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Journal Biomedical Radioelectronics №7 for 2014 г.
Article in number:
Reconfigurable measurement system for complexes of general magnetotherapeutic impact
Authors:
V.I. Zhulev - Honored Worker of Higher School of Russian Federation (RF), D.Sc.(Eng.), Professor, Head of Department «Information-Measuring and Biomedical Engineering» Ryazan State Radio Engineering University, Laureate of the Ryazan Region on Science and Technology and the Silver Medal Academician V.F. Utkin
M.B. Kaplan - Ph.D.(Eng.), Associate Professor, Department «Information-Measuring and Biomedical Engineering», Ryazan state radio engineering University
Abstract:
Actual problem arising during magnetotherapy, magnetic field correction is based on the nature of the disease, the individual characteristics of patients, including anthropometric. In this case it is necessary to ensure the formation of a certain magnetic field at predetermined points in space, located on the surface or inside the organ or tissue being treated. Initial data for the control and correction of the acting field are recorded by means of measuring the spatial and temporal distribution of the fields. It is proposed to use the special structure of the measuring device, which is a reconfigurable system, consisting of a set of similar intelligent modules independent measuring channels (IMMC) magnetic field. Interaction modules is recommended to implement with the help of wireless communication, eliminating the switching element, characteristic of multichannel devices and limit the maximum number of measuring channels. Parameters and spatial position IMMC should be configured and adjusted to the specific features of the measurement problem in the general case of an inhomogeneous in space and time of the magnetic field. The ability to customize and autonomous operation IMMC determined by the presence of independent control units and power supplies included in the modules. High functionality reconfigurable measurement system is provided by the possibility of increasing the number of channels within a particular task. The paper discusses the structure and functioning process reconfigurable measurement system. Proposed composition of intelligent modules measuring channels of the magnetic field.
Pages: 24-27
References

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