Papers Published

  1. Malkin, R.A. and Penzotti, J.E. and Juhlin, S.P. and Pilkington, T.C. and Plonsey, R., Statistical analysis of signals from an intracavitary probe in a diseased heart, Med. Biol. Eng. Comput. (UK), vol. 35 no. 5 , pp. 462 - 6
    (last updated on 2007/04/14)

    Abstract:
    A model study introduces the use of statistical signal processing to analyse the signals from an intracavitary probe. A complete derivation is given for the detection of one type of arrhythmogenic substrate, myocardial infarctions (Mis). Both the use of statistical signal processing and the detection of VT substrates, as opposed to activation maps, are unique. A quasi-stationary electromagnetic model with simplified geometry is presented. The model is used to simulate ventricular pacing in the presence of MI. The likelihood ratio is used for detection. A tabulation of the results from this model shows that an intracavitary probe can be used to detect Mis as small as 400 mm2 in 1 mV of noise with a detectability index of 0.495, where 0.5 indicates perfect defection. Sensitivity to noise can be reduced by analysing multiple heart beats. The results are only slightly affected by changing the probe from a cage frame design, which mechanically supports the electrodes on thin spokes, to a balloon design, which supports the electrodes on the surface of an insulating balloon

    Keywords:
    electrocardiography;medical signal processing;physiological models;probes;statistical analysis;


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