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L Stradel

Publications and source records attributed to L Stradel.

2 recordsLinked to original sources

Physical activity capacity in children with myelomeningocele.

Thirty-three children (10 to 15 years of age) with myelomeningocele were studied to determine isometric muscle strength of hip and knee extension, range of hip and knee extension, usual and maximal ambulatory velocities, maximal aerobic capacity, and the energy cost (oxygen uptake) of ambulation versus wheelchair usage in subjects who both walked and wheeled. Subjects were placed into one of four groups depending on their level of motor function (those with motor levels at L2 and above, L3-4, L5 to sacral, and without motor deficit). Maximal ambulatory velocity correlated with strength of the hip extensor (r = 0.85) and knee extensor (r = 0.81) muscles. All variables were found highly dependent upon the level of motor function. Subjects with the greatest deficits had the most significant impairments and vice versa. It was found, however, that subjects without motor deficit had impairments in the usual speed of ambulation (9%), maximal running velocity (20%), and VO2 max (13%). These deficits were due to the measured strength deficits in these subjects as compared to normal values. This finding underscores the importance of quantitative assessment of muscle strength as significant deficits in strength can be missed with manual muscle testing. In those subjects who walked and wheeled, wheeling was found much more energy efficient. Wheeling at 4.8 km/hr was 11% more efficient than walking at 33% that velocity.

Adolescent

Strength testing with a portable dynamometer: reliability for upper and lower extremities.

This study was designed to determine intraobserver and interobserver reliability of maximal muscle strength for upper and lower extremity muscle groups. Four healthy subjects were tested with a portable muscle dynamometer on two separate occasions by three separate examiners to determine maximal isometric strength of lateral pinch between thumb and index finger, elbow flexion, elbow extension, shoulder flexion, hip flexion, hip extension, hip abduction, knee flexion, and ankle dorsiflexion. A break test was also used to evaluate the strength of cervical flexor muscles and extensor hallucis longus. Pearson correlation coefficients for inter- and intraexaminer testing was good for upper extremity test values from 0.85 to 0.99. The variation coefficient of the methodology error (CV) in all upper extremity muscle tests was between 5.1% and 8.3%. These results seemed reliable for clinical muscle strength testing. However, correlation coefficients for lower extremity testing were poor, with values ranging from -0.20 to 0.96. The CV in these tests was much greater than in the upper extremities and ranged from 11.3% to 17.8%. Both break tests also had high CV, with each being greater than 17%. Our results demonstrate that although the dynamometer is reliable for testing upper extremity muscle groups, it is unreliable for testing lower extremity muscle groups. Further work is needed to evaluate muscle strength quantitatively in the clinical setting in an accurate, valid, and reliable manner.

Arm