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J Nousiainen

Publications and source records attributed to J Nousiainen.

2 recordsLinked to original sources

Normal vector magnetocardiogram. I. Correlation with the normal vector ECG.

The vector magnetocardiogram (VMCG) has been measured with the corrected unipositional VMCG lead system and analyzed statistically in 290 normal subjects. The morphologic study of the QRS waveforms showed that in the right-to-left (X) component, the triphasic qRs waveform appeared in 55% of the subjects. The superoinferior (Y) component was characterized by a prominent S wave in 96% of the subjects, and the anteroposterior (Z) component was also characterized by a prominent S wave in 95% . The VMGs were compared with the vector electrocardiograms (VECG) recorded in a subgroup of 200 subjects, in whom both the VMCG and VECG were available for computer analysis. The normal variability of the spatial vector magnitude measurements was significantly greater in the VMCG than in the VECG. Some similarities were observed in the waveforms of the time-averaged QRS complexes between the VMCG and VECG. Multiple linear regression analysis between the VMCG and VECG showed that maximally 27, 45, and 41% of the variation in the instantaneous QRS X, Y, and Z amplitudes of the VMCG, respectively, could be explained by the instantaneous X, Y, and Z amplitudes of the VECG.

Adolescent

Normal vector magnetocardiogram. II. Effect of constitutional variables.

The effects of age, sex, height, weight, and dimensions of the thorax on the vector magnetocardiogram (VMCG) were studied in 290 normal subjects. The effect of sex on 141 VMCG parameters was tested with the Mann-Whitney U test, and the effects of age and body dimensions on the male and female subjects were tested with the Kruskal-Wallis H test. Similar analyses were applied for a comparison of the vector electrocardiogram (VECG) in a subgroup of 200 normal subjects. Sex had the most pronounced effect on the VMCG, a total of 58% of the instantaneous time-normalized QRS and T amplitude parameters were significantly (P < .01) different in men and women (47% for the VECG). In women, the absolute VMCG amplitudes were, on average, about 60% of those in men. In the VECG, the corresponding portion was about 85%. In men and women, 50 and 26% of the time-normalized amplitude parameters, respectively, were significantly (P < .01) affected by age; the main effect was a decrease in most VMCG amplitudes with increasing age. In the VECG, the corresponding effect was not as statistically significant. The effect of constitutional variables of the body on the VMCG and VECG was, in most cases, not statistically significant. Multiple correlation analysis showed that the five noncardiac factors together explained, at most, 16 and 28% of the variability in the instantaneous, time-normalized QRS amplitudes for men and women, respectively. In the VECG, these figures were 13 and 18%, respectively.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent