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Bone mineral density in athletes during and after career: a comparison between loaded and unloaded skeletal regions.

Bone mineral density (BMD) was measured in the upper part of the skull, the femoral neck, and the total body by dual energy X-ray absorptiometry in 56 male and 33 female active athletes, 18-40 years of age, together with 64 male ex-weight lifters, 35-79 years of age. The active athletes were compared with 41 male and 54 female controls, the ex-weight lifters with 133 male controls. The purpose of the study was to see if BMD in the upper part of the skull, a region virtually unaffected by physical load, is different in athletes and controls. The male athletes had a 3% higher BMD for the total body and 12% for the hip, whereas the BMD for the upper part of the skull was 10% lower than controls. Corresponding BMD values for the female athletes were 4% higher for total body and 10% for the femoral neck, and the upper part of the skull was 7% lower than in controls. After 65 years of age there was no difference in BMD comparing ex-weightlifters and controls. Using a constructed ratio BMD total body to BMD upper part of the skull, the ex-weight lifters had 10% higher values also after age 65. It appears that bone mass is higher in weight-loaded areas and lower in an unloaded region, such as the upper part of the skull, in exercising athletes. After cessation of the active career, the bone mass approaches that of the controls and after 65 years of age, no difference was found comparing ex-weight lifters and controls. Due to the apparent bone mass shift from unloaded skeletal regions to loaded skeletal regions that seems to take place in active athletes, the constructed ratio, BMD total body to BMD upper part of the skull, seems to discriminate the influence on the skeleton in a more sensitive way than measuring the BMD in defined skeletal regions on their own. By using this constructed ratio, the influence on bone mass of physical exercise early in life is also detectable at older ages.

Adult↗

Left ventricular remodeling and aortic distensibility in elite power athletes.

The aim of this study was to determine left ventricular (LV) morphology and aortic function in power athletes and to compare them with normal subjects. Thirty-two elite male wrestlers and 15 age-matched healthy male controls were included. All subjects underwent echocardiographic examination. Measurements included LV cavity dimension at systole and diastole, wall thickness, diastolic parameters, and aortic diameter, 3 cm above aortic valve, at systole and diastole. Left ventricular mass and mass index were found to be higher in the athletes than in control subjects. The aortic distensibility index was found to be reduced in the athletes compared with controls (2.53 +/- 0.91 vs 3.94 +/- 1.77 cm(2) dyne(-1) 10(-6), P = 0.003), while the aortic stiffness index was significantly higher in the athletes than in controls (9.12 +/- 3.23 vs 6.65 +/- 2.35, P = 0.02). However, LV end-systolic wall stress was lower in the athletes than in controls. Furthermore, transmitral early ( E) and late ( A) peak velocity, peak velocity of the myocardial systolic wave ( S(m)), and early ( E(m)) and atrial ( A(m)) diastolic waves at the inferior wall were higher in the athletes than in controls. Reduced aortic distensibility in elite power athletes may be one of the cardiovascular adaptation factors which affect LV hypertrophy.

Adult↗

PPARalpha gene variation and physical performance in Russian athletes.

Peroxisome proliferator-activated receptor alpha (PPARalpha) regulates genes responsible for skeletal and heart muscle fatty acid oxidation. Previous studies have shown that the PPARalpha intron 7 G/C polymorphism was associated with left ventricular growth in response to exercise. We speculated that GG homozygotes should be more prevalent within a group of endurance-oriented athletes, have normal fatty acid metabolism, and increased percentages of slow-twitch fibers. We have tested this hypothesis in the study of a mixed cohort of 786 Russian athletes in 13 different sporting disciplines prospectively stratified by performance (endurance-oriented athletes, power-oriented athletes and athletes with mixed endurance/power activity). PPARalpha intron 7 genotype and allele frequencies were compared to 1,242 controls. We found an increasing linear trend of C allele with increasing anaerobic component of physical performance (P=0.029). GG genotype frequencies in endurance-oriented and power-oriented athletes were 80.3 and 50.6%, respectively, and were significantly (P<0.0001) different compared to controls (70.0%). To examine the association between PPARalpha gene variant and fiber type composition, muscle biopsies from m. vastus lateralis were obtained and analyzed in 40 young men. GG homozygotes (n=25) had significantly (P=0.003) higher percentages of slow-twitch fibers (55.5+/-2.0 vs 38.5+/-2.3%) than CC homozygotes (n=4). In conclusion, PPARalpha intron 7 G/C polymorphism was associated with physical performance in Russian athletes, and this may be explained, in part, by the association between PPARalpha genotype and muscle fiber type composition.

Adult↗

Atrial automaticity and atrioventricular conduction in athletes: contribution of autonomic regulation.

Little is known about the sinoatrial automatism and atrioventricular conduction of trained individuals who present a normal resting electrocardiogram. We used transesophageal atrial stimulation, a minimally invasive technique, to evaluate aerobically trained athletes (n = 10) and sedentary individuals (n = 10) with normal resting electrocardiograms, to test the hypothesis that parasympathetic tone, as detected by heart rate variability, could be associated with changes in sinoatrial automatism and atrioventricular conduction. Corrected sinus node recovery time tended to be longer in athletes than in sedentary individuals, but this difference did not reach statistical significance. The Wenckebach point occurred at a lower rate in athletes than in the controls. Over a 24-h period of measurement, the mean RR interval was longer in the athletes than in the sedentary individuals. The mean square root of successive differences (rMSSD) tended to be higher in athletes than in controls, but this difference did not reach statistical significance. There was a moderate correlation (r = 0.48, P < 0.05) between the index of atrioventricular conduction, the rate at the Wenckebach point, and the logarithmically transformed rMSSD. Thus, as a corollary to its effects on the sinus node, where increased parasympathetic tone, decreased sympathetic tone, and non-autonomic components may contribute to sinus bradycardia, it is possible that athletic training may also induce intrinsic adaptations in the conduction system, which could contribute to the higher prevalence of atrioventricular conduction abnormalities observed in athletes.

Adult↗

Athlete's heart electrocardiogram mimicking hypertrophic cardiomyopathy.

Highly trained athletes show a variety of electrocardiographic (ECG) changes, including a striking increase of R or S wave voltage, either flat or deeply inverted T waves, and deep Q waves, that suggest the presence of structural cardiovascular disease, such as hypertrophic cardiomyopathy or arrhythmogenic right ventricular cardiomyopathy, which represent the most common causes of sudden death in young competitive athletes. Despite a number of previous observational surveys, the determinants and clinical significance of these abnormal ECG patterns in trained athletes are still uncertain. Therefore, ECG patterns were compared with cardiac morphology (by echocardiography) in a large population of 1005 athletes, who were engaged in a variety of 38 sporting disciplines. We found abnormal ECGs in 40% of our athletes, but structural cardiac diseases were identified in only 5%. In the absence of cardiac disease, other determinants were recognized as responsible for abnormal ECG patterns, including the extent of morphologic cardiac remodeling, participation in an endurance type of sport, and male gender. Finally, a small but important subset of athletes showed striking ECG abnormalities that strongly suggested the presence of cardiovascular disease in the absence of pathologic cardiac conditions or morphologic changes, suggesting that these ECG alterations may be the consequence of athletic conditioning itself.

Cardiomyopathy, Hypertrophic↗

Symmetric cardiac enlargement in highly trained endurance athletes: a two-dimensional echocardiographic study.

Twelve highly trained male endurance athletes and 12 normally active matched control subjects were studied by two-dimensional and M-mode echocardiography to evaluate changes in the right and left heart chambers associated with intense aerobic training. Maximal oxygen uptake, a measure of cardiovascular fitness, ranged from 62.1 to 82.6 ml/kg/min in the athletes and from 33.0 to 49.3 ml/kg/min in the control subjects (p less than 0.001). The athletes had significantly greater left ventricular wall thickness (p less than 0.01), left ventricular chamber area (p less than 0.005), left atrial area (p less than 0.01), right ventricular chamber area (p less than 0.002), right ventricular wall thickness (p less than 0.05), and right atrial area (p less than 0.01). Proportionality of cardiac chamber enlargement in the athletes was shown by similar ratios of both right-to-left ventricular areas and right-to-left atrial areas in the two groups. Left ventricular contractility was not significantly different between groups. Cardiac enlargement in endurance athletes enables a greater stroke volume for the performance of sustained, intense exercise; hypertrophy of the chamber walls normalizes wall stress. These changes occur symmetrically in both right and left cardiac chambers in the endurance athlete, reflecting bilateral hemodynamic loading. The symmetry of the endurance athlete's cardiac enlargement differs from most pathologic conditions which have heterogeneous effects on specific cardiac chambers.

Adult↗

Effects of exercise on left ventricular diastolic performance in trained athletes.

Dynamically trained athletes develop increased left ventricular (LV) wall mass. To determine whether this increased wall mass impaired characteristics of LV diastolic filling, serial Doppler echocardiograms were obtained from 10 trained athletes (mean age 21 years) at rest, during supine graded bicycle exercise and during recovery at heart rates of 80, 120 and 140 beats/min, respectively. Similar studies were obtained in 10 age-matched control subjects. Studies at rest showed significant increases in athletes in LV end-diastolic dimension and indexed LV wall mass. Differences in peak filling rates and in normalized peak lengthening rates between athletes and control subjects were seen at heart rates of 140 beats/min during exercise and recovery. Differences in Doppler-derived variables between athletes and control subjects were seen in total time-velocity integral, early peak filling velocity and E/A ratio. In athletes, time-velocity integral was increased during recovery at heart rates of 120 beats/min and 80 beats/min, early peak filling velocity was increased during exercise at 120 beats/min and during recovery at 120 beats/min and 80 beats/min, and E/A ratio was higher at all heart rates during both exercise and recovery. Although no significant differences were found in LV diastolic filling indexes at rest, a significant enhancement was found in these parameters in dynamically trained athletes during exercise, particularly at higher levels of dynamic exercise.

Adult↗

Sudden death in young competitive athletes: clinicopathologic correlations in 22 cases.

PURPOSE: To investigate the pathologic substrates of sudden death in young competitive athletes. PATIENTS AND METHODS: Twenty-two cases of sudden death in young competitive athletes occurring in the Veneto region (northern Italy) in the period January 1979 to December 1989 were studied by postmortem examination. The athletes included 19 males and three females, ranging in age from 11 to 35 years (mean, 23 years). RESULTS: In 18 cases, sudden death occurred during (16 cases) or immediately after (two cases) a competitive sport activity. In 10 subjects, sudden death was apparently the first sign of disease. Postmortem examination disclosed that this fatality was due to arrhythmic cardiac arrest in 17 cases; among these, right ventricular cardiomyopathy, also known as "right ventricular dysplasia," was the most frequently encountered cardiovascular disease (six cases), followed by atherosclerotic coronary artery disease (four cases), conduction system pathology (three cases), anomalous origin of right coronary artery from the wrong aortic sinus (two cases), and mitral valve prolapse (two cases). In two athletes, the abrupt lethal complication was "mechanical" and consisted of pulmonary embolism and rupture of the aorta; in three athletes, death was due to a cerebral cause. All athletes with right ventricular cardiomyopathy died during effort, and most had a history of palpitations and/or syncope. Whenever available, electrocardiographic (ECG) tracings showed inverted T waves in precordial leads and/or left bundle branch block ventricular arrhythmias. CONCLUSIONS: Clinicopathologic correlations indicate that in the Veneto region of Italy, right ventricular cardiomyopathy is not so rare among the cardiovascular diseases associated with the risk of arrhythmic cardiac arrest, and seems to account for the majority of cases of sudden death in young athletes; this disorder can be suspected during life on the basis of prodromal symptoms and ECG signs.

Adolescent↗

Prevalence of diabetes, hypertension, and ischemic heart disease in former elite athletes.

Diabetes, hypertension, and ischemic heart disease are less frequent among physically active subjects. The aim of the present national population-based study was to compare the prevalence of these three diseases between former Finnish elite athletes and referents. The subjects consisted of surviving former male athletes who represented Finland between the years 1920 and 1965 at least once in international competitions and referents who at the age of 20 were classified as completely healthy at a medical examination, and who responded to a questionnaire in 1985 (athletes, n = 1,282; referents n = 777). In 1985, they completed a questionnaire with medical, life-style, and psychosocial items; at that time, the leisure physical activity was greater in previous athletes than in referents. The presence or absence of the three diseases was identified from the questionnaire or from at least one of three registers: Finnish hospital inpatient discharge register, reimbursable medication register, and disability pension register. When compared with referents, both endurance and mixed-sports athletes had lower age-adjusted odds ratios (ORs) for all studied diseases. Compared with referents, power-sports athletes had a higher risk for high body mass index (BMI) but a lower risk for ischemic heart disease. Subjects with high BMI had an increased risk for all three diseases. Smokers had a higher risk for diabetes and ischemic heart disease compared with those who were never smokers. After adjustments for age, BMI, smoking history, and occupational group, compared with referents, former endurance athletes had the lowest ORs for diabetes (OR 0.24; 95% confidence interval, 0.07 to 0.81) and ischemic heart disease (OR 0.33; 0.18 to 0.61).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Plasma antioxidant activity and cutaneous microvascular endothelial function in athletes and sedentary controls.

Aging is associated with endothelial dysfunction in both conduit arteries and peripheral microcirculation. Furthermore, aging is associated with an increased susceptibility to free radical mediated tissue damage. The aim of this study was to assess the relationship between age, regular aerobic-endurance training, plasma antioxidant activity and microcirculatory skin blood flow in healthy individuals. Thirty-six male athletes (range: 22-74 years; VO2max 54.3 +/- 5.2 ml/kg/min) and 36 age-sex-matched sedentary controls (range: 20-75 years; VO2max 34.2 +/- 3.4 ml/kg/min) were studied. Each group was divided into a younger (<30 years) and an older (>60 years) subgroup. Hand and foot baseline and stimulated skin blood flow (SBF) was measured by laser-Doppler flowmetry. Plasma free radicals antioxidant capacity against both peroxyl and hydroxyl radicals was also evaluated as Total Oxyradical Scavenging Capacity (TOSC) units. Baseline SBFs were not significantly different between athletes and sedentary groups, while plasma TOSC values against peroxyl radicals (18.4 +/- 3.1 vs. 13.8.0 +/- 3.4 units/ml, P < 0.001) and hydroxyl radicals (8.7 +/- 2.5 vs 4.9 +/- 2.3 units/ml, P <0.001) was higher in athletes. Hand SBF after heating and ischemia and foot SBF after heating were higher in athletes (P <0.0001) than in the sedentary group. In the sedentary groups, the lowest tertile of age had higher plasma TOSC values than the highest tertile of age (ROO- 18.2 +/- 2.2 vs 8.8 +/- 1.4 units/ml; HO- 9.2 +/- 1.3 vs 3.7 +/- 0.5 units/ml, P < 0.001). Among athletes, the lowest and the highest tertile of age did not show significantly different plasma TOSC (young: ROO- 20.3 +/- 1.5 and HO-: 9.7 +/- 1.4 units/ml; older: ROO-: 17.1 +/- 1.3 and HO-: 9.0 +/- 0.8 units/ml, n.s.). Resting SBF was similar in all the subgroups; stimulated SBFs were lower in both subgroups of untrained respect to trained individuals (P <0.001). In the sedentary subjects, SBF was inversely related to age (r = -0.63; P <0.0001) and directly related to TOSC against peroxyl (r = 0.59, P <0.001) and hydroxyl radicals (r = 0.47, P <0.01). In athletes SBF was related only to VO2max (r = 0.36; P <0.05) and TOSC vs ROO. (r = 0.41, P <0.01). In conclusion, these results suggest that regular physical activity is associated with a better microvascular endothelial function in older athletes probably due to increased antioxidant defenses.

Adult↗

Ambulatory blood pressure monitoring and endothelium-dependent vasodilation in the elderly athletes.

AIM: Regular exercise is a key component of cardiovascular risk prevention strategies, because it is associated with a variety of beneficial metabolic and vascular effects that reduce mortality and the incidence of cardiovascular adverse events. Endothelium plays an important role in the local regulation of vascular tone and structure, mainly by nitric oxide (NO) synthesis and action. Aim of the present study was to evaluate in elderly athletes the effect of regular aerobic exercise on arterial blood pressure (BP) and on endothelium-dependent flow-mediated dilation (FMD) of the brachial artery. METHODS: The study population included 30 male subjects (mean age 65.6+/-5.6 years), who had practiced endurance running at a competitive level for at least 40 years, and 28 age- and sex-matched subjects (mean age 64.5+/-4.5 years) with sedentary lifestyle and free of cardiovascular disease. Athletes and control subjects underwent standard 12-lead ECG, clinic BP, 24-h ambulatory BP monitoring and endothelium-dependent FMD and endothelium-independent response to glyceryl trinitrate (GTN), 400 microg, in the brachial artery by high-resolution ultrasonography. RESULTS: Systolic clinic and ambulatory 24-h BP were significantly lower in the athletes, than in the controls (P<0.001, respectively). Systolic and diastolic 24-h BP variability, when assessed either by the standard deviation (S.D.), or by the coefficient of variation (CV), were also significantly lower in the athletes (P<0.01). The athletes also had a lower 24-h, day-time and night-time heart rate (HR) (P<0.01), as well as a lower HR variability (P<0.01). As regards circadian BP change, the %Delta was statistically significant greater in athletes (P<0.05). Elderly athletes showed higher FMD than elderly sedentary subjects (P<0.001), whereas no differences were shown in the response to GTN. CONCLUSIONS: Our results, suggest that long-term physical activity can counteract the age-related endothelial dysfunction that characterizes sedentary aging, preserving the capacity of the endothelium-dependent vasodilation and reduces BP values improving arterial pressure control.

Aged↗

Seasonal allergy and seasonal decrements in athletic performance.

Allergic diseases are common in all age groups and locations around the world. In the United States, allergic diseases affect 20 to 40 million people annually, including 10% to 30% of adults and close to 40% of children. An estimated 15 million people in the United States have been diagnosed as having asthma, with this number on the rise. Concomitant asthma affects 67% of patients who have allergic rhinitis. As a result of the increase in ventilation during exercise, athletes in particular experience significant symptoms of allergy triggered by exposure to aeroallergens. The allergic response causes nasal and conjunctival congestion, tearing, breathing difficulties, pruritus, fatigue, and mood changes, which affect athletic performance. Systemic symptoms of anaphylaxis from allergy, although rare, can be life threatening. Several decades ago it was inconceivable that an athlete who had asthma could perform competitively, let alone win Olympic gold medals. Today, with proper diagnosis, education, and optimal therapeutic management, the allergic athlete can achieve great strides in all sports endeavors. To avoid seasonal allergic flares and maximize performance, the physician providing care for an athlete who has seasonal allergies must be aware of the climatic patterns of aeroallergen expression, and adjust exercise and pharmacologic regimens accordingly. This article summarizes the effects of allergic disease on exercise and highlights the challenges that seasonal allergy place on athletic performance. Doping considerations grant additional complexity to this issue and underscore the need for a competent, skillful, informed, and ethical approach to treating seasonal allergy in the competitive athlete.

Adolescent↗

Disordered eating among a multi-racial/ethnic sample of female high-school athletes.

PURPOSE: To determine the prevalence of disordered eating (DE) attitudes and behaviors in a multi-racial/ethnic sample of female high-school athletes. METHODS: The Eating Disorders Examination Questionnaire (EDE-Q) was administered to 453 suburban female high-school athletes (277 Caucasian, 103 Latina, and 73 African American; aged 15.7 +/- 1.2 years) during their competitive season. RESULTS: The prevalence of DE in the total sample was 19.6%; among the three ethnic groups, prevalence estimates were 19.2%, 18.4%, and 23.3% for African Americans, Caucasians, and Latinas, respectively. The prevalence estimates of binge eating (12.6%) and vomiting (7.8%) were significantly higher in Latinas as compared to African Americans (5.5%, 1.4%) and Caucasians (5.4%, 2.2%; chi2 p < .05). The prevalence of diuretic and laxative use was low among all athletes (< 3%), with no differences by ethnicity (p > .05). After adjusting for body mass index (BMI) and sport, analysis of covariance (ANCOVA) with Bonferroni post-hoc pair-wise comparisons indicated that Caucasian and Latina athletes scored higher than African Americans on all EDE-Q subscales except eating restraint, which was higher only in Caucasians compared to African Americans (p = .001-.046). CONCLUSIONS: Caucasian and Latina female high-school athletes may be at greater risk for eating disorders than their African American peers. Furthermore, Latina athletes may be particularly at risk for binge-eating disorder. Culturally-sensitive behavioral interventions targeted specifically for high-school athletes are needed to reduce the risk of eating disorders and associated long-term health consequences in this population.

Adolescent↗

Body composition in adolescent athletes.

This article has set out to provide basic knowledge about body composition in athletic and nonathletic adolescents and young adults and to provide the practicing physician with methods of making body composition assessment. We suggest the physician approach the adolescent athlete who requests information about body composition in the following way: 1. Calculate the ideal body weight. 2. Estimate the percentage of body fat, realizing the errors associated with each method. If a body composition laboratory is available, use that equipment. In the absence of this equipment, we recommend the equations of Slaughter et al, given earlier. 3. The athlete should be given a range of percentage of body fat values measured in other athletes of the same gender and sport. Health and performance should be monitored as the athlete attempts to achieve or maintain body composition in this range. 4. If the athlete has an interest in altering body composition, then recommend the athlete seek the advice of a professional who has expertise in nutrition and physiology.

Adipose Tissue↗

Heat illness. Fluid and electrolyte issues for pediatric and adolescent athletes.

The primary mechanism for maintaining normal body temperature during physical exercise in the heat is the evaporation of sweat. With profuse sweating, water loss far exceeds electrolyte loss. Rigorous exercise in the heat places the athlete at risk for thermoregulatory dysfunction from dehydration. Because children are inherently less efficient thermoregulators than adults, they are at even greater risk for heat illness. The three primary syndromes of heat illness are heat cramps, heat exhaustion, and heat stroke. Treatment of heat illness is based on reduction of body temperature and rehydration. Heat stroke is a true medical emergency with a high mortality rate; immediate reduction of body temperature is critical to the survival of these patients. Prevention of heat illness is based on reducing known risk factors. Physical activity should be modified in the face of high ambient temperature and humidity. The athlete should begin exercise well hydrated; frequent consumption of cold water during exercise decreases likelihood of significant dehydration. After exercise, the athlete should continue drinking to replace fluid losses. Clothing should be lightweight; the more skin exposed, the greater the available evaporative surface. A preseason conditioning program, when combined with an 8- to 14-day period of acclimatization, further reduces the risk of heat injury. Although athletes engaged in endurance sports may benefit from drinking carbohydrate/electrolyte-containing solutions, for the majority of young athletes, cold water remains the preferred choice for fluid replacement during exercise. The relatively greater body surface area of young athletes also places them at risk for hypothermia. Special attention should be given when these athletes are competing under cold environmental conditions.

Adolescent↗

High prevalence of right ventricular involvement in endurance athletes with ventricular arrhythmias. Role of an electrophysiologic study in risk stratification.

BACKGROUND: Electrocardiographic abnormalities and premature ventricular contractions are common in athletes and are generally benign. However, the specific outcome of high-level endurance athletes with frequent and complex ventricular arrhythmias is unclear. Also, information on the predictive accuracy of different investigations in this subgroup is unknown. RESULTS: We report on 46 high-level endurance athletes with ventricular arrhythmias (45 male; median age 31 years) followed-up for a median of 4.7 years. Eighty percent were cyclists. Hypertrophic cardiomyopathy or coronary abnormalities were present in < or =5%. Eighty percent of the arrhythmias had a left bundle branch morphology. Right ventricular (RV) arrhythmogenic involvement (based on a combination of multiple criteria) was manifest in 59% of the athletes, and suggestive in another 30%. Eighteen athletes developed a major arrhythmic event (sudden death in nine, all cyclists). They were significantly younger than those without event (median 23 years vs 38 years; P=0.01). Outcome could not be predicted by presenting symptoms, non-invasive arrhythmia evaluation or morphological findings at baseline. Only the induction of sustained ventricular tachycardia (VT) or ventricular fibrillation (VF) during invasive electrophysiological testing was significantly related to outcome (RR 3.4; P=0.02). Focal arrhythmias were associated with a better prognosis than those due to reentry (P=0.02) but the mechanism could be determined in only 22 (48%). CONCLUSIONS: Complex ventricular arrhythmias do not necessarily represent a benign finding in endurance athletes. An electrophysiological study is indicated for risk evaluation, both by defining inducibility and identifying the arrhythmogenic mechanism. Endurance athletes with arrhythmias have a high prevalence of right ventricular structural and/or arrhythmic involvement. Endurance sports seems to be related to the development and/or progression of the underlying arrhythmogenic substrate.

Adolescent↗

Iron status of adolescent female athletes.

To determine whether or not adolescent female athletes were more in need of routine dietary iron supplements than their nonathlete peers, the iron status of 32 athletes and 31 nonathletes was assessed. The athletes were track-team members in the middle of their season. Hemoglobin, transferrin saturation, and serum ferritin were evaluated, as well as the amount of dietary iron intake. Athletes had significantly lower serum ferritin levels and transferrin saturation (less than 16%) than did nonathletes. Black girls were significantly lower than whites on all three values. There were also a greater number of black girls deficient in serum ferritin. We conclude that athletes may be at greater risk for iron deficiency and, therefore, for iron deficiency anemia; and black adolescents may have an increased prevalence of iron deficiency, with black female athletes being at potentially greater risk for iron deficiency and its possible consequences. We recommend a more sensitive assessment of iron status in female athletes.

Adolescent↗

Few oligo-amenorrheic athletes have vasomotor symptoms.

OBJECTIVE: To assess whether women with athletic oligo-amenorrhea have vasomotor symptoms. MATERIAL AND METHODS: A mailed questionnaire was sent to 252 female athletes about vasomotor symptoms. Identical questions were also mailed to 1523 peri- and postmenopausal women. RESULTS: The prevalence of vasomotor symptoms was low in female athletes with oligo- and amenorrhea and similar to that found in athletes with regular menstruations. The prevalence was significantly lower than in menopausal women. Although more than a third of the menopausal women had hormone replacement therapy, 30% of them still had vasomotor symptoms at least every week compared with only 2% of the oligo-amenorrheic athletes. CONCLUSION: Vasomotor symptoms are very uncommon in oligo-amenorrheic athletes, although many of them are hypoestrogenic. It was suggested that one factor contributing to these symptoms around menopause is low hypothalamic activity of beta-endorphins, which makes the thermoregulatory centre labile. On the other hand, supraphysiological activity in hypothalamic beta-endorphins may cause the oligo-amenorrhea in athletes, but may stabilise the thermoregulatory centre and thus prevent hot flushes.

Adult↗