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J Stegemann

Publications and source records attributed to J Stegemann.

4 recordsLinked to original sources

[Relation between training status and orthostatic tolerance].

Investigations on orthostatic tolerance and physical fitness prior to and after 6-8 h immersion experiments surprisingly revealed that all untrained subjects endured pre- and postimmersion tilt table tests without subjective complaints, whereas after immersion all trained participants collapsed within the first minutes of erect position displaying symptoms of a vasovagal syncope. Assuming that this impaired orthostatic tolerance of trained subjects can partially be referred to influences of an altered blood pressure control system we decided to record the blood pressure characteristics of both groups. Thereby, the transmural pressure of the carotid artery was changed by applying from outside either reduced or exceeding pressures. The controller sensitivity in the untrained group was almost twice as high as in the trained one. This implies a better regulatory response to disturbing interference in the untrained. Under normal conditions the controlling capacity of both groups is sufficient to cope with body position changes. However, during stress situations--in this case, reduction of aldosterone concentration as well as losses of plasma volume due to the 'Gauer-Henry-Reflex'--blood pressure regulation first fails in the trained subjects.

Blood Pressure

A mathematical model of the ventilatory control system to carbon dioxide with special reference to athletes and nonathletes.

The ventilatory response curve (VRC) as a function of alveolar and arterial pCO2 was recorded in 6 high-performance athletes and 6 nonathletes. The best fit to the data points could be found for an equation of the form (see article) showing that the results are strongly related to a Gaussian probability density function (PDF). After normalizing the equation to a form (see article) (M = mean value of PDF), sigma, A and M could be determined for both groups. Sigma and A are smaller in the athletic group, whereas M did not show any systematic difference. Regarding the respiratory center consisting of functional "elements" responding indirectly to variable pCO2 it can be concluded that the frequency distribution of the different active elements is greater and spread over a wider pCO2 range in the nonathletes with the same mean value in both groups. Using Loeschcke's model (1960), the open loop gain factor for different V CO2 as a function of p(A)CO2 was computed; the gain factor showed a maximum in the physiological range of pCO2.

Adult

Effects of a multi-hour immersion with intermittent exercise on urinary excretion and tilt table tolerance in athletes and nonathletes.

The circulatory and diuretic responses of athletes and non-athletes to 6-h water i-mersion with intermittent swimming exercise (series I) as well as to 8-h inactive immersions (series II) were studied. With simultaneous intermittent exercise, the normally arising diuresis during a water bath was strongly suppressed in athletes and even abolished in nonathletes. In subsequent tilt table tests, 3 of 11 (27.3%) athletes of series I and 3 of 4 (75%) of series II collapsed, whereas all nonathletes tolerated the vertical position without any subjective complaints. By use of the so-called "orthostatic index" (4) the later group, however, was also shown to yield a substantially better orthostatic stability in series I than in series II. The protective effect of intermittent physical activity for simulation of the weightless state can possibly be explained by assuming a less-reduced plasma volume via a diminished urinary excretion.

Adaptation, Physiological