A speedy solution for balance and gait analysis: angular velocity measured at the centre of body mass

被引:101
作者
Allum, JHJ
Carpenter, MG
机构
[1] Univ Basel Hosp, Dept ORL, CH-4031 Basel, Switzerland
[2] Karolinska Inst, Dept Neurosci, Stockholm, Sweden
关键词
angular velocity sensors; balance control; falls; rehabilitation;
D O I
10.1097/00019052-200502000-00005
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
Purpose of review Falls are a serious problem for the elderly and others prone to fall. In particular, those over 65 years of age will suffer at least one fall a year and as a result will need cost-intensive medical treatment. Under these circumstances, an optimal clinical pathway should first identify those with a tendency to fall, second, pinpoint the disease-specific deficits in balance control and walking patterns, and third, offer the possibility through focused biofeedback training to reduce the number of falls suffered. This review describes new methods of assessing balance control in both static and dynamic balance conditions and their applications for balance rehabilitation. Recent findings Technological advances and applied research have shown that body-worn sensors measuring angular velocity (gyroscopes) or the acceleration of the trunk can effectively quantify balance during stance and gait tasks, and can be used to detect potential fallers and discriminate between different balance disorders. Standing on foam support reveals balance deficits regardless of the underlying disease. Disease-specific balance deficits can be characterized by the pattern of trunk movements between various semi-stance and gait tasks. Angular velocity sensors have recently been shown to provide highly relevant information for use as biofeedback, or as an ambulatory device to record balance and gait performance over long periods of time in both clinical and natural living conditions. Summary Angular velocity sensors can provide balance-relevant information directly to the clinician, and provide an important improvement on the complicated and time/cost-intensive techniques of traditional balance measurement systems.
引用
收藏
页码:15 / 21
页数:7
相关论文
共 32 条
[1]  
ADKIN AL, 2004, IN PRESS GAIT POSTUR
[2]   Improvements in trunk sway observed for stance and gait tasks during recovery from an acute unilateral peripheral vestibular deficit [J].
Allum, JHJ ;
Adkin, AL .
AUDIOLOGY AND NEURO-OTOLOGY, 2003, 8 (05) :286-302
[3]   Trunk sway measures of postural stability during clinical balance tests: effects of a unilateral vestibular deficit [J].
Allum, JHJ ;
Adkin, AL ;
Carpenter, MG ;
Held-Ziolkowska, M ;
Honegger, F ;
Pierchala, K .
GAIT & POSTURE, 2001, 14 (03) :227-237
[4]   Spatio-temporal parameters of gait measured by an ambulatory system using miniature gyroscopes [J].
Aminian, K ;
Najafi, B ;
Büla, C ;
Leyvraz, PF ;
Robert, P .
JOURNAL OF BIOMECHANICS, 2002, 35 (05) :689-699
[5]   Capturing human motion using body-fixed sensors: outdoor measurement and clinical applications [J].
Aminian, Kamiar ;
Najafi, Bijan .
COMPUTER ANIMATION AND VIRTUAL WORLDS, 2004, 15 (02) :79-94
[6]  
BAKKER MV, 2005, MOVEMENT DISORD
[7]   Age-related decline of gait control under a dual-task condition [J].
Beauchet, O ;
Kressig, RW ;
Najafi, B ;
Aminian, K ;
Dubost, V ;
Mourey, F .
JOURNAL OF THE AMERICAN GERIATRICS SOCIETY, 2003, 51 (08) :1187-1188
[8]   Detecting balance deficits in frequent fallers using clinical and quantitative evaluation tools [J].
Cho, CY ;
Kamen, G .
JOURNAL OF THE AMERICAN GERIATRICS SOCIETY, 1998, 46 (04) :426-430
[9]   Quantitative assessment of the stops walking while talking test in the elderly [J].
de Hoon, EW ;
Allum, JH ;
Carpenter, MG ;
Salis, C ;
Bloem, BR ;
Conzelmann, M ;
Bischoff, HA .
ARCHIVES OF PHYSICAL MEDICINE AND REHABILITATION, 2003, 84 (06) :838-842
[10]   Trunk sway measures of postural stability during clinical balance tests: Effects of age [J].
Gill, J ;
Allum, JHJ ;
Carpenter, MG ;
Held-Ziolkowska, M ;
Adkin, AL ;
Honegger, F ;
Pierchala, K .
JOURNALS OF GERONTOLOGY SERIES A-BIOLOGICAL SCIENCES AND MEDICAL SCIENCES, 2001, 56 (07) :M438-M447