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P Kneppo

Publications and source records attributed to P Kneppo.

14 recordsLinked to original sources

A model study of the sensitivity of body surface potential distribution to variations of electrode placement.

The effect of electrode displacement as one of the sources of reproducibility errors in body surface potential maps was studied using a realistic computer model of the cardiac electric field. A uniform dipole layer model of the cardiac generator and a realistic geometry of the torso, heart, and lungs was adopted for the simulation of surface potentials during ventricular activation. The effect of systematic electrode displacement in terms of longitudinal shifts and variations of longitudinal size (height) of the mapped area was studied. The map reconstruction error of three different limited lead systems and the variability of maps measured on all points of the mapping grid, as well as maps reconstructed from limited lead systems, were investigated and quantified. A mean relative error of map reconstruction of less than 3.5% was found for longitudinal shifts from -4.4 to +1.7 cm, and for longitudinal size changes from 65 to 108% of the initial area. For vertical displacements of electrodes between the limits of +/- 2.0 cm for full grid maps and +/- 1.4 cm if limited lead systems were used, the mean relative error of the maps remained under 5%.

Body Surface Potential Mapping↗

Body surface isochrone maps of peak R in normal adolescent girls.

The aim of our study was to evaluate the adequacy of a new mapping device for obtaining a reliable set of normal maps characteristic for this approach. We studied body surface isochrone maps of peak R in four healthy adolescent girls using the mapping system CARDIAG 128.1 with 80 unipolar leads placed in a regular grid. The constructed maps were compared with published data using 10 criteria. None of the maps obtained could be regarded as normal. After evaluating the reasons for the "abnormality", we assume that they could be caused mostly by the processing of signals. This fact can be eliminated by improving the existing software.

Adolescent↗

Topographic concepts in computerized electrocardiology.

Modern approaches to automatized electrocardiological diagnostics are mostly based on topographic conception. Thus, initially measured data and the results of data processing are represented by parameters distributed over a surface instead of by the separate time-dependent curves of usual electrocardiograms. Examples of the topographic approach are found in measuring and analyzing body-surface (including precordial) potential distributions, epicardial and endocardial potential distributions, heart surface distributions of the intensity of an equivalent bioelectric generator, significant electrophysiological characteristics of the bioelectrical processes in myocardium, etc. The main advantage of using topographic methods is the ability to comprehensively collect and efficiently analyze all diagnostic information about the electrophysiological state of the heart. Rather useful additional information may be acquired by means of biomagnetic field measurements on the basis of similar topographic techniques. A critical review of recent biophysical, measuring, and computational problems, as well as theoretical and experimental results in the field of topographic electrocardiology is presented.

Animals↗

[Measurement of volume-rate parameters of pulmonary ventilation in infants using the SAV pneumotachograph].

The paper deals with methods and equipment for measuring pulmonary ventilation parameters in children of the lowest age category. Description and substantiation of the given method of the measurement itself on the Pneumotachograph SAV. Evaluation of the obtained results in the records and of the time courses of volume and air flow rate on a single-pen recorder is presented further the relations necessary for quantitative description of analogue signal processing from the pneumotachograph are given as well as the series of parameters obtained on examining 21 infants and their clinical evaluation. (Tab.1,Fig.2,Ref.7.).

Humans↗

[Integral characteristics of the eletrical generator of the human heart].

Integral characteristics of the cardiac electrical generator, namely the dipole moment vector, position of the moving electrical center and the complexity parameter (relative quadrupolar potential), are presented for a group of healthy middle-aged men. The characteristics are determined as a result of mathematical processing of electrical potential distribution on the torso surface and geometrical parameters of this surface in a digital computer. The values of the surface potentials and coordinates were obtained by means of experimental measurements using a special automatized measuring system for investigating the cardiac electrical field. Main qualitative properties of the integral characteristics and their possible diagnostic significance are discussed.

Computers↗