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DOI: 10.1055/s-0031-1283817
© Karl F. Haug Verlag in MVS Medizinverlage Stuttgart GmbH & Co. KG
Standardisierung eines Testprotokolls zur Bestimmung der isometrischen Maximalkraft
Standardization of a test protocol for evaluating maximal isometric forcePublikationsverlauf
2010
2011
Publikationsdatum:
16. Dezember 2011 (online)

In verschiedenen Anwendungsbereichen wird die isometrische Maximalkraft als Grundlage für die Planung und Überprüfung von Trainingsinterventionen verwendet. Es fehlen jedoch standardisierte und evaluierte Testprotokolle. Das vorliegende Verfahren berücksichtigt die bekannten Einflussgrößen der isometrischen Maximalkraft und belegt die Reliabilität des Testprotokolls für trainierte Freizeit- und Gesundheitssportler. Zur weiteren Absicherung sind Folgeuntersuchungen unter Berücksichtigung weiterer Zielgruppen sowie anderer Muskelgruppen bzw. Trainingsgeräte erforderlich.
In many applications, planning and evaluation of strength training procedures are based on measuring the maximal isometric force. However, there is lack of standardized and evaluated test protocols. Therefore we describe a procedure which considers the most important factors determining the maximal isometric force. This confirms reliability for persons trained in recreational and rehabilitation exercises. To corroborate these results, further studies considering other target audiences as well as other muscles and fitness devices are required.
Stichworte:
isometrische Maximalkraft - Reliabilität - Kraftmessung - Beinpresse
Key words:
maximal voluntary contraction - reliability - strength measurement - leg press
Literatur
- 1
Aldayel A, Jubeau M, McGuigan M et al.
Less indication of muscle damage in the second than initial electrical muscle stimulation
bout consisting of isometric contractions of the knee extensors.
European Journal of Applied Physiology.
2010;
108(4)
709-717
MissingFormLabel
- 2
Allet L, Armand S, de Bie R A et al.
The gait and balance of patients with diabetes can be improved: A randomised controlled
trial.
Diabetologia.
2010;
53(3)
458-466
MissingFormLabel
- 3
Asmussen E, Bøje O.
Body temperature and capacity for work.
Acta Physiologica Scandinavica.
1945;
10(1)
1-22
MissingFormLabel
- 4
Atkinson G, Reilly T.
Circadian variation in sports performance.
Sports Medicine.
1996;
21(4)
292-312
MissingFormLabel
- 5
Bak P, Anders C, Bocker B et al.
Reliabilität der Messung der isometrischen maximalen willkürlichen Kontraktion der
Rumpfmuskulatur bei Probanden.
Physikalische Medizin, Rehabilitationsmedizin, Kurortmedizin.
2003;
13(1)
28-34
MissingFormLabel
- 6
Behm D G, Button D C, Butt J C.
Factors affecting force loss with prolonged stretching.
Canadian Journal of Applied Physiology.
2001;
26(3)
262-272
MissingFormLabel
- 7
Bergh U, Ekblom B.
Influence of muscle temperature on maximal strength and power output in human skeletal
muscles.
Acta Physiologica Scandinavica.
1979;
107(1)
33-37
MissingFormLabel
- 8
Borg G.
Anstrengungsempfinden und körperliche Aktivität.
Deutsches Ärzteblatt.
2004;
101(15)
1016-1021
MissingFormLabel
- 9
Borregaard S, Kruse N, Rieckert H.
Bewegungstherapie während einer Dialyse. Eine experimentelle Studie zum Kraft- und
Ausdauerverhalten und zur Lebensqualität.
Deutsche Zeitschrift für Sportmedizin.
2003;
54(12)
347-351
MissingFormLabel
- 10
Brinkmann C, Geisler S, Klemme F et al.
Einfluss von Krafttraining auf das metabolische Syndrom – Bedeutung einer veränderten
Muskelmorphologie.
Deutsche Zeitschrift für Sportmedizin.
2008;
60(12)
394-398
MissingFormLabel
- 11
Coldwells A, Atkinson G, Reilly T.
Sources of variation in back and leg dynamometry.
Ergonomics.
1994;
37(1)
79-86
MissingFormLabel
- 12
Dalgas U, Stenager E, Jakobsen J et al.
Resistance training improves muscle strength and functional capacity in multiple sclerosis.
Neurology.
2009;
73(18)
1478-1484
MissingFormLabel
- 13 Denner A. Analyse und Training der wirbelsäulenstabilisierenden Muskulatur. Berlin: Springer; 1998
MissingFormLabel
- 14
Erskine R M, Jones D A, Williams A G et al.
Resistance training increases in vivo quadriceps femoris muscle specific tension in
young men.
Acta Physiologica.
2010;
199(1)
83-89
MissingFormLabel
- 15
Fowles J R, Sale D G, MacDougall J D.
Reduced strength after passive stretch of the human plantarflexors.
Journal of Applied Physiology.
2000;
89(3)
1179-1188
MissingFormLabel
- 16 Fröhlich M, Marschall F. Entwicklung eines Verfahrens zur Bestimmung der isometrischen und konzentrischen Maximalkraft. In: Thorhauer H A, Carl K, Türck-Noack U, Hrsg. Muskel-Ermüdung. Forschungsansätze in der Trainingswissenschaft. Köln: Sport und Buch Strauß; 2001: 119-125
MissingFormLabel
- 17
Gauthier A, Davenne D, Martin A et al.
Time of day effects on isometric and isokinetic torque developed during elbow flexion
in humans.
European Journal of Applied Physiology.
2001;
84(3)
249-252
MissingFormLabel
- 18
Girard O, Carbonnel Y, Candau R et al.
Running versus strength-based warm-up: Acute effects on isometric knee extension function.
European Journal of Applied Physiology.
2009;
106(4)
573-581
MissingFormLabel
- 19
Grandys M, Majerczak J, Duda K et al.
The effect of endurance training on muscle strength in young, healthy men in relation
to hormonal status.
Journal of Physiology and Pharmacology.
2008;
59
89-103
MissingFormLabel
- 20 Greiwing A, Freiwald J. Effects of three resistance training methods on maximal strength, strength endurance
and muscle thickness of the m. quadriceps femoris. In: Gießing J, Fröhlich M, Preuss P, Hrsg. Current results of strength training research. Göttingen: Cuvillier; 2005: 65-79
MissingFormLabel
- 21
Güllich A, Schmidtbleicher D.
Struktur der Kraftfähigkeiten und ihrer Trainingsmethoden.
Deutsche Zeitschrift für Sportmedizin.
1999;
50(7/8)
223-234
MissingFormLabel
- 22
Guette M, Gondin J, Martin A.
Time-of-day effect on the torque and neuromuscular properties of dominant and non-dominant
quadriceps femoris.
Chronobiology International.
2005;
22(3)
541-558
MissingFormLabel
- 23 Hettinger T. Isometrisches Muskeltraining. Stuttgart: Thieme; 1983
MissingFormLabel
- 24 Hollmann W, Strüder H K. Sportmedizin. Grundlagen für körperliche Aktivität. In: Training und Präventivmedizin. 5. Aufl. Stuttgart: Schattauer; 2009
MissingFormLabel
- 25
Hopkins W G.
Measures of reliability in sports medicine and science.
Sports Medicine.
2000;
30(1)
1-15
MissingFormLabel
- 26
Hourigan S R, Nitz J C, Brauer S G et al.
Positive effects of exercise on falls and fracture risk in osteopenic women.
Osteoporosis International.
2008;
19(7)
1077-1086
MissingFormLabel
- 27
Hubal M J, Gordish-Dressman H, Thompson P D et al.
Variability in muscle size and strength gain after unilateral resistance training.
Medicine and Science in Sports and Exercise.
2005;
37(6)
964-972
MissingFormLabel
- 28 Kraemer W J, Ratamess N A, Fry A C et al. Strength Training: Development and Evaluation of Methodology. In: Maud P J, Foster C, (Eds.) Physiological assessment of human fitness. Champaign / Ill: Human Kinetics; 2006: 119-150
MissingFormLabel
- 29
Kubo K, Kanehisa H, Fukunaga T.
Effects of resistance and stretching training programmes on the viscoelastic properties
of human tendon structures in vivo.
The Journal of Physiology.
2002;
538(1)
219-226
MissingFormLabel
- 30
Kvorning T, Bagger M, Caserotti P et al.
Effects of vibration and resistance training on neuromuscular and hormonal measures.
European Journal of Applied Physiology.
2006;
96(5)
615-625
MissingFormLabel
- 31
Marschall F, Ruckelshausen B.
Dient Dehnen der Verletzungsprophylaxe? Eine qualitative Metaanalyse.
Spectrum der Sportwissenschaften.
2004;
16(1)
31-47
MissingFormLabel
- 32
Martin A, Carpentier A, Guissard N et al.
Effect of time of day on force variation in a human muscle.
Muscle & Nerve.
1999;
22(10)
1380-1387
MissingFormLabel
- 33
Matsumura M, Ueda C, Shiroishi K et al.
Low-volume muscular endurance and strength training during 3-week forearm immobilization
was effective in preventing functional deterioration.
Dynamic Medicine.
2008;
7
1
MissingFormLabel
- 34 McArdle W D, Katch F I, Katch V L. Essentials of exercise physiology. ( 3rd ed.). Philadelphia / PA: Lippincott Williams & Wilkins; 2006
MissingFormLabel
- 35
Meese G B, Schiefer R E, Küstner P et al.
Subjective comfort vote and air temperature as predictors of performance in factory
workers.
European Journal of Applied Physiology and Occupational Physiology.
1986;
55(2)
195-197
MissingFormLabel
- 36 Morrow J R, Jackson A W, Disch J D et al. Measurement and evaluation in human performance. ( 3rd ed.). Champaign / Ill: Human Kinetics; 2005
MissingFormLabel
- 37
Müller E A, Hettinger T.
Der Verlauf der Zunahme der Muskelkraft nach einem einmaligen maximalen Trainingsreiz.
European Journal of Applied Physiology and Occupational Physiology.
1956;
16(3)
184-191
MissingFormLabel
- 38
Müller E A, Rohmert W.
Die Geschwindigkeit der Muskelkraft-Zunahme bei isometrischem Training.
European Journal of Applied Physiology and Occupational Physiology.
1963;
19(6)
403-419
MissingFormLabel
- 39
Olafsdottir H B, Zatsiorsky V M, Latash M L.
The effects of strength training on finger strength and hand dexterity in healthy
elderly individuals.
Journal of Applied Physiology.
2008;
105(4)
1166-1178
MissingFormLabel
- 40
Olsen S, Aagaard P, Kadi F et al.
Creatine supplementation augments the increase in satellite cell and myonuclei number
in human skeletal muscle induced by strength training.
The Journal of Physiology.
2006;
573(2)
525-534
MissingFormLabel
- 41
Pfeifer K, Vogt L, Banzer W.
Messpositionen und deren Reproduzierbarkeit zur Erfassung der isometrischen Maximalkraft
verschiedener Muskelgruppen.
Gesundheitssport und Sporttherapie.
2003;
19(1)
5-8
MissingFormLabel
- 42
Power K, Behm D, Cahill F et al.
An acute bout of static stretching: Effects on force and jumping performance.
Medicine and Science in Sports and Exercise.
2004;
36(8)
1389-1396
MissingFormLabel
- 43
Reiser M.
Kraftgewinne durch Vorstellung maximaler Muskelkontraktionen.
Zeitschrift für Sportpsychologie.
2005;
12(1)
11-21
MissingFormLabel
- 44
Ruhleder M, Segieth C, Vogt L et al.
Elektromyographische Untersuchung lumbopelvikaler Muskeln zur Bewertung eines isometrischen
Krafttests – Erste Ergebnisse.
Deutsche Zeitschrift für Sportmedizin.
2004;
55(1)
17-21
MissingFormLabel
- 45 Sale D G. Neurale Adaptation im Verlaufe eines Krafttrainings. In: Komi P V, Hrsg.< Kraft und Schnellkraft im Sport. Köln: Deutscher Ärzte-Verlag; 1994: 249-265
MissingFormLabel
- 46 Schlumberger A, Schmidtbleicher D. Grundlagen der Kraftdiagnostik. In: Banzer W, Pfeifer K, Vogt L, Hrsg. Funktionsdiagnostik des Bewegungssystems in der Sportmedizin. Berlin: Springer; 2004: 87-106
MissingFormLabel
- 47
Sedliak M, Finni T, Peltonen J et al.
Effect of time-of-day-specific strength training on maximum strength and EMG activity
of the leg extensors in men.
Journal of Sports Sciences.
2008;
26(10)
1005-1014
MissingFormLabel
- 48
Staubli P, Nef T, Klamroth-Marganska V et al.
Effects of intensive arm training with the rehabilitation robot ARMin II in chronic
stroke patients: Four single-cases.
Journal of NeuroEngineering and Rehabilitation.
2009;
6
46
MissingFormLabel
- 49 Stone M H, Stone M, Sands W A. Principles and practice of resistance training. Champaign / Ill: Human Kinetics; 2007
MissingFormLabel
- 50
Tamm A S, Lagerquist O, Ley A L et al.
Chronotype influences diurnal variations in the excitability of the human motor cortex
and the ability to generate torque during a maximum voluntary contraction.
Journal of Biological Rhythms.
2009;
24(3)
211-224
MissingFormLabel
- 51
Thompson P D, Moyna N, Seip R et al.
Functional polymorphisms associated with human muscle size and strength.
Medicine and Science in Sports and Exercise.
2004;
36(7)
1132-1139
MissingFormLabel
- 52 Verdonck A, Wiek M, Wilke C. Testverfahren.. In: Froböse I, Nellessen G, Wilke C, Hrsg. Training in der Therapie. Grundlagen und Praxis. München: Elsevier; 2003: 247-296
MissingFormLabel
- 53
Vissing K, Overgaard K, Nedergaard A et al.
Effects of concentric and repeated eccentric exercise on muscle damage and calpain-calpastatin
gene expression in human skeletal muscle.
European Journal of Applied Physiology.
2008;
103(3)
323-332
MissingFormLabel
- 54 Weineck J. Optimales Training. Leistungsphysiologische Trainingslehre unter besonderer Berücksichtigung
des Kinder- und Jugendtrainings. 15. Aufl. Balingen: Spitta; 2007
MissingFormLabel
- 55
Weir D E, Tingley J, Elder G CB.
Acute passive stretching alters the mechanical properties of human plantar flexors
and the optimal angle for maximal voluntary contraction.
European Journal of Applied Physiology.
2005;
93(5–6)
614-623
MissingFormLabel
- 56
West D W, Burd N A, Tang J E et al.
Elevations in ostensibly anabolic hormones with resistance exercise enhance neither
training-induced muscle hypertrophy nor strength of the elbow flexors.
Journal of Applied Physiology.
2010;
108(1)
60-67
MissingFormLabel
- 57 Wilmore J H, Costill D L, Kenney W L. Physiology of sport and exercise. ( 4th ed.). Champaign / Ill: Human Kinetics; 2008
MissingFormLabel
- 58
Wong Y M, Chan S T, Tang K W et al.
Two modes of weight training programs and patellar stabilization.
Journal of Athletic Training.
2009;
44(3)
264-271
MissingFormLabel
- 59
Zech A, Witte K, Pfeifer K.
Reliability and performance-dependent variations of muscle function variables during
isometric knee extension.
Journal of Electromyography and Kinesiology.
2008;
18(2)
262-269
MissingFormLabel
Korrespondenzadresse
Dr. F. Marschall
Sportwissenschaftliches Institut · Universität des Saarlandes ·
Geb. B 8.1
66041 Saarbrücken
eMail: f.marschall@mx.uni-saarland.de