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Published in: European Journal of Applied Physiology 3/2007

01-06-2007 | Original Article

Quiet stance control is affected by prior treadmill but not overground locomotion

Authors: Carlo Zanetti, Marco Schieppati

Published in: European Journal of Applied Physiology | Issue 3/2007

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Abstract

Treadmill locomotion is different with respect to overground walking and may require an adapted control mode. The relevant neural computational effort may produce lasting effects encroaching upon the performance of a subsequent postural task. The hypothesis of the present study was that, contrary to overground walking, treadmill walking has effects on quiet stance variables, in the assumption that the imposed locomotor activity is more critical to stance control than natural walking. Nine young subjects performed three different walking sessions: treadmill with eyes closed, treadmill with eyes open, overground walking with eyes open. Body sway area and sway path and the position of the centre of foot pressure during stance were recorded by a dynamometric platform under control, post-walking and post-recovery conditions, alternatively with eyes closed and eyes open. At variance with overground walking, treadmill locomotion produced an effect on body orientation in space during the subsequent stance trials. This consisted in a forward inclination of the body, not accompanied by increased body sway, lasting for a few minutes. Presence or absence of vision during treadmill locomotion did not induce differences in the amplitude or time-course of the post-effect. We argue that body inclination would be the consequence of a change in the postural reference produced by a message arising from treadmill locomotion itself, possibly connected to particularities in the control mode of this type of walking.
Literature
go back to reference Alton F, Baldey L, Caplan S, Morrissey MC (1998) A kinematic comparison of overground and treadmill walking. Clin Biomech (Bristol, Avon) 13:434–440CrossRef Alton F, Baldey L, Caplan S, Morrissey MC (1998) A kinematic comparison of overground and treadmill walking. Clin Biomech (Bristol, Avon) 13:434–440CrossRef
go back to reference Courtine G, De Nunzio AM, Schmid M, Beretta MV, Schieppati M (2007) Stance- and locomotion-dependent processing of vibration-induced proprioceptive inflow from multiple muscles in humans. J Neurophysiol 97:772–779PubMedCrossRef Courtine G, De Nunzio AM, Schmid M, Beretta MV, Schieppati M (2007) Stance- and locomotion-dependent processing of vibration-induced proprioceptive inflow from multiple muscles in humans. J Neurophysiol 97:772–779PubMedCrossRef
go back to reference De Nunzio AM, Nardone A, Schieppati M (2005) Head stabilization on a continuously oscillating platform: the effect of a proprioceptive disturbance on the balancing strategy. Exp Brain Res 165:261–272PubMedCrossRef De Nunzio AM, Nardone A, Schieppati M (2005) Head stabilization on a continuously oscillating platform: the effect of a proprioceptive disturbance on the balancing strategy. Exp Brain Res 165:261–272PubMedCrossRef
go back to reference Derave W, Tombeux N, Cottyn J, Pannier JL, De Clercq D (2002) Treadmill exercise negatively affects visual contribution to static postural stability. Int J Sports Med 23:44–49PubMedCrossRef Derave W, Tombeux N, Cottyn J, Pannier JL, De Clercq D (2002) Treadmill exercise negatively affects visual contribution to static postural stability. Int J Sports Med 23:44–49PubMedCrossRef
go back to reference Dickstein R, Laufer Y (2004) Light touch and center of mass stability during treadmill locomotion. Gait Posture 20:41–47PubMedCrossRef Dickstein R, Laufer Y (2004) Light touch and center of mass stability during treadmill locomotion. Gait Posture 20:41–47PubMedCrossRef
go back to reference Diener HC, Dichgans J, Bacher M, Gompf B (1984) Quantification of postural sway in normals and patients with cerebellar diseases. Electroencephalogr Clin Neurophysiol 57:134–142PubMedCrossRef Diener HC, Dichgans J, Bacher M, Gompf B (1984) Quantification of postural sway in normals and patients with cerebellar diseases. Electroencephalogr Clin Neurophysiol 57:134–142PubMedCrossRef
go back to reference Dingwell JB, Cusumano JP, Cavanagh PR, Sternad D (2001) Local dynamic stability versus kinematic variability of continuous overground and treadmill walking. J Biomech Eng 123:27–32PubMedCrossRef Dingwell JB, Cusumano JP, Cavanagh PR, Sternad D (2001) Local dynamic stability versus kinematic variability of continuous overground and treadmill walking. J Biomech Eng 123:27–32PubMedCrossRef
go back to reference Duclos C, Roll R, Kavounoudias A, Roll JP (2004) Long-lasting body leanings following neck muscle isometric contractions. Exp Brain Res 158:58–66PubMedCrossRef Duclos C, Roll R, Kavounoudias A, Roll JP (2004) Long-lasting body leanings following neck muscle isometric contractions. Exp Brain Res 158:58–66PubMedCrossRef
go back to reference Frenkel-Toledo S, Giladi N, Peretz C, Herman T, Gruendlinger L, Hausdorff JM (2005) Treadmill walking as an external pacemaker to improve gait rhythm and stability in Parkinson’s disease. Mov Disord 20:1109–1114PubMedCrossRef Frenkel-Toledo S, Giladi N, Peretz C, Herman T, Gruendlinger L, Hausdorff JM (2005) Treadmill walking as an external pacemaker to improve gait rhythm and stability in Parkinson’s disease. Mov Disord 20:1109–1114PubMedCrossRef
go back to reference Gramsbergen A (2005) Postural control in man: the phylogenetic perspective. Neural Plast 12:77–88PubMedCrossRef Gramsbergen A (2005) Postural control in man: the phylogenetic perspective. Neural Plast 12:77–88PubMedCrossRef
go back to reference Hashiba M (1998) Transient change in standing posture after linear treadmill locomotion. Jpn J Physiol 48:499–504PubMedCrossRef Hashiba M (1998) Transient change in standing posture after linear treadmill locomotion. Jpn J Physiol 48:499–504PubMedCrossRef
go back to reference Hesse S (2001) Locomotor therapy in neurorehabilitation. NeuroRehabilitation 16:133–139PubMed Hesse S (2001) Locomotor therapy in neurorehabilitation. NeuroRehabilitation 16:133–139PubMed
go back to reference Ivanenko YP, Wright WG, Gurfinkel VS, Horak F, Cordo P (2006) Interaction of involuntary post-contraction activity with locomotor movements. Exp Brain Res 169:255–260PubMedCrossRef Ivanenko YP, Wright WG, Gurfinkel VS, Horak F, Cordo P (2006) Interaction of involuntary post-contraction activity with locomotor movements. Exp Brain Res 169:255–260PubMedCrossRef
go back to reference Kavounoudias A, Roll R, Roll JP (1998) The plantar sole is a ‘dynamometric map’ for human balance control. Neuroreport 9:3247–3252PubMedCrossRef Kavounoudias A, Roll R, Roll JP (1998) The plantar sole is a ‘dynamometric map’ for human balance control. Neuroreport 9:3247–3252PubMedCrossRef
go back to reference Kluzik J, Horak FB, Peterka RJ (2005) Differences in preferred reference frames for postural orientation shown by after-effects of stance on an inclined surface. Exp Brain Res 162:474–489PubMedCrossRef Kluzik J, Horak FB, Peterka RJ (2005) Differences in preferred reference frames for postural orientation shown by after-effects of stance on an inclined surface. Exp Brain Res 162:474–489PubMedCrossRef
go back to reference Kluzik J, Horak FB, Peterka RJ (2007) Postural after-effects of stepping on an inclined surface. Neurosci Lett 413:93–98PubMedCrossRef Kluzik J, Horak FB, Peterka RJ (2007) Postural after-effects of stepping on an inclined surface. Neurosci Lett 413:93–98PubMedCrossRef
go back to reference Lackner JR, Graybiel A (1980) Visual and postural motion aftereffects following parabolic flight. Aviat Space Environ Med 51:230–233PubMed Lackner JR, Graybiel A (1980) Visual and postural motion aftereffects following parabolic flight. Aviat Space Environ Med 51:230–233PubMed
go back to reference Lepers R, Bigard AX, Diard JP, Gouteyron JF, Guezennec CY (1997) Posture control after prolonged exercise. Eur J Appl Physiol Occup Physiol 76:55–61PubMedCrossRef Lepers R, Bigard AX, Diard JP, Gouteyron JF, Guezennec CY (1997) Posture control after prolonged exercise. Eur J Appl Physiol Occup Physiol 76:55–61PubMedCrossRef
go back to reference Lepers R, Breniere Y, Maton B (1999) Changes to the gait initiation programme following a running exercise in human subjects. Neurosci Lett 260:69–73PubMedCrossRef Lepers R, Breniere Y, Maton B (1999) Changes to the gait initiation programme following a running exercise in human subjects. Neurosci Lett 260:69–73PubMedCrossRef
go back to reference Maurer C, Mergner T, Peterka RJ (2005) Multisensory control of human upright stance. Exp Brain Res 24:1–20 Maurer C, Mergner T, Peterka RJ (2005) Multisensory control of human upright stance. Exp Brain Res 24:1–20
go back to reference Maurer C, Schweigart G, Mergner T (2006) Pronounced overestimation of support surface tilt during stance. Exp Brain Res 168:41–50PubMedCrossRef Maurer C, Schweigart G, Mergner T (2006) Pronounced overestimation of support surface tilt during stance. Exp Brain Res 168:41–50PubMedCrossRef
go back to reference Mulavara AP, Verstraete MC, Bloomberg JJ (2002) Modulation of head movement control in humans during treadmill walking. Gait Posture 16:271–282PubMedCrossRef Mulavara AP, Verstraete MC, Bloomberg JJ (2002) Modulation of head movement control in humans during treadmill walking. Gait Posture 16:271–282PubMedCrossRef
go back to reference Murray MP, Spurr GB, Sepic SB, Gardner GM, Mollinger LA (1985) Treadmill vs. floor walking: kinematics, electromyogram, and heart rate. J Appl Physiol 59:87–91PubMed Murray MP, Spurr GB, Sepic SB, Gardner GM, Mollinger LA (1985) Treadmill vs. floor walking: kinematics, electromyogram, and heart rate. J Appl Physiol 59:87–91PubMed
go back to reference Nagano A, Yoshioka S, Hay DC, Himeno R, Fukashiro S (2006) Influence of vision and static stretch of the calf muscles on postural sway during quiet standing. Hum Mov Sci 25:422–434PubMedCrossRef Nagano A, Yoshioka S, Hay DC, Himeno R, Fukashiro S (2006) Influence of vision and static stretch of the calf muscles on postural sway during quiet standing. Hum Mov Sci 25:422–434PubMedCrossRef
go back to reference Nardone A, Tarantola J, Giordano A, Schieppati M (1997) Fatigue effects on body balance. Electroencephalogr Clin Neurophysiol 105:309–320PubMedCrossRef Nardone A, Tarantola J, Giordano A, Schieppati M (1997) Fatigue effects on body balance. Electroencephalogr Clin Neurophysiol 105:309–320PubMedCrossRef
go back to reference Peterka RJ, Loughlin PJ (2004) Dynamic regulation of sensorimotor integration in human postural control. J Neurophysiol 91:410–423PubMedCrossRef Peterka RJ, Loughlin PJ (2004) Dynamic regulation of sensorimotor integration in human postural control. J Neurophysiol 91:410–423PubMedCrossRef
go back to reference Prokop T, Schubert M, Berger W (1997) Visual influence on human locomotion. Modulation to changes in optic flow. Exp Brain Res 114:63–70PubMedCrossRef Prokop T, Schubert M, Berger W (1997) Visual influence on human locomotion. Modulation to changes in optic flow. Exp Brain Res 114:63–70PubMedCrossRef
go back to reference Schieppati M, Hugon M, Grasso M, Nardone A, Galante M (1994) The limits of equilibrium in young and elderly normal subjects and in Parkinsonians. Electroencephalogr Clin Neurophysiol 93:286–298PubMed Schieppati M, Hugon M, Grasso M, Nardone A, Galante M (1994) The limits of equilibrium in young and elderly normal subjects and in Parkinsonians. Electroencephalogr Clin Neurophysiol 93:286–298PubMed
go back to reference Schmid M, De Nunzio AM, Schieppati M (2005) Trunk muscle proprioceptive input assists steering of locomotion. Neurosci Lett 384:127–132PubMedCrossRef Schmid M, De Nunzio AM, Schieppati M (2005) Trunk muscle proprioceptive input assists steering of locomotion. Neurosci Lett 384:127–132PubMedCrossRef
go back to reference Stolze H, Kuhtz-Buschbeck JP, Mondwurf C, Boczek-Funcke A, Johnk K, Deuschl G, Illert M (1997) Gait analysis during treadmill and overground locomotion in children and adults. Electroencephalogr Clin Neurophysiol 105:490–497PubMedCrossRef Stolze H, Kuhtz-Buschbeck JP, Mondwurf C, Boczek-Funcke A, Johnk K, Deuschl G, Illert M (1997) Gait analysis during treadmill and overground locomotion in children and adults. Electroencephalogr Clin Neurophysiol 105:490–497PubMedCrossRef
go back to reference Tarantola J, Nardone A, Tacchini E, Schieppati M (1997) Human stance stability improves with the repetition of the task: effect of foot position and visual condition. Neurosci Lett 228:75–78PubMedCrossRef Tarantola J, Nardone A, Tacchini E, Schieppati M (1997) Human stance stability improves with the repetition of the task: effect of foot position and visual condition. Neurosci Lett 228:75–78PubMedCrossRef
go back to reference Thorstensson A, Nilsson J, Carlson H, Zomlefer MR (1984) Trunk movements in human locomotion. Acta Physiol Scand 121:9–22PubMedCrossRef Thorstensson A, Nilsson J, Carlson H, Zomlefer MR (1984) Trunk movements in human locomotion. Acta Physiol Scand 121:9–22PubMedCrossRef
go back to reference van de Crommert HW, Mulder T, Duysens J (1998) Neural control of locomotion: sensory control of the central pattern generator and its relation to treadmill training. Gait Posture 7:251–263PubMedCrossRef van de Crommert HW, Mulder T, Duysens J (1998) Neural control of locomotion: sensory control of the central pattern generator and its relation to treadmill training. Gait Posture 7:251–263PubMedCrossRef
go back to reference Vogt L, Banzer W (1999) Vergleichende oberflächenelektromyographische Untersuchung ausgewählter Rumpf- und Hüftmuskeln beim Gehen auf der freien Gehstrecke und dem Laufbandergometer. Dtsch Z Sportmed 50:84–88 Vogt L, Banzer W (1999) Vergleichende oberflächenelektromyographische Untersuchung ausgewählter Rumpf- und Hüftmuskeln beim Gehen auf der freien Gehstrecke und dem Laufbandergometer. Dtsch Z Sportmed 50:84–88
go back to reference Vogt L, Pfeifer K, Banzer W (2002) Comparison of angular lumbar spine and pelvis kinematics during treadmill and overground locomotion. Clin Biomech (Bristol, Avon) 17:162–165CrossRef Vogt L, Pfeifer K, Banzer W (2002) Comparison of angular lumbar spine and pelvis kinematics during treadmill and overground locomotion. Clin Biomech (Bristol, Avon) 17:162–165CrossRef
go back to reference Warabi T, Kato M, Kiriyama K, Yoshida T, Kobayashi N (2005) Treadmill walking and overground walking of human subjects compared by recording sole-floor reaction force. Neurosci Res 53:343–348PubMedCrossRef Warabi T, Kato M, Kiriyama K, Yoshida T, Kobayashi N (2005) Treadmill walking and overground walking of human subjects compared by recording sole-floor reaction force. Neurosci Res 53:343–348PubMedCrossRef
go back to reference Weber KD, Fletcher WA, Gordon CR, Melvill Jones G, Block EW (1998) Motor learning in the ‘podokinetic’ system and its role in spatial orientation during locomotion. Exp Brain Res 120:377–385PubMedCrossRef Weber KD, Fletcher WA, Gordon CR, Melvill Jones G, Block EW (1998) Motor learning in the ‘podokinetic’ system and its role in spatial orientation during locomotion. Exp Brain Res 120:377–385PubMedCrossRef
go back to reference Wierzbicka MM, Gilhodes JC, Roll JP (1998) Vibration-induced postural posteffects. J Neurophysiol 79:143–150PubMed Wierzbicka MM, Gilhodes JC, Roll JP (1998) Vibration-induced postural posteffects. J Neurophysiol 79:143–150PubMed
go back to reference Wolpaw JR, Tennissen AM (2001) Activity-dependent spinal cord plasticity in health and disease. Annu Rev Neurosci 24:807–843PubMedCrossRef Wolpaw JR, Tennissen AM (2001) Activity-dependent spinal cord plasticity in health and disease. Annu Rev Neurosci 24:807–843PubMedCrossRef
go back to reference Wright WG, Glasauer S (2003) Haptic subjective vertical shows context dependence: task and vision play a role during dynamic tilt stimulation. Ann N Y Acad Sci 1004:531–555PubMedCrossRef Wright WG, Glasauer S (2003) Haptic subjective vertical shows context dependence: task and vision play a role during dynamic tilt stimulation. Ann N Y Acad Sci 1004:531–555PubMedCrossRef
Metadata
Title
Quiet stance control is affected by prior treadmill but not overground locomotion
Authors
Carlo Zanetti
Marco Schieppati
Publication date
01-06-2007
Publisher
Springer-Verlag
Published in
European Journal of Applied Physiology / Issue 3/2007
Print ISSN: 1439-6319
Electronic ISSN: 1439-6327
DOI
https://doi.org/10.1007/s00421-007-0434-7

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