PubMed Health⌕ Search

Biomedical subjects

M J Stopczyk

Publications and source records attributed to M J Stopczyk.

17 recordsLinked to original sources

A method of esophageal electrogram recording for diagnostic atrial and ventricular pacing.

This study evaluates improvement of the electrogram sensed via an esophageal catheter with the sensing electrode adjacent to the stimulating electrode with and without a specialized artifact suppression system. In 100 patients (65 men and 35 women) aged 16-60 years (mean 48 years), esophageal recordings of left atrial activity were obtained during simultaneous transesophageal atrial pacing. Transesophageal ventricular pacing was performed in an additional 34 patients. Without the suppression system, ventricular paced activity, recorded from the esophagus, was not suitable for interpretation. About 10% of the atrial electrogram response could be recorded and evaluated during atrial pacing. With the stimulus artifact suppression system, interpretable recordings were obtained 100% of the time during atrial and ventricular recordings. The method described allows use of transesophageal diagnostic testing where previously only the intracardiac route was possible.

Arrhythmias, Cardiac↗

[Experimental studies of assisted circulation using left-ventricular assist devices with the pneumatic system (LVAD)].

The results of short-term (acute) studies of assisting artificially produced (reversible) left ventricle insufficiency with an artificial, pneumatically driven left ventricle are discussed. Both mechanical left ventricle and driving devices are of Polish manufacture. The studies involved mongrel dogs and sheep and were fully hemodynamically and biochemically monitored. The results obtained with each design of the device were given to the producers. It seems that recent models are near to clinically acceptable ones and enable to assist left cardiac ventricle for a short time preceding elective transplantation of the heart.

Animals↗

Pre-P (Sino-atrial node region) activity recording from the right atrial cavity by signal averaging.

A mobile instrumentation and noninvasive method developed recently for external His bundle recording and employing the signal averaging technique was applied for intra-atrial recording of the pre-P (sino-atrial node region) activity. Recordings were obtained in ten anesthetized dogs and five patients at the time of right heart catheterization. A bipolar intra-atrial lead was used for triggering of the averaging process and a unipolar intra-atrial lead was used for signal recording. Direct bipolar epicardial recordings were obtained for comparison from the sino-atrial (S-A) node area in experimental animals. In animals studies, the averaged intra-atrial recording showed 30 muV amplitude deflections beginning 40-45 ms prior to the onset of P wave and were preceded by a slow rise and lower frequency and amplitude deflections arising 60-70 ms earlier. There was good correlation between the pre-P activity recorded intra-atrially and from the epicardium. Deflections of similar configuration but smaller amplitude (1 muV) were recorded in human studies. They preceded the onset of large atrial activity deflections (P wave) in the reference electrocardiogram by 40-80 ms. The exact source of these pre-P activity potentials has not been definitely established, but they appear to originate from the S-A node region, based on their similarity to the direct epicardial recordings and time relationship to the preceding T and following P wave.

Animals↗

Noninvasive recording of His-Purkinje activity in man by ORS-triggered signal averaging.

Mobile instrumentation and a clinically applicable method have been developed for external His bundle recording. High gain signal amplification (10)(5) filtering (30--300 HZ) and averaging (128 or 256 consecutive cycles) are used. Acquisition of signals arising in the P-R interval is triggered by the patient's QRS signal at the end of that interval. The precordial bipolar electrodiogram is digitized at 5k HZ with 8 bit resolution and transferred to a 1,024 word, 18 bit signal averager. The averaged signal is then displayed on an oscilloscope and photographed. Good correlations were obtained between direct intracardiac and precordial recordings in experimental animals and in humans. Noise level after averaging was below 0.3 microV, and there was good elimination of asynchronous atrial and ectopic ventricular activity. With averaging of 128 or 256 consecutive cycles, the signal attenuation after propagation to the chest wall was in the range 1:2000 to 1:4000 in comparison with the directly recorded His bundle activity deflections. The noninvasive method may be of value in follow-up of acute and chronic disturbances of atrioventricular conduction, as well as in studies of effects of pharmacologic interventions.

Animals↗