Recovery from forward loss of balance in young and older adults using the stepping strategy

被引:76
作者
Carty, Christopher P. [1 ]
Mills, Peter [1 ]
Barrett, Rod [1 ]
机构
[1] Griffith Univ, Griffith Hlth Inst, Sch Physiotherapy & Exercise Sci, Gold Coast, Qld 4222, Australia
关键词
Falls; Injury prevention; Ageing; Biomechanics; Margin of stability; DYNAMIC STABILITY CONTROL; TRUNK KINEMATICS; REGAIN BALANCE; RISK-FACTORS; FALL; AGE; PERFORMANCE; MECHANISMS; STRENGTH; GAIT;
D O I
10.1016/j.gaitpost.2010.11.017
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
The purposes of this study were to quantify stability during recovery from forward loss of balance in young and older adults, older single steppers (OSS) and older multiple steppers (OMS), and to identify the biomechanical factors associated with stability during balance recovery. Forward loss of balance was achieved by releasing participants from a static forward lean angle. Participants regained balance by taking one or more rapid steps. Stability was quantified using the margin of stability (MoS), which was computed as the anterio-posterior distance between the forward boundary of the base-of-support and the vertical projection of the velocity adjusted centre of mass. MoS at foot contact and at maximal knee joint flexion angle following foot contact (KJ(MAX)) were smaller in older compared to young adults, and in OMS compared to OSS. Compared to young adults, older adults exhibited a shorter recovery step length, greater trunk flexion angles and exhibited smaller peak knee flexion angles. Trunk flexion angle at foot contact (r = -0.55) and step length (r = 0.54) were significantly correlated with MoS at foot contact and together accounted for 51% of the variance in MoS at foot contact. MoS at foot contact was significantly correlated with MoS at KJ(MAX) (r = 0.88) and together with peak knee flexion angle during the landing phase (r = 0.60) and peak knee extension moment during the landing phase (r = 0.47) accounted for 84% of the variance in MoS at KJ(MAX). Overall findings suggest that stability in the first step is lower for older compared to young adults and for multiple compared to single steppers, and that spatial-temporal, kinematic and kinetic factors are associated with stability during recovery from forward loss of balance. Crown Copyright (C) 2010 Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:261 / 267
页数:7
相关论文
共 28 条
[1]   Deficits in the way to achieve balance related to mechanisms of dynamic stability control in the elderly [J].
Arampatzis, Adamantios ;
Karamanidis, Kiros ;
Mademli, Lida .
JOURNAL OF BIOMECHANICS, 2008, 41 (08) :1754-1761
[2]   A GAIT ANALYSIS DATA-COLLECTION AND REDUCTION TECHNIQUE [J].
DAVIS, RB ;
OUNPUU, S ;
TYBURSKI, D ;
GAGE, JR .
HUMAN MOVEMENT SCIENCE, 1991, 10 (05) :575-587
[3]   THE ANTHROPOMETRY OF THE MANUAL WORK SPACE FOR THE SEATED SUBJECT [J].
DEMPSTER, WT ;
GABEL, WC ;
FELTS, WJL .
AMERICAN JOURNAL OF PHYSICAL ANTHROPOLOGY, 1959, 17 (04) :289-317
[4]   A BIOMECHANICAL STUDY OF BALANCE RECOVERY DURING THE FALL FORWARD [J].
DO, MC ;
BRENIERE, Y ;
BRENGUIER, P .
JOURNAL OF BIOMECHANICS, 1982, 15 (12) :933-939
[5]   Trunk kinematics and fall risk of older adults: Translating biomechanical results to the clinic [J].
Grabiner, Mark D. ;
Donovan, Stephanie ;
Bareither, Mary Lou ;
Marone, Jane R. ;
Hamstra-Wright, Karrie ;
Gatts, Strawberry ;
Troy, Karen L. .
JOURNAL OF ELECTROMYOGRAPHY AND KINESIOLOGY, 2008, 18 (02) :197-204
[6]   Measures of paraspinal muscle performance do not predict initial trunk kinematics after tripping [J].
Grabiner, MD ;
Feuerbach, JW ;
Jahnigen, DW .
JOURNAL OF BIOMECHANICS, 1996, 29 (06) :735-744
[7]   RISK-FACTORS FOR FALLS AS A CAUSE OF HIP FRACTURE IN WOMEN [J].
GRISSO, JA ;
KELSEY, JL ;
STROM, BL ;
CHIU, GY ;
MAISLIN, G ;
OBRIEN, LA ;
HOFFMAN, S ;
KAPLAN, F .
NEW ENGLAND JOURNAL OF MEDICINE, 1991, 324 (19) :1326-1331
[8]   The condition for dynamic stability [J].
Hof, AL ;
Gazendam, MGJ ;
Sinke, WE .
JOURNAL OF BIOMECHANICS, 2005, 38 (01) :1-8
[9]   The effect of step length on young and elderly women's ability to recover balance [J].
Hsiao-Wecksler, Elizabeth T. ;
Robinovitch, Stephen N. .
CLINICAL BIOMECHANICS, 2007, 22 (05) :574-580
[10]   Age affects the latency of the erector spinae response to sudden loading [J].
Hwang, Ji Hye ;
Lee, Yong-Taek ;
Park, Dae Sung ;
Kwon, Tae-Kyu .
CLINICAL BIOMECHANICS, 2008, 23 (01) :23-29