[1] |
Sturnieks DL, St George R, Lord SR. Balance disorders in the elderly[J]. Neurophysiol Clin, 2008, 38(6): 467-478.
|
[2] |
Kannus P, Parkkari J, Koskinen S, et al.Fall-induced injuries and deaths among older adults[J]. Jama-Journal of the American Medical Association, 1999, 281(20): 1895-1899.
|
[3] |
Grisso JA, Kelsey JL, Strom BL, et al. Risk factors for falls as a cause of hip fracture in women[J]. N Engl J Med, 1991, 324(19): 1326-1331.
|
[4] |
WHO global report on falls prevention in older age. Switzerland. WHO Press.
URL
|
[5] |
Patil R, Uusi-Rasi K, Kannus P, et al. Concern about falling in older women with a history of falls: associations with health, functional ability, physical activity and quality of life[J]. Gerontology, 2014, 60(1): 22-30.
|
[6] |
Fuzhong L, McAuley E, Fisher KJ, et al. Self-efficacy as a mediator between fear of falling and functional ability in the elderly[J]. J Aging Health, 2002, 14(4): 452-66.
|
[7] |
Schott N. Correlates of fear of falling in older adults[J]. Zeitschrift Fur Sportpsychologie, 2007, 14(2): 74-86.
|
[8] |
Ayoubi F, Launay CP, Annweiler C, et al. Fear of falling and gait variability in older adults: a systematic review and meta-analysis[J]. J Am Med Dir Assoc, 2015, 16(1): 14-19.
|
[9] |
Murphy SL, Williams CS, Gill TM. Characteristics associated with fear of falling and activity restriction in community-living older persons[J]. J Am Geriatr Soc, 2002, 50(3): 516-520.
|
[10] |
Franchignoni F, Martignoni E, Ferriero G, et al. Balance and fear of falling in Parkinson’s disease[J]. Parkinsonism Relat Disord, 2005, 11(7): 427-433.
|
[11] |
Horak FB. Clinical assessment of balance disorders[J]. Gait Posture, 1997, 6(1): 76-84.
|
[12] |
Mancini M, Horak FB. The relevance of clinical balance assessment tools to differentiate balance deficits[J]. Eur J Phys Rehabil Med, 2010, 46(2): 239-248.
|
[13] |
王茂斌.康复医学[M].北京:人民卫生出版社,2009:58.
|
[14] |
王玉龙.康复功能评定学[M].北京:人民卫生出版社,2013:121-122.
|
[15] |
Whitney SL, Poole JL, Cass SP. A review of balance instruments for older adults[J]. Am J Occup Ther, 1998, 52(8): 666-671.
|
[16] |
Berg K. Measuring balance in the elderly: preliminary development of an instrument[J]. Physiotherapy Canada, 1989, 41(6): 304-311.
|
[17] |
Berg KO, Maki BE, Williams JI, et al. Clinical and laboratory measures of postural balance in an elderly population[J]. Arch Phys Med Rehabil, 1992, 73(11): 1073-1080.
|
[18] |
Downs S, Marquez J, Chiarelli P. The Berg Balance Scale has high intra-and inter-rater reliability but absolute reliability varies across the scale: a systematic review[J]. J Physiother, 2013, 59(2): 93-99.
|
[19] |
Thorbahn LDB, Newton RA. Use of the Berg balance test to predict falls in elderly persons[J]. Phys Ther, 1996, 76(6): 576-583.
|
[20] |
Tinetti ME. Performance-oriented assessment of mobility problems in elderly patients[J]. J Am Geriatr Soc, 1986, 34(2): 119-126.
|
[21] |
Powell LE, Myers AM. The activities-specific balance confidence(ABC) scale[J]. J Gerontology A Biol Sci Med Sci, 1995, 50(1): M28-M34.
|
[22] |
Steffen T, Seney M. Test-retest reliability and minimal detectable change on balance and ambulation tests, the 36-Item Short-Form Health Survey, and the unified Parkinson disease rating scale in people with parkinsonism[J]. Phys Ther, 2008, 88(6): 733-746.
|
[23] |
Toro B, Nester C, Farren P. A review of observational gait assessment in clinical practice[J]. Physiotherapy Theory and Practice, 2003, 19(3): 137-149.
|
[24] |
Winter DA, Patla AE, Prince F, et al. Stiffness control of balance in quiet standing[J]. J Neurophysiol, 1998, 80(3): 1211-1221.
|
[25] |
Lepers R, Bigard AX, Diard JP, et al. Posture control after prolonged exercise[J]. Eur J App Physiol, 1997, 76(1): 55-61.
|
[26] |
Lord SR, Clark RD, Webster IW. Postural stability and associated physiological factors in a population of aged persons[J]. J Gerontol, 1991, 46(3): M69-M76.
|
[27] |
Lord SR, Menz HB, Tiedemann A. A physiological profile approach to falls risk assessment and prevention[J]. Phys Ther, 2003, 83(3): 237-252.
|
[28] |
Huurnink A, Fransz DP, Kingma I, et al. Comparison of a laboratory grade force platform with a Nintendo Wii Balance Board on measurement of postural control in single-leg stance balance tasks[J]. J Biomech, 2013, 46(7): 1392-1395.
|
[29] |
Hahn ME, Chou LS. A model for detecting balance impairment and estimating falls risk in the elderly[J]. Ann Biomed Eng, 2005, 33(6): 811-820.
|
[30] |
Brech GC, Plapler PG, Meirelles EdS, et al. Evaluation of the association between osteoporosis and postural balance in postmenopausal women[J]. Gait Posture, 2013, 38 (2): 321-325.
|
[31] |
Collins JJ, De Luca CJ. The effects of visual input on open-loop and closed-loop postural control mechanisms[J]. Exp Brain Res, 1995, 103(1): 151-163.
|
[32] |
Hansson EE, Beckman A, Hakansson A. Effect of vision, proprioception, and the position of the vestibular organ on postural sway[J]. Acta Otolaryngol, 2010, 130(12): 1358-1363.
|
[33] |
Kollmitzer J, Ebenbichler GR, Sabo A, et al. Effects of back extensor strength training versus balance training on postural control[J]. Med Sci Sports Exerc, 2000, 32(10): 1770-1776.
|
[34] |
Prieto TE, Myklebust JB, Hoffmann RG, et al. Measures of postural steadiness: Differences between healthy young and elderly adults[J]. IEEE Trans Biomed Eng, 1996, 43(9): 956-966.
|
[35] |
Demura SI, Kitabayashi T, Aoki H. Body-sway characteristics during a static upright posture in the elderly[J]. Geriatr Gerontol Int, 2008, 8(3): 188-197.
|
[36] |
Snijders AH, van de Warrenburg BP, Giladi N, et al. Neurological gait disorders in elderly people: clinical approach and classification[J]. Lancet Neurol, 2007, 6(1): 63-74.
|
[37] |
Allali G, Ayers EI, Verghese J. Multiple modes of assessment of gait are better than one to predict incident falls[J]. Arch Gerontol Geriatr, 2015, 60(3): 389-393.
|
[38] |
Baezner H, Oster M, Daffertshofer M, et al. Assessment of gait in subcortical vascular encephalopathy by computerized analysis: a cross-sectional and longitudinal study[J]. J Neurol, 2000, 247(11): 841-849.
|
[39] |
Verghese J, Wang C, Lipton RB, et al. Quantitative gait dysfunction and risk of cognitive decline and dementia[J]. J Neurol Neurosurg Psychiatry, 2007, 78(9): 929-935.
|
[40] |
Callisaya ML, Blizzard L, Schmidt MD, et al. Sex modifies the relationship between age and gait: a population-based study of older adults[J]. J Gerontol A Biol Sci Med Sci, 2008, 63(2): 165-170.
|
[41] |
Djuric-Jovicic MD, Jovicic NS, Radovanovic SM, et al. Quantitative and qualitative gait assessments in Parkinson’s disease patients[J]. Vojnosanit Pregl, 2014, 71(9): 809-816.
|
[42] |
Mariani B, Hoskovec C, Rochat S, et al. 3D gait assessment in young and elderly subjects using foot-worn inertial sensors[J]. J Biomech, 2010, 43(15): 2999-3006.
|
[43] |
Firmani F, Park EJ. A framework for the analysis and synthesis of 3D dynamic human gait[J].Robotica, 2012, 30: 145-157.
|
[44] |
Greene BR, McGrath D, Walsh L, et al. Quantitative falls risk estimation through multi-sensor assessment of standing balance[J]. Physiol Meas, 2012, 33(12): 2049-2063.
|
[45] |
Cuaya G, Munoz-Melendez A, Nunez Carrera L, et al. A dynamic Bayesian network for estimating the risk of falls from real gait data[J]. Med Biol Eng Comput, 2013, 51(1-2): 29-37.
|
[46] |
Tyson S, Connell L. How to measure balance in clinical practice. A systematic review of the psychometrics and clinical utility of measures of balance activity for neurological conditions[J]. Clin Rehabil, 2009, 23(9): 824-840.
|
[47] |
Horak FB. Postural orientation and equilibrium: what do we need to know about neural control of balance to prevent falls[J]? Age Ageing, 2006, 35(Suppl 2): ii7-ii11.
|
[48] |
Sibley KM, Beauchamp MK, Van Ooteghem K, et al. Using the systems framework for postural control to analyze the components of balance evaluated in standardized balance measures: a scoping review[J]. Arch Phys Med Rehabil, 2015, 96(1): 122-132.
|
[49] |
Meyer PF, Oddsson LIE, De Luca CJ. The role of plantar cutaneous sensation in unperturbed stance[J]. Exp Brain Res, 2004, 156(4): 505-512.
|
[50] |
van Swigchem R, van Duijnhoven HJR, den Boer J, et al. Deficits in motor response to avoid sudden obstacles during gait in functional walkers poststroke[J]. Neurorehabil Neural Repair, 2013, 27(3): 230-239.
|
[51] |
Weerdesteyn V, Nienhuis B, Geurts ACH, et al. Age-related deficits in early response characteristics of obstacle avoidance under time pressure[J]. J Gerontol A Biol Sci Med Sci, 2007, 62(9): 1042-1047.
|
[52] |
Cao C, AshtonMiller JA, Schultz AB, et al. Abilities to turn suddenly while walking: effects of age, gender, and available response time[J]. J Gerontol A Biol Sci Med Sci, 1997, 52(2): M88-M93.
|
[53] |
Cao C, Schultz AB, Ashton-Miller JA, et al. Sudden turns and stops while walking: kinematic sources of age and gender differences[J]. Gait Posture, 1998, 7(1): 45-52.
|
[54] |
Chen HC, Ashtonmiller JA, Alexander NB, et al. Stepping over obstacles-gait patterns of healthy-young and old adults[J]. J Gerontol, 1991, 46(6): M196-M203.
|
[55] |
Ashtonmiller JA, Alexander NB, Schultz AB. Effects of age and available response-time on ability to step over an obstacle[J]. Journals of Gerontology, 1994, 49(5): M227-M233.
|
[56] |
Rubenstein LZ, Josephson KR, Trueblood PR, et al. The reliability and validity of an obstacle course as a measure of gait and balance in older adults[J]. Aging (Milano), 1997, 9(1-2): 127-135.
|
[57] |
Draganich LF, Kuo CE. The effects of walking speed on obstacle crossing in healthy young and healthy older adults[J]. J Biomech, 2004, 37(6): 889-896.
|
[58] |
Smulders E, van Lankveld W, Laan R, et al. Does osteoporosis predispose falls? a study on obstacle avoidance and balance confidence[J]. BMC Musculoskelet Disord, 2011, 12:1.
|
[59] |
Liao YY, Yang YR, Wu YR, et al. Factors influencing obstacle crossing performance in patients with parkinson’s disease[J]. PLoS One, 2014, 9(1): e84245.
|
[60] |
Fonteyn EMR, Heeren A, Engels JJC, et al. Gait adaptability training improves obstacle avoidance and dynamic stability in patients with cerebellar degeneration[J].Gait Posture, 2014, 40(1): 247-251.
|