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Physiological factors associated with successful Comrades athletesHeydenrych, Esme 31 October 2007 (has links)
Please read the abstract (Synopsis) in the section 00front of this document / Dissertation (MA (Human Movement Sciences))--University of Pretoria, 2007. / Biokinetics, Sport and Leisure Sciences / MA / unrestricted
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Comparison of cardiorespiratory parameters during treadmill and immersion runningWelsh, Donald Gordon January 1988 (has links)
The purpose of this study was to compare the relationship between immersion running and treadmill running through the measurement of cardiorespiratory parameters.
Sixteen subjects completed two exercise protocols to exhaustion. The treadmill running protocol was initiated at 3.08 m*s-l and increased a 0.22 m*s-l every sixty seconds. The immersion running protocol utilized an immersion running Ergometer (IRE). The IRE is similar to a tethered swim machine. The initial weight was set at 1 kg and Increased a 1/2 kg every sixty seconds. Heart rate (HR), oxygen consumption (V02), ventilatory equivalent (VE/V02), and minute ventilation (VE) were determined at ventilatory threshold and at maximal effort, HR, V02, VE/V02 and VE were analyzed by MANOVA (RM). Tidal volume and frequency of breathing were collected for four subjects at ventilatory threshold and at maximal effort (no statistical analysis). Two subjects who had completed the initial exercise protocols volunteered for a follow up study of blood flow distribution testing (no statistical analysis). These subjects were injected with Tc-99 2-methyloxy isobutyl isonitrlle at ventilatory threshold during immersion and treadmill running. Imaging was performed with a Selmans Gamma Camera at the UBC Dept. of Nuclear Medicine.
V02 and HR at ventilatory threshold and maximal effort were significantly lower (P < .05) during immersion running. VE/V02 was significantly greater at maximal effort during immersion. Minute ventilation was unaffected by immersion, however, there was a trend towards a smaller tidal volume and greater frequency of breathing. The blood flow distribution data varied
considerably partially between subjects.
The significant drop in V02 at maximum effort and at ventilation threshold during immersion running may be accounted for by changes in muscle mass recruitment, muscle fibre type recruitment, recruitment pattern and state of peripheral adaptation (muscular). A lower heart rate during immersion may be due to increases in intrathoracic blood volume. The trend towards a higher breathing frequency and lower tidal volume during immersion running may be due to the increased effort to breath caused by hydrostatic chest compression. The significant increase in VE/V02 at maximal effort during immersion running was due to the significant drop in V02.
It may be concluded that immersion running causes significant changes in cardiorespiratory parameters at ventilatory threshold and at maximal effort. Research is needed to investigate the significance of the changes. / Education, Faculty of / Curriculum and Pedagogy (EDCP), Department of / Graduate
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The oxygen cost of horizontal and grade running on the treadmill with female runnersTzavellas, Georgia January 1994 (has links)
No description available.
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Endurance training adaptations in high school runnersCole, Andrew S. January 2004 (has links)
This study examined the effects of two distinct phases of endurance training (summer and in-season training) in previously well-trained male and female high school cross-country runners. Eleven males and 11 females from the same high school training program were recruited for the three testing sessions: post-track season (June), postsummer training (mid-August), and post-cross-country season (early-November). However, due to injury and other circumstances, only 10 males and 4 females completed all testing sessions. Thus, baseline characteristics were analyzed for both genders; however, longitudinal analysis was only conducted using the males. Submaximal measurements included running economy (RE), blood lactate concentration ([BLa]), and heart rate (HR) at three running speeds in females (6, 7, and 8 mph), and males (7, 8, and 9 mph). Maximal measurements of oxygen uptake (VO2max) and HR, neuromuscular characteristics of isokinetic knee extension strength and vertical jump height, and body composition were also measured. Baseline results showed that the males possessed a higher VO2max, greater neuromuscular characteristics, and lower submaximal [BLa] and HR values than the females. Longitudinal analysis of the males showed that there was an increased VO2max, decreased maximal HR, and decreased neuromuscular strength following summer training. In-season training precipitated further increases in VO2max, an increase in maximal and submaximal HR, and increased neuromuscular characteristics. RE and [BLa] did not significantly change (p<_ 0.05) throughout the course of the study. Likely, it is the subtle changes in these variables in previously welltrained runners which account for the slower performance times at the beginning of the cross-country season and the improvements thereafter. / School of Physical Education
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The Effects of Shoe Modification on Transverse Tibial RotationTrudelle, Elaine 08 1900 (has links)
The purpose of this study was to evaluate the amount of change in transverse tibial rotation at the knee achieved through the use of shoe modification. In addition, an attempt to evaluate the Q-angle dynamically through the stance phase to reflect changes in transverse tibial rotation was made. Ten male subjects were filmed as they ran on a treadmill at a 2.82 m/sec pace and transverse tibial rotation data was collected simultaneously from an affixed electrogoniometer at the knee joint. The subjects were tested under three conditions: 1) barefoot, 2) running shoe, and 3) shoe plus standard orthotic. The results of the study showed that an unprescribed, standard orthotic was ineffective in changing foot pronation and transverse tibial rotation at the knee. It also showed that there was no relationship between leg-heel alignment measurements of pronation and electrogoniometric measurements of transverse tibial rotation. Q-angle measurements could not be obtained from the film date due to difficulty in visualizing body landmarks.
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The Effect of Mode and Intensity on Vo2 Kinetics in the Severe Intensity DomainUpdyke, Rhonda S. 05 1900 (has links)
The purpose of this study was to evaluate the effect of mode and intensity on VO2 kinetics in the severe intensity domain. Seventeen participants completed 3-7 tests each on a cycle ergometer and treadmill. For each test, Tfatigue, VO2max, Tmean response, VO2GAIN, TVO2max and T@VO2max were determined. Linear regression techniques were used to describe the relationship between TVO2max and Tfatigue .
VO2max values were higher in running. The VO2 response profile was faster for running than cycling and faster at higher intensities.
The faster VO2 response in running may be associated with larger active muscle mass or differences in muscle activation patterns. The faster response at higher intensities may suggest that VO2 response is driven by O2 demand.
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Effect of consumption of carbohydrate-electrolyte solution on running performance after pre-exercise glycemic index meal. / 運動前進食不同血糖指數食物及運動中補充碳水化合物飲料對長跑能力的影響 / Effect of consumption of carbohydrate-electrolyte solution on running performance after pre-exercise glycemic index meal. / Yun dong qian jin shi bu tong xue tang zhi shu shi wu ji yun dong zhong bu chong tan shui hua he wu yin liao dui chang pao neng li de ying xiangJanuary 2004 (has links)
Chan Oi Wan = 運動前進食不同血糖指數食物及運動中補充碳水化合物飲料對長跑能力的影響 / 陳靄允. / Thesis (M.Phil.)--Chinese University of Hong Kong, 2004. / Includes bibliographical references (leaves 72-91). / Text in English; abstracts in English and Chinese. / Chan Oi Wan = Yun dong qian jin shi bu tong xue tang zhi shu shi wu ji yun dong zhong bu chong tan shui hua he wu yin liao dui chang pao neng li de ying xiang / Chen Aiyun. / Acknowledgments --- p.i / Abstract --- p.iii / Table of Contents --- p.vii / List of Figures --- p.ix / List of Tables --- p.x / Chapter Chapter One --- Introduction --- p.1 / Chapter 1.1 --- Background --- p.1 / Chapter 1.2 --- Purpose --- p.5 / Chapter 1.3 --- Significance of the Study --- p.5 / Chapter Chapter Two --- Review of Literature --- p.6 6 / Chapter 2.1 --- "Energy Metabolism during Prolonged, Submaximal Exercise" --- p.6 / Chapter 2.2 --- Importance of Nutrition on Exercise Performance --- p.9 / Chapter 2.3 --- Application of GI --- p.20 / Chapter CHAPTER Three --- Methodology --- p.36 / Chapter 3.1 --- General Methods --- p.36 / Chapter 3.2 --- Preliminary Testing --- p.42 / Chapter 3.3 --- Subjects --- p.45 / Chapter 3.4 --- Experimental Design --- p.46 / Chapter 3.5 --- Procedures --- p.47 / Chapter 3.6 --- Prescribed Meals --- p.50 / Chapter 3.7 --- Prescribed CHO-electrolyte Drink --- p.50 / Chapter 3.8 --- Statistical Analysis --- p.51 / Chapter Chapter Four --- Results --- p.52 / Chapter 4.1 --- Dietary Analysis --- p.52 / Chapter 4.2 --- Running Performance --- p.52 / Chapter 4.3 --- Blood Metabolites --- p.53 / Chapter 4.4 --- Metabolic Responses --- p.60 / Chapter 4.5 --- Subjective Responses and Heart Rates Responses --- p.61 / Chapter Chapter Five --- Discussion --- p.64 / Recommendations and Applications --- p.70 / References --- p.72 / Appendices --- p.95
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Differential effects of strength training and endurance training on parameters related to resistance to gravitational forcesKim, Hyung Don 07 February 1991 (has links)
Graduation date: 1991
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Changes in muscle lipid metabolism with endurance training in manWitzmann, Frank A. 03 June 2011 (has links)
Eight men were studied before and after an endurance training program to assess changes in the lipid metabolism of skeletal muscle. Training consisted of eight weeks of outdoor running with daily mileage increasing from one-half mile at the onset to four miles at the eighth veekof training. In vitro analyses of palmityl-CoA oxidation and the activities of carnitine palmityltransferase (CPT) and succinate dehydrogenase (SDH) were observed in muscle samples obtained by needle biopsy from the gastrocnemius before and after training.The subjects' maximal oxygen uptake increased from 3.47 1/min (± 0.26) to 3.82 1/min (± 0.21) as a result of the training. At the same time, muscle CPT and SDH increased (P <.01) 23% and 36%, respectively. The muscle's capacity to oxidize palmityl-CoA increased from 6.36 nmoles/min/g to 13.32 nmoles/min/g, a significant increase of 116% (P <.01).This investigation supports earlier findings with rats and emphasizes the influence of chronic endurance exercise on lipid metabolism in the skeletal muscle of man.Ball State UniversityMuncie, IN 47306
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Longitudinal kinematic study of master's aged distance runnersWalters, William A. January 1994 (has links)
The purpose of this study was to compare selected kinematic characteristics of distance runners over a twenty year period. The subjects in the investigation were 14 long distance runners who at the time of the first observation were considered highly trained (running more than 50 miles per week). The second observation occurred approximately 20-23 years after the first observation. At this time the average weekly mileage per runner had decreased to 37 miles per week. The first observation's data were collected with a Locam camera at film speeds ranging from 60 to 120 frames/second. The film data were digitized at the same time as the second observation's data. The second observation's data were collected with a Panasonic 5000 shutter video camera. The Peak Performance Motion Measurement System video interface allowed a 60 frame/second field rate. Ten subjects ran at a speed of 3.4 m/s; two subjects at the speeds of 3.1 and 3.6 m/s; and one subject at each of the following speeds: 4.0, 4.5, and 4.9 m/s. Statistical analyses (ANOVA) of the stride length, stride frequency, support and non-support time, and joint angular displacement indicated no significant difference (p > .05) between the first observation and the second observation. The results of this study indicated that the kinematics of continually active long distance runners do not change with an increase in age. / School of Physical Education
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