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G Schwaberger

Publications and source records attributed to G Schwaberger.

At least 19 recordsLinked to original sources

Validation of a field test for the non-invasive determination of badminton specific aerobic performance.

AIM: To develop a badminton specific test to determine on court aerobic and anaerobic performance. METHOD: The test was evaluated by using a lactate steady state test. Seventeen male competitive badminton players (mean (SD) age 26 (8) years, weight 74 (10) kg, height 179 (7) cm) performed an incremental field test on the badminton court to assess the heart rate turn point (HRTP) and the individual physical working capacity (PWC(i)) at 90% of measured maximal heart rate (HR(max)). All subjects performed a 20 minute steady state test at a workload just below the PWC(i). RESULTS: Significant correlations (p<0.05) for Pearson's product moment coefficient were found between the two methods for HR (r = 0.78) and velocity (r = 0.93). The HR at the PWC(i) (176 (5.5) beats/min) was significantly lower than the HRTP (179 (5.5) beats/min), but no significant difference was found for velocity (1.44 (0.3) m/s, 1.38 (0.4) m/s). The constant exercise test showed steady state conditions for both HR (175 (9) beats/min) and blood lactate concentration (3.1 (1.2) mmol/l). CONCLUSION: The data indicate that a valid determination of specific aerobic and anaerobic exercise performance for the sport of badminton is possible without HRTP determination.

Adolescent↗

Post-exercise decrease of plasma hyaluronan: increased clearance or diminished production?

The exercise-induced increase and post-exercise decrease of plasma hyaluronan concentration were studied in human subjects. Six well trained men performed incremental exercise until exhaustion (MAX), intensive (submaximal, SUB) and extensive exercise (moderate, MOD) on a bicycle ergometer, defined as work at 100, 77 and 50% of maximal oxygen consumption. Hyaluronan was analyzed using a high-sensitivity, proteoglycan-dependent time-resolved immunoassay and hemoglobin, hematocrit and plasma protein levels were assessed using standard laboratory procedures. Compared to resting control levels, the plasma hyaluronan concentration (pHA) increased (p < 0.05) by 76% (65.0 +/- 6.1 vs. 37.0 +/- 1.0 microg/l) during 15 min MAX, by 44% (56.4 +/- 2.6 vs. 39.2 +/- 3.8 microg/l) during 30 min SUB and by 27% (46.3 +/- 7.8 vs. 36.4 +/- 4.3 microg/l) during 90 min MOD. The increase with time averaged 4.03%.min(-1) during MAX, 1.35%.min(-1) during SUB and 0.35%.min during MOD. After exercise (15 and 30 min), pHA decreased by 43% below resting levels after MAX (p < 0.05) and by 36% after SUB, respectively. In conclusion, pHA steadily rose with time during physical exertion, with a non-linear increase of concentration/time slope with exercise intensity; second, the magnitude of the post-exercise pHA decrease was proportional to the exercise-induced pHA increase, suggesting elevated hyaluronan clearance with rising plasma levels after physical exertion.

Adult↗

Unilateral high-altitude pulmonary edema (HAPE): a case report and discussion of pathophysiology.

High-altitude pulmonary edema (HAPE), a potentially life-threatening altitude adaptation disorder, is considered to be caused by an exaggerated increase in pulmonary blood pressure and a non-cardiogenic rise in pulmonary vascular permeability subsequent to alveolar hypoxia. A 40-year-old male mountaineer was affected by an advanced stage of HAPE at high altitude (Monte Rosa plateau, 4000 m). The symptoms abated immediately after the patient descended from the altitude. However, six hours after the symptoms had resolved, radiographic signs of pulmonary edema, confined to the right lung, were seen. This rarely described unilateral radiological pattern of HAPE resolved completely within two days. We suggest that aspiration events of nasal secretion, the right sleeping position at night and an elevated right diaphragm reduced the patient's compensatory hyperventilation capacity of the right lung. The resulting increased alveolar hypoxia in the right lung was responsible for unilateral edema. The pathophysiological mechanism underlying unilateral HAPE is discussed.

Adult↗

%HRmax target heart rate is dependent on heart rate performance curve deflection.

UNLABELLED: The percent of maximal heart rate (%HRmax) model is widely used to determine training intensities in healthy subjects and patients when prescribing training intensities in these groups of subjects. PURPOSE: The aim of the study was to investigate the influence of the time course of the heart rate performance curve (HRPC) on the accuracy of target training heart rate. METHODS: Sixty-two young healthy male subjects performed an incremental cycle ergometer exercise test until voluntary exhaustion. Subjects were then divided into four groups according to the time course of the HRPC. Groups were classified in regular HR response (kHR2 > 0.2), indifferent HR response (0 < kHR2 < 0.2), linear HR response (kHR2 = 0), and inverted HR response (kHR2 < 0). The first and the second lactate turn point (LTP1, LTP2) as well as the heart rate turn point (HRTP) were determined as submaximal markers of performance. Linear regression lines were calculated for HR in the three regions of energy supply defined by LTP1 and LTP2. RESULTS: HR at LTP1 and HRmax was not significantly different between all four groups. HR at LTP2 was dependent on the time course of the HRPC and was significantly lower (P < 0.05) as kHR2 decreased. Power output and blood lactate concentration at LTP1, LTP2 and maximal workload (Pmax) were not significantly different between the groups. CONCLUSION: From our data, we conclude that target training HR detected by means of the %HRmax method may be overestimated in cases where the HR response is not regular, as it was found in many of our subjects.

Adult↗

[Respiratory adaptation to altitude and risk factors due to respiratory illnesses].

Adaptation to altitude is a complex ability of the organism which involves primarily the cardiovascular and respiratory system in order to increase the oxygen supply for body tissues. Cardiovascular adaptations to rapid altitude challenge are regulated sympathetically and manifest themselves first of all as variations of cardiac output, systolic blood pressure and heart rate at rest. However, respiration plays an important role in compensating hypobaric hypoxia at altitude. The hypoxic ventilatory response (HVR) to alveolar hypoxia expressed as alveolar hyperventilation happens within a very short period of exposure to hypoxic conditions. This immediate adaptation response is followed by the acclimatization period, which encompasses longer lasting compensation processes such as the increase of blood hemoglobin concentration improving the arterial oxygen content. This final stage of adaptation is reached within days or weeks of persisting exposure and will vary somewhat depending on the degree of altitude. For healthy, acclimatized individuals the oxygen supply to the organism does not limit the exercise performance at moderate altitudes and higher. However, above 5000 meters (15,000 ft) long term adaptation cannot occur because oxygen-diffusion becomes a limiting factor to physical exercise capacity. Altitude-related disorders are contributing significantly to the morbidity and mortality of non-acclimatized individuals. Subjects already suffering from symptomatic underlying respiratory disease and hypoxemia at rest have a higher risk and incidence of altitude adaptation disorders even at lower altitudes. Therefore, several diseases with impaired respiratory function are contraindicated for any stay at altitude.

Acclimatization↗

Heart rate deflection related to lactate performance curve and plasma catecholamine response during incremental cycle ergometer exercise.

The correlation between the behaviour of the heart rate/work performance (fc/W) curve and blood lactate ([la]b) and plasma adrenaline/noradrenaline concentrations ([A]/[NA]) during incremental cycle ergometer exercise was investigated. A group of 21 male sports students was divided into two groups: group I, with a clear deflection of the fc/W curve; group II, without or with an inverse deflection of the fc/W curve. The aerobic threshold (Thaer) and the lactate turn point (LTP) were defined. Between Thaer and maximal work performance (Wmax) the behaviour of the fc/W curve as well as the behaviour of [la-]b and [A]. [NA] were described mathematically. The fc, systolic blood pressure (BPs), W, [la-]b, [A] and [NA] at rest, Thaer, LTP, Wmax, after 3 and 6 min of recovery (Re3/Re6) were calculated. A significant difference between the two groups could only be detected for fc at LTP, Re3 and Re6 (P < 0.05). No significant correlation could be found between individual fc/W-behaviour and individual time course of [la-]b, [A] and [NA]. However, a significant correlation was visible between [la-]b/W-behaviour and individual catecholamine response. These results and the fact that the different flattening at the top of the fc/W curve was related to diminished stress-dependent myocardial function led us to the conclusion that it is possible that sympathetic drive is not directly involved in mechanisms of regulation between load dependent fc and myocardial function. In addition, individual fc/W behaviour was independent of BPs and Wmax, or individual conditions of energy supply.

Adult↗

Effects of treadmill exercise protocol with constant and ascending grade on levelling-off O2 uptake and VO2 max.

In order to investigate the effect of an exercise protocol on the levelling-off O2 uptake and VO2 max values, ten male subjects aged 28 +/- 5 yrs, height 1.8 +/- 0.05 m, body mass 76 +/- 6 kg performed two treadmill exercise protocols: 1) constant grade (CG) of 5%, with increasing running speed starting at 6 km.h-1 and increments of 2 km.h-1 every 3 minutes. 2) ascending grade (AG) starting at 0% and increments of 5% every 3 minutes, with constant running speed of 5 km.h-1. During each protocol oxygen uptake (VO2), pulmonary ventilation (VE), tidal volume (Vt), and breathing rate (BR) as well as blood lactate concentration (La) and heart rate (HR) were measured. In CG a levelling-off phenomenon of VO2 in all cases was observed. Aerobic capacity expressed as VO2 max in CG was 46.2 +/- 6.0 ml.min-1.kg-1. In contrast, VO2 max was 35% higher in AG (62.6 +/- 7.2 ml.min-1.kg-1). The behaviour of VO2 indicates a lower efficiency with increasing work load in AG as compared to CG. Regarding maximum performance it can be concluded that VO2 in CG seems to be limited by a mechanical or neuromuscular constraint on the depth of breathing, which is confirmed by a distinct flattening of Vt. The levelling-off of the VO2 in CG, something which is not observed in AG, can be explained plausibly this way.

Adult↗

Relationship between heart rate threshold, lactate turn point and myocardial function.

We examined the relationship between heart rate threshold (HRT), lactate turn point (LTP) and myocardial function expressed as left ventricular ejection fraction (LVEF) determined by radionuclide ventriculography. Two groups of subjects (G I: N = 8; G II: N = 7) with and without a deflection of heart rate performance curve (HRPC) underwent sitting cycle ergometry. HRT (G I), aerobic threshold (AeT; G I, G II), and LTP (G I, G II) were determined by means of linear regression break point analysis. Also, a break point in LVEF performance curve (LVEFBP) was obtained. Power output at HRT and at LTP was not significantly different between G I and G II (272.5 +/- 38.7 W; 294.3 +/- 20.6 W). Power output at LVEFBP (G I: 182.6 +/- 31.7 W; G II: 211.8 +/- 21.5 W) was not significantly different to power output at LTP (G I: 194.2 +/- 32.7 W; G II: 215.2 +/- 24.4 W) and HRT (G I: 193.0 +/- 38.2 W). Significant differences (p < 0.05) could only be found between G I and G II for heart rate (HR) at LTP (G I: 163.5 +/- 5.8 b.min-1; G II: 154.4 +/- 6.7 b.min-1) and LVEF at the end of the load (LVEFend) (G I: 77.9 +/- 2.9%; G II: 71.3 +/- 7.0%). The drop of LVEF at LVEFBP was significantly related to LTP in all cases. The present data suggest that the noninvasive determination of anaerobic threshold by means of heart rate curve analysis is not always possible due to different response of myocardial function and heart rate to graded cycle ergometer exercise.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Correlation between inflection of heart rate/work performance curve and myocardial function in exhausting cycle ergometer exercise.

The heart rate/work performance (fc/W) curve is usually S-shaped but a flattening at the top is not always seen. By means of radionuclide ventricular scintigraphy, the left ventricular ejection fraction (LVEF) of 15 sports students was investigated. The behaviour of the fc/W curve during cycle ergometry with increasing exercise intensities was examined. During exercise, the LVEF showed a distinct initial increase reaching roughly constant values at stress levels below-maximum, and sometimes even falling again. The inflections of the fc/W curve and left ventricular ejection fraction/performance curve (LVEFPC) were calculated from a second degree polynomial fit. From this function, the slopes of the tangents at the points of aerobic threshold and maximum performance were calculated together with the differences of the angles as a measure of the fc/W curve and LVEFPC inflections. It follows that the fc/W curve inflection became less pronounced or was even absent altogether when the decrease in LVEF towards the end of the ergometer exercise became more distinct. A significant negative correlation was found between the existence and extent of the fc/W curve inflection and the stress-dependent myocardial function, expressed as the inflection of the LVEFPC (P < 0.01, r = 0.673). Thus, it would seem that the absence of a fc/W curve inflection was related to a diminished stress-dependent myocardial function.

Adult↗

Detection and evaluation of persisting stress-induced hormonal disturbances by a post stress provocation test in humans.

Eighteen healthy army officers were subjected after prolonged rest to exhaustive ergometric work for about 15 minutes. Before and afterwards blood was taken from the cannulated antecubital vein for determination of free and sulfoconjugated catecholamines, cortisol, glucose, and white blood cell count. One week later, the same procedure was repeated with the same subjects with the difference that the probands underwent about 2.5 hours of difficult mountain climbing and a subsequent rest of 1.5 hours before ergometry. The most important results were: 1) total and bound fractions of catecholamines showed some significant differences between the first and second ergometry due to the previous mountain climbing stress; 2) serum cortisol did not increase after the first ergometry but did so significantly after the second ergometry due to the previous stress; low cortisol is not always indicative of the absence of stress; 3) the absolute number of white blood cells increased in both situations, correlated significantly with the severity of the stress and the individual increases were more person than situation specific and; 4) blood glucose remained unaffected in both situations. We conclude that a previous stress experience can affect a second stress response and that such a post stress provocation test can uncover persistent hormonal alterations. This procedure may be useful for the evaluation of inaccessible stress situations from subsequent stress measures.

Adult↗

Increased red cell 2,3-diphosphoglycerate levels in haemodialysis patients treated with erythropoietin.

The efficacy of recombinant human erythropoietin (rHuEpo) for the treatment of renal anaemia is well established. To assess the effect of rHuEpo treatment on physical performance we evaluated physical working capacity, oxygen uptake and red cell 2,3-diphosphoglycerate (DPG) values at rest and during and after exercise on a bicycle spiroergometer in eight chronically haemodialysed patients. Follow-up examination was carried out after a mean of 14 weeks (range 9-19 weeks), when mean haemoglobin had increased from 7.8 to a stable value of 13.0 g/dl in response to rHuEpo treatment (P < 0.001). Physical working capacity and oxygen uptake at the anaerobic threshold (4 mmol/l blood lactate concentration) increased from 68 +/- 12 to 80 +/- 16 watts and 0.95 +/- 0.14 to 1.10 +/- 0.20 l/min, respectively (P < 0.01). DPG, which determines oxygen affinity to haemoglobin in red cells, increased by 13% from 13.7 +/- 1.5 to 15.5 +/- 2.2 mumol/g Hb (P < 0.05). With maximal exercise mean DPG values significantly decreased to a much lower level without rHuEpo treatment than after correction of anaemia. Therefore rHuEpo treatment results both in better oxygen transport capacity and reduced intraerythrocytic oxygen affinity, which is followed by improved oxygen delivery to tissues per unit of haemoglobin. These effects may explain the improvement of exercise capacity observed in dialysis patients after rHuEpo treatment.

2,3-Diphosphoglycerate↗

[Females in performance sports from the sports medicine viewpoint].

Especially in the endurance disciplines, the performance of women went up considerably in the course of the past few decades. This seems to be peculiar to the female sex and can be taken as a hint to a higher adaptability of the female organism with respect to the various motor capacities required for strength and endurance. During the past 10 years, however, the rate, with which the performance gap in the endurance disciplines narrowed, has slowed down distinctly. Thus, it seems, that the era during which the women vigorously caught up on the men, is coming to an end in the endurance sports. The different capacity of the sexes with respect to strength is rooted in the differently dimensioned cross sections of the muscle fibres and in the higher activation capability of the skeletal muscles of men. No differences exist with respect to the relative proportions of the ST-, FTa- and FTb-fibres and with respect to the biochemistry of the muscles. Just as in case of men, the adaptation of the cardiovascular system to endurance training manifests in a uniform enlargement of all of the heart's cavities. It is true, that women have a smaller heart volume and lower values for the maximum oxygen uptake, but these differences or by no means related to sex alone. Very often, they are produced by the fact that the endurance training of the women did not go that far. As regards the energy substrates, there is the hypothesis that women have better utilization of free fatty acids under conditions of prolonged and intensive physical work.(ABSTRACT TRUNCATED AT 250 WORDS)

Bone Density↗

Heart rate, metabolic and hormonal responses to maximal psycho-emotional and physical stress in motor car racing drivers.

Motor car racing is representative of concentrative sporting activities, as well as instructive for mental-concentrative and psycho-emotional stress, which predominates with lower intensity, but longer duration in occupational work of today. A group of 20 car racing drivers was investigated both during car races (Formula Ford and Renault-5-Cup) and during progressive bicycle ergometry in the laboratory. Heart rate during car racing reached a mean level of 174.3 +/- 14.1 min-1 (mean +/- SD), corresponding to 90% of the maximal heart rate achieved at the end of exhaustive ergometry (n = 12). Catecholamine excretion in urine (adrenaline + noradrenaline) on average was 252.3 +/- 77.9 ng min-1 during car racing and 121.9 +/- 37.3 ng min-1 during exhaustive ergometry (n = 10). Most of the other metabolic parameters determined in blood (lactate, glucose, FFA = free fatty acids, plasma protein, insulin, HGH = human growth hormone) also showed significant differences between car racing and bicycle ergometry (n = 20). Therefore it is possible to distinguish between psychical and physical strain and the quantify their specific level. Especially blood lactate can be considered as a metabolic indicator of physical strain and FFA of psycho-emotional strain. Furthermore, significant negative correlations could be found between heart rate, FFA level, and catecholamine excretion during car racing and some measures of physical fitness determined on the bicycle ergometer (n = 12 or 10). This suggests a reduced cardiocirculatory and metabolic strain reaction in response to psychical stress situations with increased fitness. Moreover, HDL (high density lipoprotein) was found increased and oral glucose tolerance test was improved with elevated physical fitness (n = 20, respectively 16). From the results of this study it can be concluded that physical activity counteracts atherosclerosis and CHD (coronary heart disease), which are promoted by psycho-emotional and psycho-social stress.

Adult↗

Regulation of red cell 2,3-DPG and Hb-O2-affinity during acute exercise.

Reports from the literature and our own data on red cell 2,3-DPG and its importance for unloading O2 from Hb to the tissues during exhaustive exercise are contradictory. We investigated red cell metabolism during incremental bicycle ergometry of various durations. Furthermore changes in blood composition occurring during exercise were simulated under in vitro conditions. The effect of a moderate (11.2 mmol X l-1 lactate, pH = 7.127) and severe (18 mmol X l-1 lactate, pH = 6.943) lactacidosis on red cell 2,3-DPG concentration was compared with the effect of similar acidosis induced by HCl. Our data indicate that the concentration of 2,3-DPG in red cells depends on the degree of lactacidosis, but not on the duration of exercise. During moderate lactacidosis red cell 2,3-DPG remains unchanged. This can be explained by an interruption of red cell glycolysis on the PK and GAP-DH step caused by a lactate and pyruvate influx into the erythrocyte, as well as an intraerythrocytic acidosis and a drop in the NAD/NADH ratio. During severe lactacidosis and HCL-induced acidosis a decrease in 2,3-DPG due to an inhibition of 2,3-DPGmutase and other glycolytic enzymes can be found. Mathematical correction of the observed P-50 value for the decrease in 2,3-DPG occurring during severe lactacidosis showed that a decrease in Hb-O2-affinity during strenuous exercise depends on the degree of lactacidosis and temperature elevation.

2,3-Diphosphoglycerate↗

[Energy yield during physical exertion].

Every energy demanding process in the skeletal muscle is associated with the use of adenosinetriphosphate, the essential muscular high-energy phosphate. ATP is rephosphorylated by ADP (= adenosine diphosphate) and this process depends on the type, intensity and duration of the physical exercise. At the beginning of a vigorous physical exercise utilization of intramuscular ATP and phosphocreatine is predominant (= anaerobic-alactacide energy yielding). Then the ATP rephosphorylation based on the conversion of glycogen and glucose to lactate, especially by an exercise duration till 2 min (= anaerobic-alactacide energy yielding). Toward this duration or if the exertion intensity at start has been below 60 to 70% of maximal physical performance, ADP is rephosphorylated during oxidative phosphorylation by the skeletal muscle mitochondria using glycogen, glucose or free fatty acids as energy fuel. Training, age and sex may influence anaerobic and aerobic energy-yielding as well as metabolism and ultrastructure of skeletal muscle.

Adenosine Triphosphate↗

[Relevance of lactate determination in sports medicine].

In the last years increasing attention has been paid to specific changes of muscle metabolism during physical exertion in the diagnosis of physical performance. Lactate resp. lactic acid, being the terminal product of anaerobic glycolysis, has gained a central position in that field of sports medicine. Measuring lactate concentration level in arterialized capillary blood (drawn from the earlobe) one can investigate both the onset of anaerobic-lactic energy production during increasing work load (aerobic-anaerobic transition) and the maximal amount of anaerobic energy formation during short periods of exhausting work. In this way, using suitable work load protocols, the aerobic capacity (endurance capacity) on the one hand and the anaerobic capacity on the other hand can be determined. Therefore the most prominent components of energy production in working muscle and physical performance in general are accessible by measurement of blood lactate concentration level.

Adenosine Triphosphate↗