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Biomedical subjects

P Tsanakas

Publications and source records attributed to P Tsanakas.

4 recordsLinked to original sources

A decentralized multichannel length transformation algorithm and its parallel implementation for real-time ECG monitoring.

Multichannel algorithms have been developed for more accurate analysis of electrocardiograms (ECGs). Their benefit is the ability to use the information contained in all simultaneously acquired channels. In this paper we present a multichannel version of a nonsyntactic algorithm, based on length transformation. The proposed algorithm uses a decentralized schema for combining the results derived from each individual lead, instead of a global/centralized one (a spatial vector approach). Its performance was evaluated using the CSE database and real ECGs acquired by a 12-lead cardiograph. The results are also compared with previous-single-channel and multichannel-versions of the algorithm, showing a better performance. Since a multichannel algorithm is always a time-consuming task, it is rarely used in real-time monitoring systems. Motivated by this observation, we designed a parallel implementation of the proposed algorithm and tested its ability to be used in such systems.

Algorithms↗

A workflow-based approach to virtual patient record security.

Virtual patient records provide a means for integrated access to patient information that may be scattered around different healthcare organizations (or hospital departments). As Intranets provide, among others, secure access to medical information, they constitute an appropriate technological infrastructure for a virtual patient record implementation. In such cases, a security policy can be enforced by combining the security features of the Intranet with the security features of the intraorganizational systems. However, when a workflow system is implemented to automate interorganizational healthcare processes, an additional security layer is needed. An authorization architecture that serves this purpose is presented in this paper.

Computer Communication Networks↗

ECG handling on a telemedicine platform.

In this paper we present the principles of a new platform developed for handling ECG signals in a telemedicine setting. We focus on three basic services: an ECG file management system (acquisition, storage, transmission); ECG-oriented teleconferencing; and realtime transmission of ECGs over the telephone network. This work has been carried out in the context of national and EU-sponsored projects. Its main purpose was to help patients from remote or isolated areas, like small islands, with insufficient health-care services, to get appropriate and experienced medical care directly from large central hospitals. We present the design and the basic operations of the ECG handling system.

Cardiovascular Diseases↗

The CARDIO-LOGOS system for ECG training and diagnosis.

A new approach in ECG training is presented. The overall approach is based on a combination of the "page-turning architecture", the "reference model" and AI techniques. A thorough analysis of the training requirements in this field has been carried out; the results determined the educational scenarios and the associated evaluation sessions. The system (CARDIO-LOGOS) is intended to be used mainly by internal medicine physicians and general practitioners, as well as by medical students. The layered structure of the whole CBT application together with the advanced learning strategies and the interactive multimedia technology offer a flexible environment that encourages experimentation and supports individualised training for a wide variety of users.

Computer Simulation↗