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Biomedical subjects

B Hadjaj

Publications and source records attributed to B Hadjaj.

3 recordsLinked to original sources

[Changes in heart rate after ventricular stimulation; correlations with vagal tone].

The authors report a new method of studying the autonomic nervous system, especially vagal tone, during endocavitary electrophysiological studies. After termination of fixed ventricular pacing at incremental rates to 200/min, an initial acceleration of the heart rate is observed followed about 5 seconds later by a sudden slowing. This phenomenon was studied in 278 patients. Ninety seven patients had no cardiac disease: the variation in heart rate was 33 +/- 18%. In the 181 other patients with cardiac disease (ejection fraction 35 +/- 16%) the variation was only 21 +/- 16% (p < 0.01). When the ejection fraction was less than 30%, the variation was only 13 +/- 4%. When the heart rate variation was less than 10%, the prognosis was poor because, of the 48 patients with this sign, 13 died, whereas there were only 2 deaths in the 133 other patients with cardiac disease and preserved adaptation. In 14 patients without cardiac disease the injection of 2 mg of atropine suppressed all adaptation of the heart rate, whilst in 18 other patients, oral betablockers reduced the variation but it persisted to a significant degree. The authors conclude that the adaptation of the heart rate after rapid ventricular stimulation is probably a reflection of vagal tone and may be used to assess the prognosis of subjects undergoing electrophysiological investigations.

Adolescent↗

Control of basophil degranulation.

We first present a linear compartmental model describing human basophiol degranulation by means of an antigen concentration. Then we study an optimal control problem associated to this linear compartmental model in presence of high dilutions. For solving this control problem we used the LAPLACE transform.

Antigens↗

Basophil degranulation control.

We first present a global simulation model describing inhibition of human basophil degranulation by means of high dilutions. Then we study an optimal control problem associated to a non-linear compartmental model. This control is associated to an antigen concentration. For solving this control problem we used a dynamic programming method.

Basophil Degranulation Test↗