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1.
Japanese Journal of Physical Fitness and Sports Medicine ; : 173-182, 1993.
Article in Japanese | WPRIM | ID: wpr-371610

ABSTRACT

A study was conducted to investigate the relationship between energy systems and running performance, especially during the last spurt in an 800-m race. The subjects were separated into good 800-m runners (group A n=5: best record, 1′54″3±1.4) and a second group of slower 800-m runners (group B n=4: best record, 2′02″1±1.3) . Each group executed two types of running test (600m test and 800m test) . To simulate an 800-m race, the running speed up to 600m was set by means of a lamp pace maker system. The last spurt was running 200m at maximal voluntary running speed. Plasma lactate, plasma ammonia, serum glucose and blood pH were assayed at rest, after warming up, and 6 and 10min after the running test.<BR>The following results were obtained:<BR>1) The last spurt time of group A was significantly faster than that of group B (p<0.01) . 2) In group A, plasma lactate and plasma ammonia concentrations increased significantly during the last spurt (p<0.05) . In group B, however, plasma lactate and plasma ammonia concentrations before the last spurt (600m test values) were very close to the values after the last spurt (800m test values), 3) Last spurt times were significantly related to changes in plasma lactate concentration (r=-0.870, p<0.01) and O<SUP>2</SUP> debt (r=-0.799, p<0.01) during the last spurt.<BR>These results suggest that running performance during the last spurt in an 800-m race depends on anaerobic energy ability, as reflected by plasma lactate, plasma ammonia and O<SUP>2</SUP> debt before the last spurt.

2.
Japanese Journal of Physical Fitness and Sports Medicine ; : 138-144, 1993.
Article in Japanese | WPRIM | ID: wpr-371608

ABSTRACT

A study was conducted to investigate the changes in human urinary proteins caused by physical exercise. Nine subjects (male middle-distance runners, 19-21 years) were loaded physical exercise with a 10km-run, and quantitative and qualitative changes in urinary proteins were examined using various techniques including polyacrylamide gel electrophoresis, immunoelectrophoresis and two-dimensional electrophoresis. Total protein concentrations in urine from all subjects before exercise were very low (0.68-2.56mg/d<I>l</I>), but those were increased remarkably after exercise. Few proteins except for albumin were detected in urine before run by polyacrylamide gel electrophoresis and immunoelectrophoresis, however, a few proteins were observed after exercise in addition to a marked increase of albumin. Several proteins which were not observed in serum could also be detected in urine after exercise by two-dimensional electrophoresis under non-denaturing condition. It is considered that two-dimensional electrophoresis is a very powerful technique for analyzing dilute and complicated protein mixture in biological fluids such as urine.

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