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Biomedical subjects

W Kindermann

Publications and source records attributed to W Kindermann.

At least 127 records · Page 7Linked to original sources

Hormonal and metabolic consequences of prolonged running at the individual anaerobic threshold.

To examine the metabolic and hormonal responses to non-exhaustive steady-state exercise at the individual anaerobic threshold (IAT), 12 male physical education students performed treadmill exercise of 50 min duration. The treadmill speed equaled that at the IAT as assessed in a standardized progressive exercise test (75 +/- 2% of maximal oxygen uptake). Heart rate averaged 177.0 +/- 12.2 min-1 at 15 min and 184.5 +/- 11.5 min-1 at 50 min. After the initial adjustment, arterial lactate stabilized at individually different levels between 2.70 and 6.00 mmol/l without any substantial trend in the individual curves. Arterial glucose was unchanged throughout the test. Glycerol increased continuously to 157% above the preexercise value (P less than 0.001). The FFA blood level was not depressed but rather showed an increasing tendency between 25 and 50 min (P less than 0.05). Between 0 and 25 min, insulin decreased (P less than 0.01), growth hormone increased to 8 times its pre-exercise value (P less than 0.001), and cortisol did not show any significant changes. Between 25 and 50 min, no significant additional changes were detected for these hormones. At 15 min epinephrine and norepinephrine had increased 2.8- and 7-fold above the respective pre-exercise values (P less than 0.001); both catecholamines continued to increase until 50 min (P less than 0.001 and P less than 0.01). It is concluded that prolonged exercise at the IAT is associated with a steady-state condition in carbohydrate supply and turnover, as is suggested by the stable blood levels of glucose and lactate. The stably elevated blood level of lactate did not result in depression of the FFA blood level, suggesting unimpaired supply of FFA from extramuscular sources. Exercise at the IAT places a high load on aerobic metabolism without encountering progressive lactate accumulation and the associated metabolic effects.

Adult↗

Lactate kinetics and individual anaerobic threshold.

Exercise with stepwise increasing work loads until exhaustion leads to a curvilinear increase of lactate in blood and typical lactate kinetics in the post-exercise period. Lactate kinetics in blood during exercise and recovery results from diffusion along gradients between muscle and blood and simultaneous elimination. Therefore, a general diffusion-elimination model is presented from which maximal rate of elimination (Em), individual anaerobic threshold (IAT), gradient between muscle and blood (deltaC-deltaCEm), muscle volume working above the IAT (Vm), individual membrane constant (Mc), quantity of lactate accounting for lactate gradient (Agrad), and whole body lactate (Anet) can be obtained. For demonstration purpose, this model was applied to a highly trained athlete. In this example, all constants and variables mentioned above as well as an equation reflecting individual lactate kinetics were calculated. Furthermore, the IAT was determined in 61 athletes participating in different events. In general, it can be demonstrated that with increasing aerobic capacity the lactate concentration at the IAT decreases. The lactate concentration at the IAT varies interindividually within broad limits, thus emphasizing the need for individual assessment.

Adolescent↗

[Metabolic and hormonal response to physical exercise under acute beta 1-adrenergic blockade (author's transl)].

In 14 healthy physical education students the effect of acute beta 1-adrenergic blockade (100 mg metoprolol) on maximal and prolonged exercise capacity, carbohydrate and lipid metabolism, catecholamines, insulin, growth hormone, and cortisol was studied in a double-blind trial. Metoprolol had no effect on maximal oxygen uptake. The 3.5% reduction of maximal exercise capacity had to be attributed to the reduced maximal lactate concentration. Maximal heart rate was reduced by approximately 22%. At submaximal work loads (treadmill) exercise with gradually increasing velocity), lipolysis appeared to be inhibited, arterial glucose and lactate concentrations were unaffected. With metoprolol, epinephrine levels at rest and submaximal work loads were elevated; no effect was apparent at maximal loads. Norepinephrine, insulin, growth hormone, and cortisol were unaffected in exercise with increasing work loads. In prolonged exercise at a constant load of approximately 70% of maximal exercise capacity, mean heart rate was reduced by 26%. Arterial lactate and glucose levels were essentially unchanged, free fatty acids and glycerol decreased by 50 and 30% respectively. With metoprolol, epinephrine increased by 100%, norepinephrine by 50% growth hormone by 60%, and cortisol by 90%, insulin remained unchanged. The results indicate that a reduction of exercise capacity by beta 1-adrenergic blockade in patients undergoing an endurance type training for therapeutic or rehabilitative purposes is unlikely to occur. The inhibition of lipolysis under metoprolol appears to be counteracted by the increased carbohydrate utilisation and by the increased secretion of the regulating hormones.

Adrenergic beta-Antagonists↗

[Echocardiography during ergometric exercise (author's transl)].

Radiological heart volume estimations and echocardiographic studies were performed on 30 male and 15 female middle distance athletes at rest, during supine ergometric exercise at 10 and 100 Watt and 1 minute after excerise. During exercise, there is an increase in cardiac output, in the small hearts of 6%, in the large hearts of 16%, due to a small enddiastolic increase and an associated decrease in the endsystolic left ventricular diameter. At rest and at 50 Watt, the cardiac output, corrected for body surface area, was practically the same for all volunteers, at 100 Watt the volunteers with the largest hearts had the highest cardiac output. This is interpreted as evidence for increased cardio-circulatory reserves. The contractility parameters at the various exercise grades varied dependant on heart size; when related to heart rate the variations were practically abolished. The results suggest that variations in the dynamics of small and large hearts are not primarily due to intrinsic factors but rather related to extrinsic factors such as sympathetic drive expressed by the changes in heart rate.

Adolescent↗

The significance of the aerobic-anaerobic transition for the determination of work load intensities during endurance training.

Anaerobic and aerobic-anaerobic threshold (4 mmol/l lactate), as well as maximal capacity, were determined in seven cross country skiers of national level. All of them ran in a treadmill exercise for at least 30 min at constant heart rates as well as at constant running speed, both as previously determined for the aerobic-anaerobic threshold. During the exercise performed with a constant speed, lactate concentration initially rose to values of nearly 4 mmol/l and then remained essentially constant during the rest of the exercise. Heart rate displayed a slight but permanent increase and was on the average above 170 beats/min. A new arrangement of concepts for the anaerobic and aerobic-anaerobic threshold (as derived from energy metabolism) is suggested, that will make possible the determination of optimal work load intensities during endurance training by regulating heart rate.

Adult↗

[Echocardiographic studies on athletes of various sport-types and non-athletic persons (author's transl)].

The results of echocardiographic studies on 90 athletes representing various sport-types and 18 non-athletic persons are presented. The intracardiac diameter measured by echocardiography was proportional to the heart volume determined radiologically. The thickness of the septum and posterior heart wall compared to the internal heart diameter was greater in athletes with static exercise than in endurance athletes. This must be interpreted as a tendency to concentric hypertrophy. In endurance athletes this relationship tended to be less than in non-athletic persons. In addition stroke volume and cardiac output at rest was higher in endurance athletes than in athletes with static exercise and non-athletic persons. At rest no variations in parameters of heart muscle contractility related to heart size or sport-type could be detected.

Adult↗

[Echocaridographic measurements of left ventricle, heart volume, and maximal oxygen uptake (author's transl)].

Echocardiograms, radiological heart volume and datas by treadmill-exercis of 50 endurance athlets were studied. There was a highly significant correlation between radiological heart volume and left ventricular dimension as well as left ventricular volume including stroke volume. Other good relations were found between echocardiographic measurements and maximal oxygen uptake. These findings of left ventricular echocardiographic dimensions compared with heart volume and oxygen uptake support the value of this method and permit its use in the analysis of physiological and pathologic changes.

Adolescent↗

Physical exercise after induced alkalosis (bicarbonate or tris-buffer).

The influence of bicarbonate and Tris-buffer infusions on the performance capacity for maximal, brief exercise (400 m run) was studied using 10 normal males in their twenties. Run time, maximal lactate concentration and heart rate remained unchanged after the buffer infusions. As a result of the induced elevated buffering capacity, the average pH after exercise was about 0.1 unit higher. Corresponding values for base excess and standard bicarbonate were found. The arterial pCO2 was higher after infusion as a result of the active respiratory compensation. Since the reduction in the work-related metabolic acidosis by the buffering substances caused no improvement in performance, the importance of pH as the performance-limiting factor must be questioned because the investigation gave no evidence for alterations of intracellular pH.

Adult↗

[Anabolic steroids: damages, effect on performance, and on metabolism (author's transl)].

10 normal persons (age: x=22 years) and 15 weight lifters (age: x=27 years) were studied before and three months after taking Nandrolone danoate (ND). Strength exercises, hear rate during ergometer work, physical working capacity and certain biochemical variables were measured in the experimental group, as well as in a controll group of 7 weight lifters. Six weight lifters in the experimental group who had been taking ND for at least 3 years were also studied to determine whether there were any deleterious effects on their health. In addition, 75 athletes who had been taking anabolic steroids were investigated to determine the possible effects. It was found that: 1. In spite of an 7% increase in performance, the maximal heart rate was not higher when the subjects took ND. During submaximal work loads the heart rate (p less than 0.025) and the blood lactate level (p less than 0.05) were lower. During physical work, there was essentially no effect of ND on glucose or total lipids in serum. 2. The results from the three-months study, from the weight lifters taking ND for 3 years, as well as from 26 of the 57 athletes who had been taking ND showed no evidence of a deleterious effect of ND (based on 26 biochemical measurements). It would appear, therefore, that the general suggestion of a detrimental effect of anabolic hormones is not justified. 3. Damages or functional disturbances were found in 31 athletes and 3 weight lifters of the experimental group after oral application of anabolic alkyl-steroids. After a period of time without alkyl-steroid administration, all investigated biochemical parameters returned to normal levels; thus it appears that the aforementioned pathological findings are reversible changes in liver function.

Adult↗