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Erschienen in: Sports Medicine 15/2003

01.12.2003 | Leading Article

Global Positioning System and Sport-Specific Testing

verfasst von: Dr Peter Larsson

Erschienen in: Sports Medicine | Ausgabe 15/2003

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Abstract

Most physiological testing of athletes is performed in well-controlled situations in the laboratory. Multiple factors that are hard to control for have limited the use of sport-specific field testing. Recently, the technique of the differential global positioning system (dGPS) has been put forward as a way to monitor the position and speed of an athlete during outdoor activities with acceptable precision, thus controlling the two most important factors of performance in endurance athletics, i.e. inclination and speed. A detailed analysis of performance has been shown to be possible in combination with metabolic gas measurements. The combination of accelerometry and dGPS has also been shown to improve physiological field testing. The technique of dGPS could probably also be combined with other bio-measurements (e.g. electromyography and cycling cadence and power) and may enable other studies of exercise physiology in the field, otherwise restricted to the laboratory environment. This technique may also be of use in general exercise physiology where monitoring of patients with, for example, cardiovascular and pulmonary diseases, could be of interest for the future.
Literatur
1.
Zurück zum Zitat Noakes TD. Physiological models to understand exercise fatigue and the adaptations that predict or enhance athletic performance. Scand J Med Sci Sports 2000; 10: 123–45PubMedCrossRef Noakes TD. Physiological models to understand exercise fatigue and the adaptations that predict or enhance athletic performance. Scand J Med Sci Sports 2000; 10: 123–45PubMedCrossRef
2.
Zurück zum Zitat Wasserman K, Hansen JE, Sue DY, et al. Principles of exercise testing and interpretation. Philadelphia (PA): Lea & Febiger, 1987 Wasserman K, Hansen JE, Sue DY, et al. Principles of exercise testing and interpretation. Philadelphia (PA): Lea & Febiger, 1987
3.
Zurück zum Zitat Creagh U, Reilly T, Nevill AM. Heart rate response to ‘off-road’ running events in female athletes. Br J Sports Med 1998; 32: 34–8PubMedCrossRef Creagh U, Reilly T, Nevill AM. Heart rate response to ‘off-road’ running events in female athletes. Br J Sports Med 1998; 32: 34–8PubMedCrossRef
4.
Zurück zum Zitat Bird SR, Bailey R, Lewis J. Heart rates during competitive orienteering. Br J Sports Med 1993; 27: 53–7PubMedCrossRef Bird SR, Bailey R, Lewis J. Heart rates during competitive orienteering. Br J Sports Med 1993; 27: 53–7PubMedCrossRef
5.
Zurück zum Zitat Peck G. Measuring heart rate as an indicator of physiological stress in relation to orienteering performance. Sci J Orienteering 1990; 12: 26–42 Peck G. Measuring heart rate as an indicator of physiological stress in relation to orienteering performance. Sci J Orienteering 1990; 12: 26–42
6.
Zurück zum Zitat Åstrand PO, Saltin B. Maximal oxygen uptake and heart rate in various types of muscular activity. J Appl Physiol 1961; 16: 977–81PubMed Åstrand PO, Saltin B. Maximal oxygen uptake and heart rate in various types of muscular activity. J Appl Physiol 1961; 16: 977–81PubMed
7.
Zurück zum Zitat Doyon KH, Perrey S, Abe D, et al. Field testing of V̇O2peak in cross-country skiers with portable breath-by-breath system. Can J Appl Physiol 2001; 26: 1–11PubMedCrossRef Doyon KH, Perrey S, Abe D, et al. Field testing of V̇O2peak in cross-country skiers with portable breath-by-breath system. Can J Appl Physiol 2001; 26: 1–11PubMedCrossRef
8.
Zurück zum Zitat Millet GY, Hoffman MD, Candau RB, et al. Effect of rolling resistance on poling forces and metabolic demands of roller skiing. Med Sci Sports Exerc 1998; 30: 755–62PubMedCrossRef Millet GY, Hoffman MD, Candau RB, et al. Effect of rolling resistance on poling forces and metabolic demands of roller skiing. Med Sci Sports Exerc 1998; 30: 755–62PubMedCrossRef
9.
Zurück zum Zitat Hoffman MD, Clifford PS. Physiological responses to different cross country skiing techniques on level terrain. Med Sci Sports Exerc 1990; 22: 841–8PubMed Hoffman MD, Clifford PS. Physiological responses to different cross country skiing techniques on level terrain. Med Sci Sports Exerc 1990; 22: 841–8PubMed
10.
Zurück zum Zitat Saibene F, Cortili G, Roi G, et al. The energy cost of level cross-country skiing and the effect of the friction of the ski. Eur J Appl Physiol Occup Physiol 1989; 58: 791–5PubMedCrossRef Saibene F, Cortili G, Roi G, et al. The energy cost of level cross-country skiing and the effect of the friction of the ski. Eur J Appl Physiol Occup Physiol 1989; 58: 791–5PubMedCrossRef
11.
Zurück zum Zitat Jensen K, Franch J, Kärkkäinen OP, et al. Field measurements of oxygen uptake in elite orienteers during cross-country running using telemetri. Scand J Med Sci Sports 1994; 4: 234–8CrossRef Jensen K, Franch J, Kärkkäinen OP, et al. Field measurements of oxygen uptake in elite orienteers during cross-country running using telemetri. Scand J Med Sci Sports 1994; 4: 234–8CrossRef
12.
Zurück zum Zitat Jensen K, Johansen L, Kärkkäinen OP. Economy in track runners and orienteers during path and terrain running. J Sports Sci 1999; 17: 945–50PubMedCrossRef Jensen K, Johansen L, Kärkkäinen OP. Economy in track runners and orienteers during path and terrain running. J Sports Sci 1999; 17: 945–50PubMedCrossRef
13.
Zurück zum Zitat Gjerset A, Johansen E, Moser T. Aerobic and anaerobic demands in short distance orienteering. Sci J Orienteering 1997; 13: 4–25 Gjerset A, Johansen E, Moser T. Aerobic and anaerobic demands in short distance orienteering. Sci J Orienteering 1997; 13: 4–25
14.
Zurück zum Zitat Moser T, Gjerset A, Johansen E, et al. Aerobic and anaerobic demands in orienteering. Sci J Orienteering 1995; 11: 3–30 Moser T, Gjerset A, Johansen E, et al. Aerobic and anaerobic demands in orienteering. Sci J Orienteering 1995; 11: 3–30
15.
Zurück zum Zitat Niinimaa V, Dyon M, Shephard RJ. Performance and efficiency of intercollegiate cross-country skiers. Med Sci Sports 1978; 10: 91–3PubMed Niinimaa V, Dyon M, Shephard RJ. Performance and efficiency of intercollegiate cross-country skiers. Med Sci Sports 1978; 10: 91–3PubMed
16.
Zurück zum Zitat MacDougall JD, Hughson R, Sutton JR, et al. The energy cost of cross-country skiing among elite competitors. Med Sci Sports 1979; 11: 270–3PubMed MacDougall JD, Hughson R, Sutton JR, et al. The energy cost of cross-country skiing among elite competitors. Med Sci Sports 1979; 11: 270–3PubMed
17.
Zurück zum Zitat Karvonen J, Kubica R, Kalli S, et al. Effects of skating and diagonal techniques on skiing load and results in cross-country skiing. J Sports Med Phys Fitness 1987; 27: 473–7PubMed Karvonen J, Kubica R, Kalli S, et al. Effects of skating and diagonal techniques on skiing load and results in cross-country skiing. J Sports Med Phys Fitness 1987; 27: 473–7PubMed
18.
Zurück zum Zitat Karvonen J, Kubica R, Wilk B, et al. Effects of skating and diagonal skiing techniques on results and some physiological variables. Can J Sport Sci 1989; 14: 117–21PubMed Karvonen J, Kubica R, Wilk B, et al. Effects of skating and diagonal skiing techniques on results and some physiological variables. Can J Sport Sci 1989; 14: 117–21PubMed
19.
Zurück zum Zitat Mognoni P, Rossi G, Gastaldelli F, et al. Heart rate profiles and energy cost of locomotion during cross-country skiing races. Eur J Appl Physiol 2001; 85: 62–7PubMedCrossRef Mognoni P, Rossi G, Gastaldelli F, et al. Heart rate profiles and energy cost of locomotion during cross-country skiing races. Eur J Appl Physiol 2001; 85: 62–7PubMedCrossRef
20.
Zurück zum Zitat Mahood NV, Kenefick RW, Kertzer R, et al. Physiological determinants of cross-country ski racing performance. Med Sci Sports Exerc 2001; 33: 1379–84PubMedCrossRef Mahood NV, Kenefick RW, Kertzer R, et al. Physiological determinants of cross-country ski racing performance. Med Sci Sports Exerc 2001; 33: 1379–84PubMedCrossRef
21.
Zurück zum Zitat Terrier P, Aminian K, Schutz Y. Can accelerometry accurately predict the energy cost of uphill/downhill walking? Ergonomics 2001; 44: 48–62PubMed Terrier P, Aminian K, Schutz Y. Can accelerometry accurately predict the energy cost of uphill/downhill walking? Ergonomics 2001; 44: 48–62PubMed
22.
Zurück zum Zitat Montoye HJ, Washburn R, Servais S, et al. Estimation of energy expenditure by a portable accelerometer. Med Sci Sports Exerc 1983; 15: 403–7PubMed Montoye HJ, Washburn R, Servais S, et al. Estimation of energy expenditure by a portable accelerometer. Med Sci Sports Exerc 1983; 15: 403–7PubMed
23.
Zurück zum Zitat Melanson Jr EL, Freedson PS. Validity of the Computer Science and Applications, Inc. (CSA) activity monitor. Med Sci Sports Exerc 1995; 27: 934–40PubMed Melanson Jr EL, Freedson PS. Validity of the Computer Science and Applications, Inc. (CSA) activity monitor. Med Sci Sports Exerc 1995; 27: 934–40PubMed
24.
Zurück zum Zitat Perrin O, Terrier P, Ladetto Q, et al. Improvement of walking speed prediction by accelerometry and altimetry, validated by satellite positioning. Med Biol Eng Comput 2000; 38: 164–8PubMedCrossRef Perrin O, Terrier P, Ladetto Q, et al. Improvement of walking speed prediction by accelerometry and altimetry, validated by satellite positioning. Med Biol Eng Comput 2000; 38: 164–8PubMedCrossRef
25.
Zurück zum Zitat Herren R, Sparti A, Aminian K, et al. The prediction of speed and incline in outdoor running in humans using accelerometry. Med Sci Sports Exerc 1999; 31: 1053–9PubMedCrossRef Herren R, Sparti A, Aminian K, et al. The prediction of speed and incline in outdoor running in humans using accelerometry. Med Sci Sports Exerc 1999; 31: 1053–9PubMedCrossRef
26.
Zurück zum Zitat Mygind E, Andersen LB, Rasmussen B. Blood lactate and respiratory variables in elite cross-country skiing at racing speeds. Scand J Med Sci Sports 1994; 4: 243–51CrossRef Mygind E, Andersen LB, Rasmussen B. Blood lactate and respiratory variables in elite cross-country skiing at racing speeds. Scand J Med Sci Sports 1994; 4: 243–51CrossRef
27.
Zurück zum Zitat Selley EA, Kolbe T, Van Zyl CG, et al. Running intensity as determined by heart rate is the same in fast and slow runners in both the 10- and 21-km races. J Sports Sci 1995; 13: 405–10PubMedCrossRef Selley EA, Kolbe T, Van Zyl CG, et al. Running intensity as determined by heart rate is the same in fast and slow runners in both the 10- and 21-km races. J Sports Sci 1995; 13: 405–10PubMedCrossRef
28.
Zurück zum Zitat Terrier P, Ladetto Q, Merminod B, et al. Measurement of the mechanical work of walking by satellite positioning system (GPS). Med Sci Sports Exerc 2001; 33: 1912–8PubMedCrossRef Terrier P, Ladetto Q, Merminod B, et al. Measurement of the mechanical work of walking by satellite positioning system (GPS). Med Sci Sports Exerc 2001; 33: 1912–8PubMedCrossRef
29.
Zurück zum Zitat Terrier P, Ladetto Q, Merminod B, et al. High precision satellite positioning system as a new tool to study the biomechanics of human locomotion. J Biomechanics 2000; 33: 1717–22CrossRef Terrier P, Ladetto Q, Merminod B, et al. High precision satellite positioning system as a new tool to study the biomechanics of human locomotion. J Biomechanics 2000; 33: 1717–22CrossRef
30.
Zurück zum Zitat Schutz Y, Herren R. Assessment of speed of human locomotion using a differential satellite global positioning system. Med Sci Sports Exerc 2000; 32: 642–6PubMedCrossRef Schutz Y, Herren R. Assessment of speed of human locomotion using a differential satellite global positioning system. Med Sci Sports Exerc 2000; 32: 642–6PubMedCrossRef
31.
Zurück zum Zitat Schutz Y, Chambaz A. Could a satellite-based navigation system (GPS) be used to assess the physical activity of individuals on earth? Eur J Clin Nutr 1997; 51: 338–9PubMedCrossRef Schutz Y, Chambaz A. Could a satellite-based navigation system (GPS) be used to assess the physical activity of individuals on earth? Eur J Clin Nutr 1997; 51: 338–9PubMedCrossRef
32.
Zurück zum Zitat Larsson P, Henriksson-Larsen K. The use of dGPS and simultaneous metabolic measurements during orienteering. Med Sci Sports Exerc 2001; 33: 1919–24PubMedCrossRef Larsson P, Henriksson-Larsen K. The use of dGPS and simultaneous metabolic measurements during orienteering. Med Sci Sports Exerc 2001; 33: 1919–24PubMedCrossRef
33.
Zurück zum Zitat Larsson P, Burlin L, Jakobsson E, et al. Analysis of performance in orienteering with treadmill tests and physiological field tests using a differential global positioning system. J Sports Sci 2002; 20: 529–35PubMedCrossRef Larsson P, Burlin L, Jakobsson E, et al. Analysis of performance in orienteering with treadmill tests and physiological field tests using a differential global positioning system. J Sports Sci 2002; 20: 529–35PubMedCrossRef
34.
Zurück zum Zitat Ekelund U, Yngve A, Sjöström M, et al. Field evaluation of the Computer Science and Application’s Inc. activity monitor during running and skating training in adolescent athletes. Int J Sports Med 2000; 21: 586–92PubMedCrossRef Ekelund U, Yngve A, Sjöström M, et al. Field evaluation of the Computer Science and Application’s Inc. activity monitor during running and skating training in adolescent athletes. Int J Sports Med 2000; 21: 586–92PubMedCrossRef
35.
Zurück zum Zitat Wu G, Ladin Z. The study of kinematic transients in locomotion using the integrated kinematic sensors. IEEE Trans Rehabil Eng 1996; 4: 193–200PubMedCrossRef Wu G, Ladin Z. The study of kinematic transients in locomotion using the integrated kinematic sensors. IEEE Trans Rehabil Eng 1996; 4: 193–200PubMedCrossRef
36.
Zurück zum Zitat Mercer JA, Devita P, Derrick TR, et al. Individual effects of stride length and frequency on shock attenuation during running. Med Sci Sports Exerc 2003; 35: 307–13PubMedCrossRef Mercer JA, Devita P, Derrick TR, et al. Individual effects of stride length and frequency on shock attenuation during running. Med Sci Sports Exerc 2003; 35: 307–13PubMedCrossRef
37.
Zurück zum Zitat Bernmark E, Wiktorin C. A triaxial accelerometer for measuring arm movements. Appl Ergon 2002; 33: 541–7PubMedCrossRef Bernmark E, Wiktorin C. A triaxial accelerometer for measuring arm movements. Appl Ergon 2002; 33: 541–7PubMedCrossRef
38.
Zurück zum Zitat Estill CF, MacDonald LA, Wenzl TB, et al. Use of accelerometers as an ergonomie assessment method for arm acceleration-a large-scale field trial. Ergonomics 2000; 43: 1430–45PubMedCrossRef Estill CF, MacDonald LA, Wenzl TB, et al. Use of accelerometers as an ergonomie assessment method for arm acceleration-a large-scale field trial. Ergonomics 2000; 43: 1430–45PubMedCrossRef
39.
Zurück zum Zitat Thompson CJ, Bemben MG. Reliability and comparability of the accelerometer as a measure of power. Med Sci Sports Exerc 1999; 32: 897–902 Thompson CJ, Bemben MG. Reliability and comparability of the accelerometer as a measure of power. Med Sci Sports Exerc 1999; 32: 897–902
40.
Zurück zum Zitat van den Bogert AJ, Read L, Nigg BM. A analysis of hip joint loading during walking, running, and skiing. Med Sci Sports Exerc 1999; 31: 131–42PubMedCrossRef van den Bogert AJ, Read L, Nigg BM. A analysis of hip joint loading during walking, running, and skiing. Med Sci Sports Exerc 1999; 31: 131–42PubMedCrossRef
Metadaten
Titel
Global Positioning System and Sport-Specific Testing
verfasst von
Dr Peter Larsson
Publikationsdatum
01.12.2003
Verlag
Springer International Publishing
Erschienen in
Sports Medicine / Ausgabe 15/2003
Print ISSN: 0112-1642
Elektronische ISSN: 1179-2035
DOI
https://doi.org/10.2165/00007256-200333150-00002

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