Balance Control Near the Limit of Stability in Various Sensory Conditions in Healthy Subjects and Patients Suffering from Vertigo or Balance Disorders: Impact of Sensory Input on Balance Control

The large inter-individual variability within the normal population, the limited reproducibility due to habituation or fatigue, and the impact of instruction and the subject's motivation, all constitute a major problem in posturography. These aspects hinder reliable evaluation of the changes in balance control in the case of disease and complicate objectivation of the impact of therapy and sensory input on balance control. In this study, we examine whether measurement of balance control near individualized limits of stability and under very challenging sensory conditions might reduce inter- and intra-individual variability compared to the well-known Sensory Organization Test (SOT). To do so, subjects balance on a platform on which instability increases automatically until body orientation or body sway velocity surpasses a safety limit. The maximum tolerated platform instability is then used as a measure for balance control under 10 different sensory conditions. Ninety-seven healthy subjects and 107 patients suffering from chronic dizziness (whiplash syndrome (n=25), Meniere's disease (n=28), acute (n=28) or gradual (n=26) peripheral function loss) were tested. In both healthy subjects and patients this approach resulted in a low intra-individual variability (<14.5%). In healthy subjects and patients, balance control was maximally affected by closure of the eyes and by vibration of the Achilles' tendons. The other perturbation techniques applied (sway referenced vision or platform, cooling of the foot soles) were less effective. Combining perturbation techniques reduced balance control even more, but the effect was less than the linear summation of the effect induced by the techniques applied separately. The group averages of healthy subjects show that vision contributed maximum 37%, propriocepsis minimum 26% and labyrinths maximum 44% to balance control in healthy subjects. However, a large inter-individual variability was observed. Balance control of each patient group was less than in healthy subjects in all sensory conditions. Similar to healthy subjects, patients also show a large inter-individual variability, which results in a low sensitivity of the test. With the exception of some minor differences between Whiplash and Meniere patients, balance control did not differ between the four patient groups. This points to a low specificity of the test. Balance control was not correlated with the outcome of the standard vestibular examination. This study strengthens our notion that the contribution of the sensory inputs to balance control differs considerably per individual and may simply be due to differences in the vestibular function related to the specific pathology, but also to differences in motor learning strategies in relation to daily life requirements. It is difficult to provide clinically relevant normative data. We conclude that, like the SOT, the current test is merely a functional test of balance with limited diagnostic value.

[1]  G. Paige,et al.  Dynamic Posturography and Caloric Test Results Patients with and without Vertigo , 1989, Otolaryngology--head and neck surgery : official journal of American Academy of Otolaryngology-Head and Neck Surgery.

[2]  Clinical Disorders of Balance, Posture and Gait , 1998 .

[3]  R F Stribley,et al.  A quantitative study of stance in normal subjects. , 1974, Archives of physical medicine and rehabilitation.

[4]  R Johansson,et al.  Significance of pressor input from the human feet in anterior-posterior postural control. The effect of hypothermia on vibration-induced body-sway. , 1990, Acta oto-laryngologica.

[5]  D E Krebs,et al.  Posturography does not Test Vestibulospinal Function , 1999, Otolaryngology--head and neck surgery : official journal of American Academy of Otolaryngology-Head and Neck Surgery.

[6]  Clinical comparisons of posturography and electronystagmography , 1993, The Laryngoscope.

[7]  Richard L. Voorhees,et al.  Dynamic Posturography Findings in Central Nervous System Disorders , 1990, Otolaryngology--head and neck surgery : official journal of American Academy of Otolaryngology-Head and Neck Surgery.

[8]  A. M. El-Kahky Video posturography near the limit of stability , 1998 .

[9]  M. Norré Sensory interaction platform posturography in patients with Ménière's syndrome. , 1993, American journal of otolaryngology.

[10]  M. F. Parry,et al.  A Retrospective Analysis , 1990 .

[11]  Kamran Barin,et al.  Effect of Head Orientation on the Diagnostic Sensitivity of Posturography in Patients with Compensated Unilateral Lesions , 1992, Otolaryngology--head and neck surgery : official journal of American Academy of Otolaryngology-Head and Neck Surgery.

[12]  C. Armstrong,et al.  Stabilometry in balance assessment of dizzy and normal subjects. , 1991, American journal of otolaryngology.

[13]  F. O. Black,et al.  Abnormal postural control associated with peripheral vestibular disorders. , 1988, Progress in brain research.

[14]  R Johansson,et al.  Significance of pressor input from the human feet in lateral postural control. The effect of hypothermia on galvanically induced body-sway. , 1990, Acta oto-laryngologica.

[15]  M. Hamid,et al.  Specificity and sensitivity of dynamic posturography. A retrospective analysis. , 1991, Acta oto-laryngologica. Supplementum.

[16]  R. P. Fabio Sensitivity and Specificity of Platform Posturography for Identifying Patients With Vestibular Dysfunction , 1995 .

[17]  C. Kennard,et al.  Dynamic platform sway measurement in Menière's disease. , 1994, Journal of vestibular research : equilibrium & orientation.

[18]  H Mittelstaedt,et al.  Interaction of eye-, head-, and trunk-bound information in spatial perception and control. , 1997, Journal of vestibular research : equilibrium & orientation.

[19]  L. Nashner,et al.  Dynamic posturography in the diagnosis and management of dizziness and balance disorders. , 1990, Neurologic clinics.

[20]  R. P. Di Fabio Sensitivity and specificity of platform posturography for identifying patients with vestibular dysfunction. , 1995, Physical therapy.

[21]  M. Ouaknine,et al.  Sensory strategies in human postural control before and after unilateral vestibular neurotomy , 1997, Experimental Brain Research.

[22]  W. Spitzer,et al.  Scientific monograph of the Quebec Task Force on Whiplash-Associated Disorders: redefining "whiplash" and its management. , 1995, Spine.

[23]  J. Furman,et al.  Role of Posturography in the Management of Vestibular Patients , 1995, Otolaryngology--head and neck surgery : official journal of American Academy of Otolaryngology-Head and Neck Surgery.