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L Schilders

Publications and source records attributed to L Schilders.

4 recordsLinked to original sources

Remote instrument telemaintenance.

In the past decade, great technological progress has been made in telemaintenance of mainframe and mini computers. As hardware technology is now available at an acceptable cost, computer aided trouble-shooting can be adapted to laboratory instrumentation in order to significantly improve repair time, avoid instrument downtime by taking advantage of predictive methods, and provide general diagnostic assistance. Depending on the size of the instrument, the telemaintenance facility can be dedicated to a single instrument or alternatively a telemaintenance server can manage multiple distributed small instruments through a Local Area Network. As complex failures can occur, the local diagnosis capabilities may be exceeded and automatic dialing for connection to computerized Remote Maintenance Centers is needed. The main advantages of such a centre, as compared to local diagnosis systems, are the increased access to more information and experience of failures from instrument installations, and consequently the provision of training data updates for Artificial Neural Networks and Knowledge Based Systems in general. When an abnormal situation is detected or anticipated by a diagnosis module, an automatic alert is given to the user, local diagnosis is activated, and for simple solutions, instructions are given to the operator. In the last resort, a human expert can be alerted who, with remote control tools, can attend to the failures. For both local and remote trouble-shooting, the data provided by the instrument and connected workstation is of paramount importance for the efficiency and accuracy of the diagnosis. Equally, the importance of standardization of telemaintenance communication protocols is addressed.

Clinical Laboratory Information Systems↗

Towards a meta-syntax for medical edi.

Assessment of the current medical edi (electronic data interchange) environment shows that 'old' syntaxes are used to specify interchange formats of messages containing highly complex information of a quickly evolving nature. After translation of message requirements towards message interchange format specifications in accordance with underlying syntax rules, system developers use modern technologies to implement the sending and receiving of edi message instances towards the distorted view imposed by these message interchange formats. The coexistence of several syntaxes and the urgent need for more standardised message types, require a new type of techniques and tools. The new mechanism should support a non-distorted message type development and provide the framework for data-driven conversion of message instances, from one interchange format to another.

Artificial Intelligence↗

Medical EDI message specification and interchange formats.

Assessment of the current medical edi environment learns that "old" interchange formats are being used to represent information of highly complex and quickly evolving nature. Whenever the domain requirements are translated into acceptable messages according to these interchange format specifications, system developers use the latest technologies to implement the messages towards the distorted view imposed by the interchange format constraints. This situation, combined with the fact of coexistence of several interchange formats and the urgent need for more standardised message types, led to the specification of a new meta-syntax, supporting easy message definition and allowing the data-driven conversion between multiple interchange formats. As such, and supported by the development of interchange format independent message descriptions, it may become a tool to support the medical edi needs of the future.

Artificial Intelligence↗

Training of health care personnel towards the implementation and use of electronic health care records using integrated imaging technology.

The hospital of the future will be a place in which Health Care providers of various disciplines will have access to all information about a patient in a timely fashion, and where the communication system will be able to cope with all information representations ranging through data, text, images and voice. Multimedia systems offer the facilities to cope with the specific problems of the mainly manual approach for the effective and efficient organization of information related to facts and findings in medical care. In this article we outline the training needs for future users of such systems.

Computer User Training↗