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A physiological comparison of forward vs reverse wheelchair ergometry.

The purpose of this study was to compare metabolic and cardiopulmonary responses for forward wheelchair ergometry (FOR) and reverse wheelchair ergometry (REV) at equal power outputs (PO) levels. Moderately active able-bodies (N = 21) subjects exercised at 3-min stages at PO levels of 15, 20, 25, and 30 W for each mode of ergometry. Oxygen uptake (VO2), pulmonary ventilation (VE), respiratory exchange ratio (RER), heart rate (HR), percent net mechanical efficiency (ME), revolutions per minute (RPM) and strikes per minute (SPM) were determined at each PO level. With the exception of RER, all the physiological responses (VO2, VE, and HR) were higher for FOR exercise (P < 0.05) than REV exercise. ME increased with PO and was higher (P < 0.05) for REV than FOR at each PO level. SPM values for the REV were lower (P < 0.01) by almost half of that for the FOR exercise, although RPM remained constant between modes during all four stages. In general, these data suggest that reverse wheelchair ergometry is physiologically more efficient than conventional wheelchair ergometry and should be studied further as an alternative method for wheelchair ambulation.

Adult↗

Exercise testing and training of persons with dysvascular amputation: safety and efficacy of arm ergometry.

Recent studies indicate that most persons with dysvascular amputation also have moderate to severe cardiovascular disease with impairment in functional capacity. This may limit the ability to achieve optimal function with their prosthesis because of inadequate conditioning. We developed an exercise testing and training program using arm ergometry in conjunction with standard rehabilitation for persons with acute dysvascular amputation who were profoundly deconditioned after complicated perioperative courses. The program consisted of daily arm ergometry, performed on an interval basis, at an intensity individually optimized through exercise testing. Twenty-five patients, with a mean age of 63 years, completed the inpatient program with pretest and discharge work performance assessment. There was no significant difference between pretest and discharge assessment of baseline or peak heart rate, systolic blood pressure, diastolic blood pressure, or Borg rating of perceived exertion. Peak systolic blood pressure was elevated at discharge compared to admission testing (p less than .04). Heart rate responses were decreased during the early stages of testing when comparing discharge telemetry to admission findings. The duration of exercise increased from 12.6 minutes to 16.3 minutes (p less than .0004), and the maximum work output increased from 17.1 watts to 23.5 watts (p less than .0004). There was no significant morbidity associated with either arm ergometry testing or the exercise program. We conclude that arm ergometry testing and training is a safe and effective method for improving the efficiency of arm work in the patient with acute dysvascular amputation.

Aged↗

Detraining from total body exercise ergometry in individuals with spinal cord injury.

This study was designed to investigate the effects of detraining that occurred during an 8 week period of muscular inactivity following a 12 week training program of artificial computerized functional electrical stimulation cycle ergometry (CFES LE) and arm ergometry. Six spinal cord injured male individuals were followed through an 8 week detraining period that was preceded by a 12 week exercise program including CFES LE and arm ergometry. Maximal graded exercise tests were completed and measurements of peak oxygen consumption (VO2), heart rate (HR), ventilation (VE) workload, and creatine kinase were taken. Testing occurred at initial training (0T), after 12 weeks of training (12T), and after 8 weeks of detraining (DT). After the training program, peak VO2 increased significantly from 0.562 +/- 0.126 (0T) to 1.021 +/- 0.247 l/min (12T, P < 0.05). After DT, peak VO2 decreased to 0.791 +/- 0.216 l/min, which was lower than 12T (P < 0.05), yet higher than 0T (P < 0.05). After DT, peak workoad had decreased from 0.675 +/- 0.203 (12T) to 0.32 +/- 0.203 kp (P < 0.05), which was not different than 0T. Creatine kinase levels were significantly lower both at 12T and DT compared to 0T (P < 0.05). In addition, this training program induced linear increases in both VO2 and HR with workload, which were retained after DT. These increases did not reach statistical significance. however. No apparent relationship existed between these values at baseline. There were no significant differences in submaximal or peak HR of VE between the three testing periods. The results indicate that both peripheral muscular adaptations and central distribution adaptations in SCI individuals are partially maintained following 8 weeks of DT from CFES LE and arm ergometry.

Adaptation, Physiological↗

Lower heart rate response to ergometry rowing than to treadmill running in older men.

For older people exercise intensity is often determined based on heart rate (HR) or the percentage of maximal HR (%HRmax). This study evaluated oxygen uptake (O2) and HR during ergometry rowing (combined arm and leg; sitting exercise) and treadmill running (leg; upright exercise) for 15 older people [age, (mean +/- SD) 62 +/- 3 years]. The HR was lower during ergometry rowing than during treadmill running at a blood lactate concentration of 4 mmol l-1 (151 +/- 4 beat min-1 versus 160 +/- 5 beat min-1, P<0.05) and at a maximal effort (171 +/- 7 beat min-1 versus 177 +/- 7 beat min-1, P<0.05). This was the case although the O2 was higher during ergometry rowing than during treamill running both at a blood lactate concentration of 4 mmol l-1 (3.0 +/- 0.4 l min-1 versus 2.7 +/- 0.4 l min-1, P<0.05) and at a maximal effort (3.4 +/- 0.4 l min-1 versus 3.1 +/- 0.3 l min-1, P<0.05]. %HRmax and %HR reserve were lower during ergometry rowing than during treadmill running. The results suggest that, in prescription of rowing for older people, the relation between HR and O2 for rowing and the attenuated HR response to rowing should be taken into consideration.

Ergometry↗

Comparison and cross-validation of cycle ergometry estimates of VO2max.

The purpose of this study was to examine the accuracy and quality of a series of cycle ergometry tests used to estimate maximal aerobic capacity (VO2max). One-hundred nine males and 71 females participated in five tests: a maximal exercise test on the treadmill, three Air Force Cycle Ergometry Tests (AF1, AF2, AF3), and a Progressive cycle ergometry test (PROG). The VO2max value measured during the treadmill test was compared with the VO2max estimates from each ergometry test. The AF1, AF2, and AF3 results were used to determine reliability. The mean estimated VO2max for each, except the PROG, was significantly different (P < 0.05) from the measured VO2max. The AF1 and AF-avg tests underestimated VO2max by 8.0 and 6.5 mL.kg-1.min-1, respectively, values which were 17.3 and 14.9% lower than the measured VO2max. Correlation coefficients between estimated VO2max values and the measured VO2max ranged from 0.59 to 0.80 with SEE ranging from 1.8 to 2.2 mL.kg-1.min-1. The PROG had the greatest sensitivity (82.2%), while the AF2 had the greatest specificity (70.6%). Additionally, 23.4% of the VO2max estimates from the PROG were within +/- 5% of the measured VO2max compared with 9.9% for the average of the Air Force tests. The intraclass correlation coefficient for the three AF tests or the reliability for a single AF test was 0.26. In sum, the Air Force test provides an estimate of VO2max, and hence aerobic capacity, which is unreliable and underestimates the true VO2max by approximately 15%.

Adult↗

Cardiorespiratory responses to standing arm ergometry in patients with ischemic heart disease. Comparison with the results of treadmill exercise.

To compare cardiorespiratory responses to standing arm ergometry and treadmill exercise, two graded exercise stress tests were performed in 30 patients with ischemic heart disease (IHD). Cardiac catheterization and expired gas analyses were also done. Standing arm ergometry was discontinued because of arm fatigue in 15 (50%) patients, whereas treadmill exercise was stopped due to leg fatigue in 8 (27%) patients. Maximal increase in rate-pressure product and oxygen uptake, and magnitude of ST-segment depression during standing arm ergometry were significantly smaller (p less than 0.01, p less than 0.01 and p less than 0.05, respectively) than those during treadmill exercise. Furthermore correlations of maximal change in rate-pressure product, oxygen uptake and extent of ST-segment depression were not close between the two exercise tests (r = 0.76, r = 0.67 and r = 0.54, respectively). Our results indicate that the ability to detect IHD with standing arm ergometry is lower than that with treadmill exercise and that it is not possible to predict accurately one's capacity for arm exercise from the treadmill exercise test.

Adult↗

Kinematics and myoelectric activity during stair-climbing ergometry.

Stair-climbing ergometry has become a popular mode of aerobic exercise, yet little research on the biomechanics of stair-climbing ergometry has been reported. This study was conducted to evaluate kinematics and myoelectric activity in major agonist muscle groups over 22 minutes of stair-climbing ergometry at 75% of each subject's predicted VO2max. Data were captured over 30-second intervals beginning at 3.5, 9.5, 15.5, and 21.5 minutes of exercise. Multivariate analysis of variance for the kinematic variables revealed a significant (p < 0.05) change in hand placement from a higher to a lower position over time. Multivariate analysis of variance for the electromyographic values revealed a significant (p < 0.05) decrease in activity in the gluteus maximus and vastus lateralis between 3.5 and 9.5 minutes, representing an adjustment to the exercise workload. The normal range of motion and trunk angle values documented should prove helpful to fitness and rehabilitation specialists in prescribing stair-climbing ergometry.

Adult↗

A comparison of maximum oxygen uptake determination by bicycle ergometry at various pedaling frequencies and by treadmill running at various speeds.

Tests of performance on a bicycle ergometer have routinely been standardized with pedaling frequencies of up to 60 rpm. Only rarely have higher speeds been used. It may be hypothesized than a higher VO2, more closely approximating the maximum attainable by treadmill running, may be achieved in bicycle ergometry if higher pedal frequencies are used so that premature fatigue of the leg musculature does not obscure the comparison. Even in treadmill running it remains equivocal which combination of speed and grade of running will produce a maximum VO2. Five male subjects performed maximally at pedal frequencies of 60, 80, 100 and 120 rpm and running speeds of 6.0, 6.5, 7.0, and 7.5 mph, on a bicycle and treadmill respectively. Power output on the bicycle and increasing grade sequence on the treadmill were maintained constant for each speed investigated. The highest VO2 attained in each test was measured and compared both within and between the modes of testing. It was confirmed that peak VO2 during bicycle ergometry is significantly less than VO2 max attained in treadmill running. Pedal frequencies of 80 and 100 rpm produced optimal VO2's in ergometry. No differences were noted between VO2's determined at any speed of treadmill running. Subjects preferred 60 or 80 rpm in ergometry and 6.0 and 7.0 mph in treadmill running; 120 rpm and 7.5 mph in bicycling and treadmill running, respectively, were generally disliked.

Humans↗

Attenuated cortisol response to psychological stress but not to CRH or ergometry in young habitual smokers.

Salivary cortisol and heart rate responses to a) psychological stress (public speaking and mental arithmetic), b) human corticotropin-releasing hormone (hCRH), and c) bicycle ergometry until exhaustion were investigated in 10 smokers and 10 nonsmokers. Compared to d), an injection of physiological saline, psychological stress as well as hCRH resulted in significant elevations of salivary cortisol levels in the total group. Ergometry workload induced only moderately enhanced cortisol concentrations. Profound changes in heart rates were observed following bicycle ergometry [+83 beats per minure (bpm)] and after the psychological stress (+29 bpm). hCRH injection increased heart rate by 5 bpm while heart rates dropped after saline administration (-2 bpm). Smokers showed an attenuated cortisol response to the psychological stressor. Mean cortisol increases reached only one third in smokers compared to nonsmokers. Similarly, cortisol levels in smokers tended to be lower after hCRH injection; however, this difference was not statistically significant. Cortisol responses to ergometry did not differ between the two groups. Likewise, heart rates did not reveal different profiles in any of the three stimulations in smokers compared to nonsmokers.

Adult↗

The effects of interelectrode distance on electromyographic amplitude and mean power frequency during incremental cycle ergometry.

The purpose of this study was to examine the effects of interelectrode distance (IED) on the relationships of absolute and normalized EMG amplitude and mean power frequency (MPF) versus power output during incremental cycle ergometry. Eleven adults (mean +/- S.D. age = 24.2 +/- 2.6 y; V(O2max) = 49.4 +/- 8.3 ml kg(-1) min(-1)) performed incremental cycle ergometry tests. Surface EMG signals were recorded simultaneously from bipolar electrode arrangements placed over the VL muscle with IEDs of 20, 40, and 60 mm. Polynomial regression analyses were used to describe the relationships for absolute and normalized EMG amplitude (muV(rms) and % max) and MPF (Hz and % max) versus power output (%max) for each subject at the three IEDs. In addition, separate one-way repeated measures ANOVAs were used to examine mean differences between the three IEDs for absolute and normalized EMG amplitude and MPF at power outputs of 80, 110, 140, and 170 W. The results of the polynomial regression revealed that the best fit model for each IED for the absolute and normalized EMG amplitude was linear for six of the 11 subjects and quadratic for five of the subjects. For EMG MPF, four of the 11 subjects exhibited significant relationships (linear or quadratic) across power outputs for at least one IED. The one-way repeated measures ANOVAs revealed significant mean differences between the IEDs for absolute EMG amplitude and MPF at 80, 110, 140, and 170 W. There were no significant mean differences, however, between the IEDs for normalized EMG amplitude or MPF at 80, 110, 140, and 170 W. The results of the study indicated that there were no consistent patterns of responses between individual subjects for EMG amplitude or MPF versus power output relationships for IEDs of 20, 40, and 60 mm during incremental cycle ergometry. The current findings supported the process of normalization for EMG amplitude and MPF data obtained during cycle ergometry when comparisons are made for different IEDs.

Adult↗

Long-term exercise training in persons with spinal cord injury: effects on strength, arm ergometry performance and psychological well-being.

STUDY DESIGN: Randomized controlled trial of exercise training in persons with spinal cord injury. OBJECTIVE: The purpose of this study was to examine the effects of 9 months of twice-weekly exercise training on strength, arm ergometry performance, and indices of psychological well-being and quality of life. SETTING: Centre for Health Promotion and Rehabilitation, McMaster University, Hamilton, Ontario, Canada. METHODS: Thirty-four men and women (aged 19-65 years) with traumatic spinal cord injury (C4-L1; ASIA A-D) of 1-24 years duration volunteered to participate, and were randomized into exercise (EX; n=21) and control (CON; n=13) groups. Twenty-three subjects (11 EX; 12 CON) successfully completed the 9-month study. Subjects were assessed for one repetition maximum (1RM) strength, arm ergometry performance, and several indices of quality of life and psychological well-being at baseline, 3, 6, and 9 months. RESULTS: At baseline, there were no significant differences between groups in age, submaximal arm ergometry performance, muscle strength, or psychological well-being. Following training, the EX group had significant increases in submaximal arm ergometry power output (81%; P<0.05), and significant increases in upper body muscle strength (19-34%; P<0.05); no significant changes occurred in CON. Participants in EX reported significantly less pain, stress and depression after training, and scored higher than CON in indices of satisfaction with physical function, level of perceived health and overall quality of life (P<0.05). Exercise adherence (per cent of prescribed sessions attended) in those subjects who completed the 9 months of training was 82.5%. CONCLUSIONS: These results demonstrate that long-term twice-weekly exercise training in this population is feasible, and results in significant gains in both physical and psychological well-being.

Adult↗

[Reproducibility of blood pressure measurements in hypertensives during and after ergometry].

On repeated measurement hypertensives have greater swings in resting blood pressure than those with normal pressures. In 20 untreated hypertensives (WHO stage I), average age 35.8 years, blood pressures were measured during and after ergometry (50-100 Watt) to see whether there were any variations during the day and whether repeat measurements were affected by adaptation. Blood pressure measurements repeated three times during ergometry, gave good agreement above 1 Watt/kg body weight, with a mean of 203/116 mm Hg at 8 a.m., 200/114 mm Hg at 10 a.m. and 203/113 mm Hg at 4 p.m., although resting blood pressures at times differed significantly. Even in patients with labile or borderline hypertension, blood pressure measurement during and after ergometry without exception made it possible to assign them to the hypertensive range, which would not have been possible or only to a limited extent at rest. Measurement of blood pressure during and after standardised ergometry is thus superior to resting blood pressure measurements in the identification of hypertensives.

Adaptation, Physiological↗

Effect of arm ergometry training on wheelchair propulsion endurance of individuals with quadriplegia.

Arm cycle ergometry has been shown to be an effective mode of cardiopulmonary training for individuals with spinal cord injuries. Arm cycle ergometry training results in an increased maximal oxygen uptake, exercise-induced bradycardia, and increased physical work capacity. Whether improvements in cardiopulmonary function parallel improvements in functional endurance, however, is unknown. In addition, no readily available tool to evaluate improvements in functional endurance has been identified. The purpose of this investigation was to determine the effects of arm cycle ergometry training on the wheelchair propulsion endurance of individuals with spinal cord injuries. Eight adult men with quadriplegia were evaluated before and after eight weeks of arm cycle ergometry training. A modified Cooper's 12-minute run-walk test, a sustained wheelchair propulsion task, was used to document improvements in functional endurance. Submaximal exercise heart rate, physical work capacity, and maximal oxygen uptake were used to document improvements in cardiopulmonary function. The results demonstrate that improvements in cardiopulmonary function parallel increases in wheelchair propulsion endurance. A sustained 12-minute wheelchair propulsion task is shown to be a readily available tool in the evaluation of functional endurance of individuals with spinal cord injuries. The improvements in wheelchair propulsion endurance should assist the individual in completing activities of school, work, recreation, and daily living.

Activities of Daily Living↗

Accuracy of prediction equations to estimate submaximal VO2 during cycle ergometry: the HERITAGE Family Study.

UNLABELLED: It was hypothesized that more accurate equations for estimating submaximal VO2 during cycle ergometry could be developed if more independent variables were used in the equation. PURPOSE: The purposes of this study were: (1) to develop new equations for estimating submaximal VO2 during cycle ergometry; and (2) to examine the accuracy of the newly developed equations and those of the American College of Sports Medicine (1995), Berry et al. (1993), Lang et al. (1992), Latin and Berg (1994), and Londeree et al. (1997). METHODS: Subjects (715 men and women, ages 16-65 yr, from the HERITAGE Family Study) completed a maximal cycle ergometry test, two submaximal trials at 50 W and 60% of VO2max, hydrostatic weighing, and stature and body mass measures before and after 20 wk of cycle ergometry training. Regression analysis generated prediction equations using pretraining data from the 60% trials. RESULTS: No equation with more independent variables was better than an equation that used only power output. This equation, HERITAGE-1, with only power output was cross-validated using the "jackknife" technique. Paired t-tests, mean differences, SEEs, and Es were used to compare the VO2 estimated by HERITAGE-1 and those of previously published equations with the measured VO2 at 60% of VO2max. CONCLUSIONS: HERITAGE-1 was slightly better than the equations of ACSM, Lang et al., and Latin and Berg using pretraining data but was not better when using post-training data. All four of these equations were superior to the equations of Berry et al. and Londeree et al.

Adolescent↗

Comparison of arm and leg ergometry in patients with moderate chronic obstructive lung disease.

Exercise testing is traditionally performed with leg exercise on either a treadmill or a bicycle ergometer. Many of these tests are terminated before dyspnoea occurs because of leg fatigue, arthritic pain, or claudication. A study was carried out to determine whether arm ergometry testing might serve as an alternative method to leg testing in eight patients with chronic obstructive lung disease. The patients had mild to moderate dyspnoea on exertion and required bronchodilator treatment. They had smoked an average of 62 pack years and had a mean FEV1 of 1.88 l. Arm and leg ergometry yielded similar levels of maximum ventilation (arm 47.2, leg 48.6 l/min), maximum heart rates (126 v 124 beats/min), maximum tidal volume (1.5 v 1.6 l), and respiratory rate (30 v 29 breaths/min); but maximum oxygen consumption (1120 v 966 ml/min), maximum power output (62 v 26 w), and oxygen pulse (9.1 v 7.8 ml/beat) were all higher with leg than with arm ergometry. In addition, ventilation and heart rate at a given level of oxygen consumption were higher for arm than for leg work during both submaximal and maximal exercise. It is concluded that arm ergometry offers an alternative testing method to leg testing in patients with moderate chronic obstructive lung disease.

Arm↗

Peak physiologic responses to arm and leg ergometry in male and female patients with airflow obstruction.

STUDY OBJECTIVE: To investigate differences in work capacity for the arms and legs in patients with moderate-to-severe COPD. DESIGN: Cross-sectional investigation. PATIENTS: One hundred twenty-four patients (90 men and 34 women) aged 45 to 81 years with moderate-to-very severe COPD. FEV(1) ranged from 0.70 to 2.79 L/min (FVC, 1.73 to 5.77 L; FEV(1)/FVC, 24 to 69%). All patients were in stable condition at the time of testing and receiving a stable drug regime. MEASUREMENTS: Each patient completed a demographic and medical history questionnaire, pulmonary function studies (spirometry, lung volumes, and diffusion capacity), peak exercise ergometry with gas exchange for the arms and legs; they also rated their subjective assessment of perceived dyspnea and extremity fatigue using Borg scores during exercise. RESULTS: Patients were of comparable age, with men taller and heavier than women. Smoking history was significantly less for women (47.9 pack-years vs 66.6 pack-years for men) even though each group presented with equivalent age (p > 0.05). Women were less obstructed than men, with FEV(1)/FVC (mean +/- SD) of 46.5 +/- 10.9% vs 40.2 +/- 9.3%, respectively. Ventilatory limitation during exercise was noted for all patients studied. Peak work capacity was greater for men, and leg peak responses were greater than arm values for each gender. As airway obstruction increased, work capacity became more limited. Peak arm work achieved was 38.9 +/- 19.6 W, oxygen uptake (VO(2)) was 903.9 +/- 263.5 mL/min, and minute ventilation (VE) was 33.7 +/- 9.5 L. Peak leg work value was 62.9 +/- 24.8 W, VO(2) was 1,091.4 +/- 321.5 mL/min, and VE was 39.3 +/- 12.0 L. Hence, arm values were 62%, 83%, and 85% of the measured leg values, respectively. Dyspnea and extremity effort scores were similar for men and women, and for arms and legs. Regression analysis was used to derive prediction equations for arm work from measured leg ergometry testing. For watts of work, a three-variable model emerged explaining 66% of the variance; VO(2) yielded a four-variable model with 80% of the variance explained; and VE yielded a three-variable model explaining 72% of the variance. CONCLUSION: Arm work is reduced by 38% that of the legs, while more modest reductions are noted for VO(2) and VE, suggesting greater mechanical efficiency for leg work as compared to arm work. These data also suggest greater metabolic demand for respiratory muscles and arm ergometry. Dyspnea and extremity Borg scores were equivalent for each modality and level of airway obstruction studied, suggesting that perception plays an important role in limiting exercise, and that a threshold for termination of exercise may exist. Further, peak leg ergometry results can be used with pulmonary function indexes to predict peak arm workload in watts, VO(2), and VE. These data may be used to assist the clinician in prescribing rehabilitation or estimating arm exercise ability when arm testing is unavailable.

Activities of Daily Living↗

[The early bicycle ergometry test in drug-stabilized patients with unstable angina pectoris; its risk and benefit].

The risk of an early submaximum symptom-limited bicycle ergometry [correction of veloergometric] test and its prognostic value up to the end of the first year since the onset of unstable angina pectoris were studied in 258 patients with unstable angina pectoris who had been stabilized by medicamentous treatment. During the bicycle ergometry [correction of veloergometric] test no serious complications were observed. In 22 patients (35.7%) the test was negative and in 166 patients (64.3%) it was positive (angina pectoris and/or horizontal ST depression greater than or equal to 0.1 mV at 80 ms from the point J). In the patients with a positive test the prognosis is statistically worse (death, acute myocardial infarction, aortocoronary bypass, relapse of the unstable angina pectoris and angina pectoris of III and IV functional class according to NYNA/than in the patients with a negative bicycle ergometry [correction of veloergometric] test. The early bicycle ergometry [correction of veloergometric] test is with a high sensitivity (92.6%) and a lower specificity (66.7%) in recognizing the patients with a poor prognosis. The total prognostic accuracy of the test is 80.2%. It classifies the patients with unstable angina pectoris into two groups: with favourable and poor prognosis and helps in the selection of patients for surgical treatment.

Adult↗

Bone mineral density after bicycle ergometry training.

The effect of functional electrical stimulation (FES) cycle ergometry on bone mineral density (BMD) was investigated in six spinal cord injury (SCI) quadriplegic men. Each subject trained three days a week for six months on an FES cycle ergometer. Pretraining and posttraining BMD measurements of the proximal femur were performed using dual photon absorptiometry. Mean pretraining BMD (percent norm) for the femoral neck, Ward triangle, and trochanter were 66.65, 57.43, and 57.67, respectively. After six months of FES cycle ergometry, mean BMD measurements were 66.15, 57.07, and 55.13, respectively. There was no statistically significant difference between the pretraining and posttraining BMD measurements. All subjects were found to have osteoporotic proximal femurs when BMD was expressed as a percent of their age-matched controls. Bone mineral density measurements were subsequently performed on three additional men with SCI who had exercised for three years with the FES cycle ergometry modality. Their mean BMDs were not significantly different from the experimental group. This study demonstrated that six months of FES cycle ergometry did not produce an increase in BMD.

Absorptiometry, Photon↗