a fresh source of cooling air. The apparatus utilizes a PSA unit to produce an oxygen enriched product. The PSA unit incorporates a novel single ended column design in which all flow paths and valves can be co-located on a single integrated manifold. The apparatus also can be used in conjunction with a satellite conserver and a mobility cart.
Abstract:
A method is provided for performing an action, in a distributed environment, upon occurrence of a monitored event related to a set of data elements. The method includes providing a rule that includes an event identification component which specifies an event to be monitored and an action component which specifies an action to be performed when the event has occurred. The method also includes determining, from the rule, if the event identification component is to be evaluated by a remote event engine and if the action component is to be evaluated by the remote event engine, evaluating the event identification component and the action component of the rule.
Abstract:
A method for optimally monitoring a set of data elements for an event. The method includes determining a set of data elements, each of which further comprises a state. An event is commonly a change in this state. The method further includes creating a rule for monitoring the event, wherein the rule comprises an event identification portion resident on a first computer and an action portion resident on a second computer. The method also includes monitoring the set of data elements for the event based, in part, on the event identification portion, and determining if the event has occurred. If so, the method further includes sending the set of data elements to the second computer. The method also includes executing a set of actions, based in part, on the action portion. Thereafter, the method further includes monitoring the set of data elements based, in part, on the rule.