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Biomedical subjects

C Mendel

Publications and source records attributed to C Mendel.

11 recordsLinked to original sources

Computer program for intestinal spike bursts recognition.

A FORTRAN program has been developed for locating intestinal spike bursts and for estimating their strength. Tested against human scanning, the reliability rate was 92% and the misrecognition rate was 2.5%. This program was applied to the automatisation of the Migrating Myoelectric Complex analysis. A first method computed the percentage of Basic Electrical Rhythm (BER) cycles with superimposed spike bursts. A second one was based on the evaluation of spike bursts strength.

Animals

Computer program for intestinal basic electrical rhythm patterns analysis.

A FORTRAN program has been elaborated for computerized intestinal Basic Electrical Rhythm (BER) analysis. It is based on recognition of individual cycles limits. The reliability of the method was assessed by comparison between computer and visual cycle limits identification. The agreement is 98.2% for BER recorded from the frequency plateau. It is 91.4% for fluctuating BER patterns. For BER frequency computing, drawbacks due to misrecognitions were avoided by cancelling sequences in which they occur.

Computers

[Gastro-intestinal electromyography: interest in the study of mechansims of regulation of intestinal motility (author's transl)].

Investigations we carried out in man and animals in order to study the relationships between the electrical and the mechanical activities of the intestine, and to precise the role of BER in the regulation of intestinal motility. In the dog, an intestinal movements transducer allowed to establish that spiking activities were concomitant with circular contractions, and that these two phenomena were rhythmed by the slow waves. Under basal conditions, the longitudinal movements occurred independently; under stimulation longitudinal movements occurred independently; under stimulation longitudinal relaxations were observed to correspond to circular contractions. In man, the post-laparotomy paralytic ileus provoked abnormalities in the BER which seemed to be related to a disturbance of the coordination of the motility, resulting in the absence of intraluminal propulsion. Administration of coherin, a postpituitary extract, was followed by a regularization of the BER and by a decrease of paralytic ileus duration. This confirms the important role of the BER in the myogenic regulation of the intestinal motility.

Animals

Simultaneous recording of circular and longitudinal muscle contractions of the canine jejunum.

A method has been developed for monitoring the mechanical activities of individual longitudinal and circular muscles in a 5 millimeters long segment of intact intestine in the anesthetized dog. The longitudinal contractions were recorded by means of a new movement transducer. The circular contractions were recorded simultaneously using a water-filled intraluminal balloon. A precise separation of longitudinal and circular motor activities was obtained with this method. The two muscle layers manifested motor activity most of the time, but their contractions were out of phase. Phase locking was observed only during short periods of time. The contractions were then sequential, the circular one being first.

Animals

The effects of VIP on intestinal motility: study on ex vivo perfused isolated canine jejunal loops.

The effects of VIP on intestinal motility were studied on isolated canine jejunal loops ex vivo perfused at normothermia, under pulsatile flow with heparinized, oxygenated and nonrecirculated canine whole blood, by means of an intraluminal balloon. VIP was administered intraarterially either by 1 min injections or by long-time infusions. The results showed that for arterial concentrations of the polypeptide ranging between 25 pg/ml and 300-500 pg/ml a fast but short-lasting relaxant effect was observed. For higher concentrations VIP usually produced a biphasic response: The relaxant effect is followed by an increase of the basal muscular tone often accompanied, for concentrations higher than about 25 ng/ml, by a marked and transient increase in amplitude of the intestinal rhythmic contractions. During long-time infusions a biphasic response was also observed but both effects were of short duration. A cholingeric origin of the secondary contracting phase was expected but could not be demonstrated because, at blood concentrations at which atropine affected the biphasic response, not only was the contractile effect abolished but also the initial relaxing phase. It is suggested that the secondary contraction may be a "rebound excitation" of myogenic nature or a result of noncholingeric excitatory fiber stimulations. The short-lasting relaxant effect observed under the present experimental conditions, even during long-time infusion of the polypeptide, fails to argue for an important physiological role of VIP as an hormonal inhibitor of intestinal motility. The biphasic response, however, might have a physiological significance in so far as the aboral propulsion of the intestinal content requires a muscular inhibition which rapidly changes to contraction.

Animals

The effects of transections on the basic electrical rhythm in the canine jejunum.

The basic electrical rhythm (BER) was studied in situ in the jejunum in 14 anaesthetized mongrel dogs by the mean six monopolar electrodes. The BER frequency was measured in the intact intestine and after proximal and distal transections of the gut 5 cm apart from the electrodes. No significant differences were found between the BER frequencies recorded by each electrode, demonstrating the existence of a frequency plateau which remained after each transection. In the intact intestine the frequency in the plateau was 13.2 +/- 0.3 cpm2. After the proximal transection, this frequency dropped to 12.0 +/- 0.4 cpm (p less than 0.05) and, after the distal transection, it dropped to 10.9 +/- 0.4 cpm (p less than 0.005). This last frequency change shows the influence of the distal intestine on the electrical behaviour of the jejunum.

Action Potentials