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H Rieckert

Publications and source records attributed to H Rieckert.

7 recordsLinked to original sources

Ammonia and lactate: differential information on monitoring training load in sprint events.

Two hypotheses were tested concerning training relevance of ammonia in capillary blood compared with lactate after extensive and intensive high-paced runs. 1. There is a load threshold at which ammonia concentration deviates statistically significantly from the pre-load level, while lactate indicates already anaerobic metabolic processes at extensive training loads. Increased ammonia concentration is understood as the activation of type IIb fibers. 2. The increase in ammonia is primarily a consequence of increasing training load intensity. The hypotheses were tested in a field experiment with male sprinters n = 13. The experimental plan followed a design of repeated measures in a 4 x 4 Latin-square. The subjects completed four high-pace runs (300 m) at 82.5%, 85%, 87.5%, and 90% of the maximum running intensity (identified in a contest). The results confirmed our first hypothesis. Significant increase in ammonia concentration was not found until after four runs at an intensity of 87.5% or after one 300-m run at maximum running speed. In contrast to this, a glycolytic reaction became evident in one run at 82.5% of the maximum intensity. Lactate concentration exceeded the anaerobic threshold at this point. Definite instructions for training practice cannot be made at the present state of research.

Adenosine Monophosphate

[Schellong test].

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Heart Function Tests

[Physiology of orthostatic regulation].

The arterial blood pressure is integrated into a feedback control system and practically depends on three parameters, i. e. blood volume, heart dynamics, and peripheral resistance. When circulation is disturbed in the orthostatic, the correcting elements heart and vessels have to adapt themselves according to this demand. By standing up, the hydrostatic pressure in the arterial vessels increases rapidly in the lower body regions. The initial increase of the hydrostatic pressure will be stopped by the valves in the venous system. By means of a higher arteriovenous pressure gradient the blood flow into the lower body regions increases more than 100%. The blood flow fills the venous system within 1-2 min successively from downward to upward and opens the valves. The venous pressure in the feet can rise to the full hydrostatic value of 100 mm Hg. This change of pressure causes a volume increase of approximately 200 cm3 regarding both legs of healthy persons. In this way the circulatory blood quantity is reduced. The heart is able to put out shortly an increased cardiac output by loading off the central blood volume (lung and end-systolic volume), in order to compensate orthostatic demand. After a long upright position the cardiac output is falling under the starting value and heart frequency increases. By sympathetic stimulation the peripheral resistance increases as well.

Blood Pressure

Swimming: stress and training.

The short term and the training effects of water immersion and swimming on ventilatory and circulatory parameters of the human organism were described using our own results and data from the literature. It is suggested that swimming has not only the common positive effects on the physical efficiency observed in other types of sport but seems to improve the orthostatic regulation of the circulation. Furthermore, the physical effects of water immersion and the special pattern of muscular activity during swimming favour the adaptation of the heart to the circulatory demands. This advantage of swimming might explain its known beneficial effect in preventive and curative medical treatment.

Adolescent