Bei TCP/IP (Transport Control Protocol / Internet Protocol) handelt es sich um eine ganze "Familie" von Protokollen. Diese Protokoll-Suite, die vom amerikanischen Verteidigungsministerium definiert wurde und den Datenaustausch in heterogenen Netzen definiert, deckt die Schichten 3 und 4, zum Teil aber auch alle weiteren, einschließlich der Schicht 7 des ISO/OSI-Referenzmodells ab. Die TCP/IP-Protokolle sind netzwerkunabhängig. Es existieren Implementierungen für z.B. Ethernet, Token-Ring, NFSnet, ARPANET usw. (Quelle: T-LAN-Kompendium)
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Expansion of simulation software to enable use of additional data and functions

Further development of software for simulating a medical/diagnostic laboratory with high throughput. Simulation makes it possible to test a virtual laboratory setup under different conditions and to determine its performance before the setup is installed in a real laboratory setting. The laboratory information system (LIS) addressed by the simulation functions as middleware here and manages the flow of data between the connected laboratory equipment and the final evaluation of results. Simulation software is used to create virtual samples and patients and process these with the LIS, with continuous communication between the simulation software and the LIS. The enhancement includes the use of additional input information, and the revision of existing functions and use of new functions. The adaptations provide the basis for creating reference scenarios for laboratories with different characteristics.

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Expansion of simulation software for providing additional data for analysis

Further development of software for simulating a medical/diagnostic laboratory with high throughput. Simulation makes it possible to test a virtual laboratory setup under different conditions and to determine its performance before the setup is installed in a real laboratory setting. The laboratory information system (LIS) addressed by the simulation functions as middleware here and manages the flow of data between the connected laboratory equipment and the final evaluation of results. Simulation software is used to create virtual samples and patients and process these with the LIS, with continuous communication between the simulation software and the LIS. This makes it possible to use the simulation software for evaluating performance measurands of the LIS and using them for setting up new laboratory scenarios or analyzing existing ones. The expansion involves providing additional data for analyzing performance and sequences.

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Adapting simulation software for controlling devices in a diagnostic laboratory

Further development of software for simulating a medical diagnostic high-throughput laboratory and adapting this to a new generation of laboratory information systems (LIS). Simulation makes it possible to test a virtual laboratory setup under different conditions and to determine its performance before the setup is installed in a real laboratory setting. The LIS addressed by the simulation functions as middleware here and manages the flow of data between the connected laboratory equipment and the final evaluation of results. Simulation software is used to create virtual samples and patients and process these with the LIS, with continuous communication between the simulation software and the LIS. This makes it possible to analyze measured performance values in the LIS and use them for new or existing laboratory scenarios.

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Expansion of simulation software for using hematological instruments and processes

Further development of software for simulating a medical/diagnostic laboratory with high throughput. Simulation makes it possible to test a virtual laboratory setup under different conditions and to determine its performance before the setup is installed in a real laboratory setting. The laboratory information system (LIS) addressed by the simulation functions as middleware here and manages the flow of data between the connected laboratory equipment and the final evaluation of results. Simulation software is used to create virtual samples and patients and process these with the LIS, with continuous communication between the simulation software and the LIS. This makes it possible to use the simulation software for evaluating performance measurands of the LIS and using them for setting up new laboratory scenarios or analyzing existing ones. The expansion involves integrating hematological instruments and processes.

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BaaN Common Platform UK

To enable the introduction of BaaN in this company, an interface system needs to be developed between BaaN and the local inventory management system. An Oracle 8.1.7 database forms the basis. Within this Oracle database, processes (Oracle stored procedures) are implemented to automatically perform the data transfer between BaaN and the inventory management system. Furthermore, multiple Visual Basic applications are to be connected to the new interface environment.

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BaaN Common Platform Spain

To enable the introduction of BaaN in this company in Spain, an interface system needs to be developed between BaaN and the local inventory management system DLx. An Oracle 9.2 database forms the basis. Within this Oracle database, processes (Oracle stored procedures) are implemented to automatically perform the data transfer between BaaN, the value added services system, EDI and the inventory management system. Furthermore, the returns processing and value added services applications are to be integrated into the new interface environment.

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